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Full text of "Semi-Annual Groundwater Monitoring Report First and Second Quarters 2007 Presidio-Wide Groundwater Monitoring Program Presidio of San Francisco, California"

I50c[obcr2007 

Mr. Dcvcndcr N^riilii 

Rcponal Water Quiililv Conlrol Hoard 
San Franciazo Bay Region 
l5l5Cla> SiTcci. Suiic 1400 
Oakliird.CalifoTniii 94612 

Mr. Robrrl Hogg? 

Dcparlmcnl of Tosic S ll b Glance? Con Lrol 
700 HcLnz Avenue. Suiic 200 
Bcrkc]cy,CA 54710-2737 

Subject: ScmT-Anniial GroundwulcT Mcmiloring RcpoTl, Firsl and Second Quarlcrs 2007. Prciidic- 

Widc Quailccly Groundwalcr Monilonng Program, Pre sidio of San Franc jko, California 

Dear Dcvcndcr and Robert: 

Allachcd please find one hanJ copy and one elecliunjc copy of Ihe Semi-Anntia! Groiwdwalifr Moniloring 

Report, First and Second QuarSfTS 2007, Presi/fio-Wtde Qiiifrterly GTOiwdwciltT Manilonng Frogfoin. 
PresidttJ oj Son Fronctsco (Volumes ! ond fii futparcd by Tread well & Rollo for ihc Prc!<idio Trusl. This 
documcni is being ^ubmiiied in accord iince wiihTa^k 1 1 of the RWQCB OrderR2-2003-OOEO. 

Please feel free lo call mc a[ 415-56 1^259 if you have any qucslioas and/or cominenls. 

Since relj. 

The Pre&idio Tmsf 



G-vjG^^ 



Craig Cooper 

RemediaMon Program Manager 



Enclosure 

cc: Hnan Ullenivang.NPS 

Doug Kern^ RAB (elcclroriic only> 



34 Grahoni Siicct, po:>i Office Box 190^2. San Ffanciwo, Cajifoinia 94t39JU)5? 




SEMI-ANNUAL GROUNDWATER MONITORING RKPORT 

FIRS I AND SECOND QUARTERS 2007 

PRESIDIO- WIDE CROCINDWATER MONTTORING PROGltAM 

PRESIDIO OF SAN FRANCISCO, CALIt ORNlA 



Prepared For: 

The Presidio Trust 

34 Gmham Street, P.O. Box 29052 

Santraiiciwo.Cjilifoniiji 94129-0052 

415/561-5300 ian 561-5315 

l*repared By: 

Treadwdl&RollD,Inc. 

555 MoQtgomcrj Street, Suite 1300 

San Francisco. Caliromia 94111 

415/955-9040 fas 955-9041 




Qtlobpr2007 



r 



Dfmj\da^^Mnm\!?.G 



d^iT&Rdi^Inc. 



Date 



JoR^rlia D. GrAba. TreadwcH^Rdlo, Inc. 

\5. fX'^b&r '^00-7 




Date 



SE^[^-ANNUAL GROUNDWATER MONITORING REPORT 

FIRST AND SECOND QUARTERS 2007 

PRESIDIO- WIDE GROUNDWATER MONITORING PROGRAM 

Presidio of San Fi'aiicisco, California 

TABLE OF CONTENTS 

LEST OF ACRONYMS AND ABBREVL^TIONS xv 

EXECUTrVE SUMMARY ES-l 

LO INTRODUCTION L 

LI Report Orgajijzaljoji 2 

1.2 Firld Sampling Plan 3 

L3 Ground walcr Moniloring Objcclivcs 3 

2.0 BACKGROUND 5 

3.0 GEOLOGIC AND HYDROGEOLOGIC SETTING 6 

4.0 GROUNDWATER MONITORING S 

4.1 Ground walcr ElcvalJon Moniloring S 

4 J . I GroundwalcrElcvaiioii MomlorJng al Tidally Influenced Wells 9 

4.2 Groundwater Sampling 10 

4.2.1 Groundwaler Purging Melhods and Scleclion Crilcria I L 

4.2. LI Groundwalcr Pnrgmg Melhods I L 

4.2. L2 Gronndaalcr Purging Method Seleelion Crileria 12 

4.2.2 Gronndwaler Sampling Melhods 12 

4.2.2.1 Groundwaler Sampling Melhods Aflcr Normal Purging 12 

4.2.2.2 Groundwaler Sampling Afler Lon-Floit' Purging 12 

4.2.2.3 Sampling al Seeps 13 

4.3 Sample Preservalion^ Handling, and Transporlalion 14 

4.3.1 Sample Labels and Cham-of-Cuslody Documenialion 14 

4.3.2 Fillrarjon of Groundwater Samples for Melals Analyses 15 

5.0 LABORATORY ANALYSES 17 

5.1 Analytical Melhods 17 

5.2 Analytical Data Delivery Melhods IS 

5.3 Analylical Rcsulls \9 

5.4 Analytical Dala Comparabilily \9 

5.4.1 Field Melhods \9 

5.4. LI Dissolved Oxygen \9 

5.4.2 Analytical Suile 20 

I 



5.4.3 Analyiical Mclhods 20 

5.4.3.1 TPH Analyses 20 

5.4.3.2 Xylene Anal yrfs 21 

5.4.3.3 PAH Analyses 21 

5.4.3.4 M dais Analyses 22 

5.4.3.5 BTEX/MTBE Analyses 22 

6.0 QUALITY ASSURANCE. QUALITY CONTROL. AND DATA VALIDATION 23 

b.l Dala Validaiion 23 

6.2 Quality Assurance and QiialJIy Conlrol Sampling 24 

6.2. 1 Duplicate Samples 24 

6.2. I.I DuplJcalc Sample Analytical Results 25 

6.2. L2 Quality Control Duplicare Sample .Analytical Results 27 

6.2.2 Equipment Rmsate Blanks 29 

6.2.3 Trip Blanks 30 

6.2.4 Source Water Blanks 31 

6.2.5 Temperature Blank ■> 32 

6.2.6 Matrix Spike and Marrix Spike Duplicate Samples 33 

7.0 FIELD WORK DOCUMENTATION 34 

8.0 DISPOSAL OF PURGE AND DECONT.AMINATION W.ATER 35 

8.0 DISPOSAL OF PURGE AND DECONT.AMINATION W.ATER 35 

REFERENCES 35 

FIGURES 

TABLES 
APPENDICES 



Fiial Biid Si:i:and QuiHi^ia 2007 October 2007 



LIST OF TABLES 



Table ] A 


Table IB 


Table 2A 


Table 2B 


Table 3 


Table 4 


Table 5 


Table 6 


Table 7 


Tittle S 


Table 9 


Table 10 


Table 1 1 


Table 12 



Volume I 

Proposed Sampling Schedule First Quarler 2007 

Proposed Sampling Schedule Second Quarter 2007 

Grouudwaler Elevation SLimmary for Presidio Monilonng Wells, 
Elevations Collecled on 26 February 2007 

Ground waler Elevation Summary for Presidio Monitoring Welis, 

ElevationsCollecledon4 June2007 

Well Construction Details 

Groundwater E'lirge Volume Calculations 

Analytical Plan Summary 

Water Quality Criteria and Analytical Reporting Limits 

Duplicate and Quality Control Duplicate Sampling Schedule 

Analytical Resulls for Equipment Rinsate Blanks 

Analytical Results for Trip Blanks 

Analytical Results for Source Water Blanks 

Laboratory Qualifiers for Current and Historical Analytical Data 

Analytical Resulls for Purge and Decontamination Water 



Figure I 
Figure 2A 



LIST OF FIGURES 

Volume I 

Presidio Map with Sampling Ai"eas and Groundwater Basins 

Tidal Elevations at the Golden Gate Tidal Station on 26 February 
2007 



Figure 2B Tidal Elevations at the Golden Gate Tidal Station on 4 June 2007 



Fiial Biid Si:i:and QuiHi^ia 2007 



Dclobcr 2007 



LIST OF APPENDICES 



Appendix A 


Sampling Area Summaries 




Volume I 


A-] 


Building 900s Area 


A -2 


Landfills 


A -3 


Fill Site 6 


A^ 


B^llery Howe/Wagner 


A -5 


Building 1349 Area 


A-6 


Fill Sire 1. Undfill 2. El Pol 




Tennessee Hollow, and Upgi 


A-7 


Laiidfill E 



Volume II 

A-8 Landfill 4 

A-9 Fill Site 5 

A-10 Building23l/207Ai-ea 

A-] I Building 1065/1027 Area 

A-12 Mini -CAP Areas 

A-13 Nike Missile Facility 

A-14 BakerBeach Dislurbed Area3 

A-15 Landfill 10 

A-16 Commissary/PX Area 

A-17 BakerBeach Disturbed Areas ] and 2A 



Fiial Biid Si:i:and QuiHi^ia 2007 October 2007 



Appendix A List of Tables 
Volume I 

Table A-l-1 Summary' of Dissolved Oxygen Measurements Building 900s Area 

TableA-l-2 Ret^ulrs of VOC Analy^ei Building 900s Area 

Table A-l -3 Results of TPH Analyses Building 900s Area 

Table A-l^ Giouiidwaler Elevation Summary Building 900s Area 

Table A-l -5 Summary of Vertical Gradients at Well Clusters Building 900? 
Area 

Table A-2-1 Results of General Chemisn-y, Cyanide, and Sulfide Analyses 
Landfills 

Table A-2-2 Results of PAH, OCP, PCB. Chlorinated Herbicide, and 
VOCAnalyt.es Landfill 8 

Table A-2-3 Results of Dissolved Metals Analyses Landfill 8 

Table A-2^ Groundwater Elevation Summary Landfill 8 

Table A-3-1 Results of TPH Analyses Fill Site 6 

Table A-3-2 Results of General Chemistry, PAH, OCP, PCB and Dissolved 
Oxygen Analyses Fill Sile 6 

Table A-3-3 Results of Dissolved Metals Analyses Fill Site 6 

Table A-3^ Results of Arsenic S]>eciation Analyses Fill Site 6 

Table A-3-5 Resullsof Dissolved Gas and TOG Analyses Fill Site 6 

Table A-3-6 Groundwaler Elevation Summary Fill Site 6 

Table A4-1 Results of General Ghemislry Analyses Batteiy Howe/Wagner 

Table A^-2 Results of Dissolved Melals Analyses Batteiy HoweWagiier 

Table A^-3 Results of VOC Analyses Battery HoweAVagner 

Table A^^ Groundwaler Elevation SummaivBatlerv' HoweWagner 

Table A-5-1 Results of General Chemistry Analyses Building 1349 Area 

Table A-5-2 Results of TPH Analyses Building 1349 Area 



Fiial Biid Si:i:and QuiHi^ia 2007 DclDbcr20D7 



Appendix A List of Tables 
(coutinued) 

TibleA-5-3 Results of VOC Analyses Building 1349 Area 

Table A-5^ Results of OCP and PCB Analyses Building 1349 Area 

Table A-5-5 Results of PAH Analyses. Building 1349 Area 

Table A-5-6 Results of Chloiinaled Herbicide Analyses Building 1349 Area 

Table A-5-7 Results of Dissolved Melals Analyses Building 1349 Area 

Table A-5-8 Gl"l:^und^^ale^ Elevation Summary Building 1349 Area 

Table A-6-1 Results of General ChemisliT and Cyanide Analyses Fill Sile 1, 
Landfill 2, El Polin Spring. Buildings 100 and 104 

Table A-6-2 Ret^ulls of SVOC. PAH, OCP, PCB. Chlonnaled Herbicide, and 
VOC Analyses Fill Site I, Landfill 2, El Polin Spring, Buildings 

100 and 104 

Table A-6-3 Results of Total and Dissolved Melals Analyses Fill Site I, 
Landfill 2. and El Polin Spring 

Table A-6^ ResullsofTPH Analyt.es Fill Sife 1, Landfill 2, El Polin Spring, 
Buildings 10, 100, and 104 

Table A-6-5 Cl"ound^valer Elevation Summary Fill Site I, Landfill 2, El Polin 
Spnng, Tennessee Hollow. Upgradient Wells. Buildings 10, 100, 
and 10* 

Table A-7-1 Results of General Chemistry and Cyanide Analyses Landfill E 

Table A-7-2 Results of MBAS,Tolal Haidness, and TPH Analyses Landfill E 

Table A-7-3 Results of SVOC. PAH, OCP, PCB, Chlonnaled Herbicide, and 
VOC Analyses Landfill E 

Table A-7^ Results of Dissolved Melals Analyses Landfill E 

Table A-7-5 Groundwater Elevation Summary Landfill E 



Fiial Bnii Si:i:and Quini^ia 2007 DclDbcr20D7 



Appendix A List of Tables 
{continued) 

Volume II 

Table A-S-1 Results of General Chemi^li^ Analyses Landfill 4 

Table A-S-2 Ret^ulls of TPH, PAH, Chlonnated Herbicide. OCP, PCB, and 
VOC Analyses Landfill4 

Table A-B-3 Ret^ulrs of Dissolved Melals Analyses Landfill 4 

Table A-S^ Ground waler Elevation Suinmai">' Landfill 4 

Table A-9-1 Ret^ults of General Chemistry Analyses Building 1349/Fill Site 5 

Table A-9-2 Resultsof TPH Analyses Building 1349/Fill Site 5 

Table A-9-3 Resullsof VOC Analyses Building 1349/Fill Sile5 

Table A-9^ Results of OCP and PCB Analyses Building 1349/Fill Sile 5 

Table A-9-5 Resulls of PAH Analyses Building 1349/Fill Site 5 

Table A-9-6 Results of Chlorinaled Herbicide Analyses Building 1349/Fill 
Sites 

Table A-9-7 Resulls of Total and Dissolved Melals Analyses Building 1349/Fil] 

Site 5 

Table A-9-8 Groundwater Elevation Summary Building 1349/Fill Site 5 

Table A-IO-I Results of General Chemistry Analyses Building 23 1/207 Area 

Table A-IO-2 Summary of Dissolved Oxygen Measurements and Resulls of TPH 
Analyses Building 23 1/207 Area 

Table A-IO-3 Results of VOC Analyses Building 231/207 Area 

Table A-IO^ Resultsof Dissolved Gas and TOG Analyses Building 23 1/207 

Area 



Fiial Bnii Si:i:and QuiHi^ia 2007 DclDbcr20D7 



Appendix A List of 1'ab]«5 
(coutinued) 

Table A-l 0-5 Results of Arsenic Speciation Analyses Building 231/207 Area 
Table A-IO-6 Ret^ulls of Dist^olved Metals Analyt.es Building 231/207 Area 
Table A-l 0-7 Gl"ound^^ale^ Elevation Summary Building 231/207 Area 

Table A-IO-S Summary of Vertical Gradienls at Well Clusters Building 23 1/207 

Ai"ea 

Table A-l I -I Summaiy of Dissolved Oxygen Measureinenis Building 

1065/1027 Area 

Table A-l 1-2 Results of General Chemistry Analyses Building 
1065/1027 Area 

Table A-l 1-3 Results of BTEX, MTBE, VOCs, and TPH Analyses Building 
1065/1027 Area 

Table A-l M Results of Dissolved Metals Analyses Building 1065/1027 Area 

Table A-l 1-5 Results of Dissolved Gas and TOC Analyses Building 1065 Area 

Table A-l 1-6 Results of Arsenic Speciation Analyses Building 1065 Area 

Table A-l 1-7 Groundwaler Elevation Summary Building 1065/1027 Area 

Table A-I2-I Results of General Chemical Analyses Mim-CAP Areas 

Table A-12-2 Results of TPH, VOCs, and Dissolved Oxygen Analyses 
Mini-CAP Areas 

TableA-12-3 Results of PC Bs and PAH Analyses Mini-CAP Areas 

Table A-12^ Resulls of Dissolved Metals Analyses Mim-CAP Areas 

Table A-l 2-5 Ground waler Elevation Summary Mim-CAP Areas 

Table A-I3-I Summary of Cyanide and NDMA Analyses and Dissolved Oxygen 
Measuremeni Resulls Nike Missile Facility 

Table A-13-2 Results of TPH Analyses Nike Missile Facilily 

Table A-13-3 Results of VOC Analyses Nike Missile Facility 

Table A-l 3^ Results of Dissolved and Total Metals Analyses Nike Missile 
Faci lity 

Table A-l 3-5 Groundwater Elevation Summary Nike Missile Facility 



Fiial Biid Si:i:and Quini^ia 2007 October 2007 



Appendix A List of Tables 
(coutinued) 

Tible A-I4-I Results of Dissolved Oxygen Measurements and General 
Cheniisliy Analyses Baker Beach Disturbed Area 3 

Table A-14-2 Results of TPH Analyses Baker Beach Disturbed Are^ 3 

Table A-14-3 Results of Tola! and Dissolved Melals Analyses Baker Beach 
Disturbed Area 3 

Table A-14^ Ground waler Elevation Summ^iT Baker Beach Disturbed Area 3 

Table A-I5-I Results of General Chemisli-y Analyses Landfill 10 

Table A-15-2 Results of BTEX, MTBE. and TPH Analyses Landfill 10 

Table A-l 5-3 Results of Total and Dissolved Metals and TDS Analyses 
Landfill 10 

Table A-15^ G^ound^^aler Elevation SLimniary Landfill 10 

Table A-l 6-1 Results of General ChemistiT Analyses Com mis sary/PX Area 

Table A-l 6-2 Results of TPH Analyses Commissary/PX Area 

Table A-l 6-3 Results of VOC Analyses Commissary/PX Area 

Table A-l 6^ Results of PAH Analyses Commissary/PX Area 

Tabie A-16-5 Results of Total and Dissolved Melals Analyses Commissary/PX Area 

Table A-l 6-6 Results of Dissolved Gas and TOG Analyses Gommissary/PX Area 

Table A-l 6-7 Results of Arsenic Speciation Analyses Conim is sary/PX Area 

Table A-l 6-B Groundwater Elevation Summary Commissary/PX Area 

Table A-l 7-1 Results of Dissolved Oxygen and General Chemislry Analyses 
Baker Beach Dislurbed Areas 1 and 2A 

Table A-17-2 ResullsofTPH Analyses Baker Beach Disturbed Areas I and 2A 

Table A-l 7-3 Results of Total and Dissolved Melals Analyses Baker Beach Disturbed 
Areas I and 2A 

Table A-17^ Results of PAH and VOC s Analyses Baker Beach Disturbed Areas I 
and2A 

Table A-l 7-5 Fresh Water Seep Elevation Summaiy Baker Beach Dislurbed Areas I 
and2A 



Fiial Bnii Si:i:and QuiHi^ia 2007 DclDbcr20D7 



Appendix A List of FigurES 
Volume I 

Figure A-I-] Building 900s Area Site Plan 

Figure A-l -2 Building 900s Area, 26 Febmaiy 2007, Groundwaler Elevation 
Map, Shallow Zone 

Figure A-l -3 Building 9005 Area, 26 February 2007 Groundwater Elevation 
Map, Inlermediale Zone 

Figure A-l -4 Building 900^ Area, 26 February 2007 Groundwater Elevation 

Map, Deep Zone 

Figure A-l -5 Building 900^ Area, 2007 Chemical Concenti-alion Map, TCE, 
DCE, and Vinyl Chloride in Shallow Ground waler 

Figure A-l -6 Building 900s Area, 2007 Chemical Concentration Map, TCE, 
DCE and Vinyl Chloride in Intennediale Groundwater 

Figure A-l -7 Building 900s Area, 2007 Chemical Concenh-alion Map, TCE, 
DCE and Vinyl Chloride in Deep Groundwater 

Figure A-2-1 Landfill S Site Plan and 26 February 2007 Groundwater 
Elevalion Map 

Figure A-3-1 Fill Sile 6 Area Site PJan 

Figure A-3-2 Fill Sile 6, Buildings 231/207 and Buildings 1065/1027 26 
February 2007 Shallow Groundwater Elevation Map 

Figure A-3-3 Fill Sile 6 and Building 1065/1027 Redox Diag^ms for Shallow 
Ground waler 

Figure A^-1 Balteiy Howe/Waguer Sile Plan and 26 February 2007 
Grouudwaler Elevation Map 

Figure A^-2 BalteiT Howe/Wagner Sile Plan and 4 June 2007 Groundwater 
Elevation Map 

Figure A-5-1 Building 1349 Sile Plan and 26 February 2007 Groundwater 
Elevation Map 

Figure A-5-2 Building 1349 Site Plan and 4 June 2007 Groundwaler 
Elevalion Map 



Fiial Biid Si:i:and Quini^ia 2007 DclDbcr20D7 



Appendix A List of Figures 
(coutinued) 

Figure A-5-3 Building 1349 2CXJ7Chen"iicaI Concentration M^p 

Figure A-6-] Fill Sile 1, Landfill 2, El Polin Spring, Tennessee Hollow, 
Upgi-adienl,ELiilding 10 Wells Sile Plan 

Figure A-6-2 Fill Site I, Landfill 2, El Polin Spring, Tennessee Hollow, and 

Upgradieiil Wells 26 February 2007 G round watei" Elevation Map 

Figure A-7-1 Landfill E Site Plan and 26 Febiiiaiy 2007 Groundwater 
Elevation Map 

Figure A-7-2 Landfill E Sile Plan and 4 June 2007 Groundwater 
Elevation Map 

Volume II 

Figure A-8-1 Landfill 4 Site Plan and 26 February 2007 Groundwater Elevation 
Map 

Figure A-8-2 Landfill 4 Site Plan and 4 June 2007 Groundwater Elevation Map 

Figure A-9-1 Fill Sile 5 Site Plan and 26 February 2007 Groundwater 
Elevation Map 

Figure A-IO-I Building 23 1/207 Area Site Plan 

Figure A-IO-2 Building 23 1/207, Building 1065/1027 and Fill Sile 6 
26 February 2007 Shallow Groundwater Elevation Map 

Figure A-IO-3 Building 231/207, Building 1065/1027 and Fill Site 6 
4 June 2007 Shallow Groundwater Elevation Map 

Figure A-IO^ Building 23 1/207 and Building 1 065, 26 February 2007 
Intermediate Groundwater Elevation Map 

Figure A-IO-5 Building 23 1/207 aud Building 1065,4 June 2007 Intennediale 
Groundwaler Elevation Map 

Figure A-IO-6 Building 23 1/207, 26 February 2007 Deep Groundwater 
Elevation Map 



Fiial Bnii Si:i:and Quini^ia 2007 DclDbcr20D7 



Appendix A List of Figures 
(coutinued) 

Figure A-IO-7 Building 23 1/207, 4 June 2007 Deep GroLindwirei" Elevation Map 

Figure A-IO-S Building 23 1/207 Area 2007 Chemical C oncentrali on Map, TPH, 
BTEX. and MTBE in Shallow Groundwater 

Figure A-IO-9 Building 23 1/207 Area Redox Diagrams for Shallow 
Ground waler 

Figure A-IO-IO Building 23 1/207 Area Redox Diagrams for Inlermediate 
Ground waler 

Figure A-IO-1 1 Building 23 1/207 Area Redox Diagrams for Deep Groundwater 

Figure A-l 1-1 Building 1065/1027 Area Sile Plan 

Figure A-l 1-2 Building 1065/1027, Building 23 1/207, and Fill Sile 6 26 

February 2007, Shallow Groundwater Elevation Map and TPHg 
Concentrations 

Figure A-l 1-3 Building 1065/1027, Building 23 1/207, and Fill Sile 6 

4 June 2007, Shallow Groundwaler Elevation Map and TPHg 
Concentrations 

Figure A-l M Building 1065 and Building 231/207 26 February 2007 
Inlermediate Groundwaler Elevalion Map 

Figure A-l 1-5 Building 1065 and Building 231/207 4 June 2007 Intemiediale 
Groundwaler Elevation Map 

Figure A-l 1-6 Building 1065/1027 and Fill Sile 6 Redox Diagrams for Shallow 
Groundwaler 

Figure A-l 1-7 Building 1065/1027 and Fill Site 6 Redox Diagrams for Intennediale 
Groundwaler 

Figure A-I2-I Mmi-CAP Area I Site Plan and 26 February 2007 Groundwater 
Elevation Map 

Figure A-12-2 Mmi-CAP Area I Site Plan and 4 June 2007 Groundwater 
Elevation Map 

Figure A-12-3 Mmi-CAP Area 2 Site Plan and 26 February 2007 Groundwater 
Elevalion Map 



Fiial Bnii Si:i:and Quini^ia 2007 DclDbcr20D7 



Appendix A List of Figures 
(coutinued) 

Figure A-12^ Mini -CAP Area 2 Sire Phn ^nd 4 June 2007 Groundwater 
Elevation Map 

Figure A-I3-I Nike Missile Facility Site Plan and 26 February 2007 Groundwater 
Elevation Map 

Figure A-I4-I Baker Beach Dislurbed Area 3 Site Plan and 26 February 2007 
Groundwaler Elevation Map 

Figure A-14-2 Baker Beach Dit^lurbed Area3 Site Plan and 4 June 2007 
Groundwaler Elevation Map 

Figure A-I5-I Landfill 10 Sile Plan and 26 Febi-uaiy 2007 Groundwaler 
Elevation Map 

Figure A-15-2 Landfill lOSile Plan and 4 June 2007 Groundwater Elevation 
Map 

Figure A-I6-I Coinmis5ary/PX Aiea Sile Plan and Phase I and 2 Corrective 
Action Areas 

Figure A-l 6-2 Commissary/PX Area 4 June 2007 Groundwater Elevation Map 
Al Zone Wells 

Figure A-l 6-3 Coinmissary/PX Aiea Redox Diagiams for Shallow Groundwater 

Figure A-l 7-1 Baker Beach Dislurbed Areas 1 and 2 A Site Plan and 26 
February 2007 Fresh Watei" Seep Elevation Map 

Figure A-l 7-2 Baker Beach Disturbed Areas I and 2A Sile Plan and 4 June 
2007 Fresii Water Seep Elevation Map 



Fiial Bnii Si:i:and QuiHi^ia 2007 DclDbcr20D7 



LIST OF APPENDICES 

Volume 1 

Appendix A Sampling Area Summaries (A-1 through A-7) 

Votume II 

Appendix A Sampling Area Sum manes (A -8 through A-1 7) 

Appendix E Calibration Form? 

Appendix C Grouudwatei" Level Measuiemeut Logs 

Appendix D DalaVal Data Valrdalion Summary Reports (on CD) 

Appendix E Curtis and Tompkins Analytical D^l^ Reports (on CD) 

Appendix F Columbia Analylical Services AnalyQcal Data Reports 
[on CD) 



Fiial Biid Si:i:and QuiHi^ia 2007 October 2007 



SEMI-ANNUAL GROUNDWATER MONITORING REPORT 

FIRSl' AND SECOND QUARTERS 2007 

PRESIDIO- WIDE GROUNDWATER MONITORING PROGRAM 

Presidio of San Fraiidsco, California 

List of Acronyms aiid Abbrevialioiis 



Ac lion Plan 

ANL 

Anny 

As III 

AsV 

AST 

BBDA3 

BGMP 

bg5 

BTEX 

CAP 

CCR 
CD 
CDHS 
Chaudhury 

Chromalab 

ci^-].2-DCE 

Cleanup Levels 
DocLimeni 

Coast Guard Slalion 

coc 

COPC 
CPT 



Commissaiy Seeps Inlerim Source Removal Aclion Pkiii 

Ai'goune National Laboi'aloiy 

Uniled States DepaitinenI of Defense, Depailment of the Army 

pentavalent arsenic or arsenate 

trivalent arsenic or ar^enite 

aboveground ^lorage lank 

Baker Beach Disluibed Ai"ea3 

Basewide Ground watei Monitoring Program 

below giound surface 

benzene, loluene, elhylbenzene, and xylenes 

degrees Celsius 

Corrective Action Plan 

Comlntdion Compleiiaii Report for Litndjill 4 and Fill Ssie 5 

compact disk 

CQlifomJa Department of Health Sei"vices 

Chaudhary and Associates 

STL Chromalab 

CIS- 1 ,2-di ch loi'oethene 

Development of F*residio-wide Cleanup Levels for Soil, Sediment, 
Groundwater, and Surface Water 

former U. S. Coa^t Guard Station 

Contaminant ofConceni 

Compound of Potential Concern 

cone penetrometer test 



Fiial Biid Si:i:and QuiHi^ia 2007 



Oclobcr 2007 



List of Acronyms and Abbrevialions 
(continued) 



CTR 

Ciirli^ & Tompkins 

CWA 

DAF 

DalaV^I 

DC A 

DCE 

DEH 

DEH RAP 

DO 
DISC 

DUP 

DVSR 

EDD 

EKI 

EPA 

ERB 

FDS 

Fe 

FFS 

FPALDR 

FS 

FS5 

FS6A 

FS6E 

FSP 

FYRAVP 



California Toxics Rule 

Curtis & Tompkins, Lid. 

Clean Water Act 

dilution attenuation factor 

DataVal, Ilic. 

dichloroethane 

dichlorethene 

Directorate of Engineering and Housing 

Dircclorale of EiigUicer'sng iiitii Housing (DEH) Sliidy Areii, Evaiuiilion of 
Remedial Alfentnlives and Draft Remedial Action P tan (RAP} 

dissolved oxygen 

C a] ifonii a Environmental Protection Agency, Department of Toxic 
Substances C onlrol 

duplicate 

Data Vattiiafion Siimmaiy Report for the Presidio Trust Groundwalcr 
Monitoring 

electionic data deliverable 

Erier & Kalinow^ki, Inc. 

United Stales Envnonmental Piotection Agency 

equipment rins^te blank 

fuel distribution system 

iron 

Focnsed Feasibility Study 

Euei Prod net Action Level Development Repoil 

Feasibility' Study 

Fill Site 5 

Fill Site 6A 

Fill Site 6B 

Feld Sampling Plan 

Eive-y ear Review ami Field Investigation Work Plan for Landfills 8 and lO 



Fiial Biid Si:i:and QuiHi^ia 2007 



Dclobcr 2007 



GC/MS 
GGTR 

GGTS 
Golden 

gpm 
GPS 
Hg 
ICP 

IT 

LF4 
LUC 5 
MBAS 
MCL 

mg/kg 

mg/L 

Mini -CAP Repoil 

MS 

MS/MSD 

MTBE 

NDMA 

NGVD29 

NOAA 

NPS 

OCP 

ORC 

PAH 



List of Acronyms and Abbrevialions 
(continued) 

g^s cliromarogr^j'kh/inuss spectrometer 

Golden Gate Tank Removal 

Golden Gate Tidal Slation 

Golder Associates 

gallon perminule 

global positioning system 

mercury 

inductively coupled plasma 

International Technology Coq'korati on 

Landfill 4 

Land U^eControls 

methylene bine active substances 

Maximum Contaminant Level 

micrograms per deciliter 

micrograms \^y kilogram 

micrograms I'ler liter 

milligrams per kilogram 

milligrams per liter 

Mint'-CAPs She Revie\^-s and Recommendalioiii lo Addiess Fanner 
Peliifteum Release SiSei Rej'iort 

mass spech"ogi"aphy confirmation 

matrix spike/matris spike duplicate 

methyl tertiary-butyl ether 

N-ni trosod i meth y I am i ne 

National Geodetic Vertical Datum of 1929 

National Oceanic and Atmospheric Administration 

United States Department of the Interior, National Paik Service 

organochlorine pesticides 

Oxygen Release Compound 

polycyclic aromatic hydrocarbon 



Fiial Bnii Si:i:and QuiHi^ia 2007 



Dclobcr 2007 



List of Acronyms and Abbrevialions 
(continued) 



PALs 
PBDE 
PCB 
PCE 

PCOC 
PHSH 

PHSH ROD 

PLLW 

POL 

Presidio 

PX 

QAPP 

QA/QC 

QC 

RAB 

RAP 

Redox 

RI 

ROD 

RPD 

RU 

RWQCB 

SCRs 

SDG 
SDWA 
Sequoia 
SI 

SOP 

svoc 



Perfonnunce Acceptance Limits 

polybrommated diplienyl elher 

polychlorinaled bi phenyl 

letrachloroelhene 

Polenbal Contaminant of Concern 

Public Health Service Hospilal 

Public Health Service Hospital Record of Decision 

Presidio Lower Low Water 

pelioleiim oil and lubricants 

Pesidio of San Francisco 

Post Exchange 

Pi-esid\o--nide Quality Amiixiiice Pivjecl Plan Sampling and Analysis P!an 

qualily assurance/quality conlrol 

quality control 

Restoration Advisory Board 

Remedial Achon Plan 

reduction/oxidah on 

Remedial Investigation 

Record of Deci si on 

relative percent difference 

Remedial Unil 

California Environmental Prolechon Agency, Regional Water Quality 
Contt-ol Board, San Francisco Bay Region 

Site Cleanup Requiremenls 

Sample Deliveiy Group 

Safe Drinking Waler Act 

Sequoia Analyhcal 

Site Investigation 

Standard Operating Procedure 

seniivoialile organic compound 



Fiial Bnii Si:i:and QuiHi^ia 2007 



Dclobcr 2007 



List of Acronyms and Abbrevialions 
(continued) 



TB 
TCE 
TCP 
TDS 

THR 
TMB 

To will 

TOC 

TPH 

TPHfo 

TPHg 

TPHd 

TPHmo 

TPH 53 

Treadwcll & Rollo 
Tru5l 

TSS 

UST 
VOC 



Inp blank 

liichloroethene 

1 ,2,3 -tri c h I oropropane 

total dissolved solids 

Tennessee Hollow Restoration 

tri methy Ibenzene 

Towill, Inc. 

lotal organic carbon 

(oral iietroleum hydrocarbons 

lolal petroleum hydrocarbons as fuel oil 

lotal petroleum hydrocarbons as gasoline 

lotal petroleum hydrocarbons as diesel 

lotal petroleum hydrocarbons as motor oil 

total petroleum hydrocarbons as sloddard solvent 

Tread we II & Rollo, Inc. 

The Presidio Trust 

total suspended solids 

micrograms \^y Liter 

underground storage lank 

volatile organic compound 



Fiial Bnii Si:i:and QuiHi^ia 2007 



Oclobcr 2007 



SEMI-ANNUAL GROUNDWATER MONl'I'ORING REPORT 

FIRST AND SECOND QUARTERS 2007 

Presidio of San Francisco, California 



E.l EXECUTIVE SUMMARY 

The Presidio- Wide Quarterly Groundwater Monitoring ftogram continued, with modificalions, 
during tlie Firsi and Second Quarters 2007. The First Quarter 2007 sampling event began on 

26 Februan' 2007 and was completed on 8 March 2007. The Second Quarter 2007 sampling 
event began on 4 June 2007 and was completed on E June 2007. This executive summarj' serves 
as a semi-annual nummary of the groundwater monitoring program at the E^re^idio for the first 

half of 2007. 

E.I-1 Changes to the Quarterly Groundwater Monitoring Program, First and Second 
Quarters 2007 

Several modifications to the Presidio-wide Quarterly Monitoring Program were implemented 
during the First and Second Quarters 2007. Changes to the monitoring piogiam are depicted in 
red text in Tables I A and IB. The majority of the changes were associated with reduchons in 
samphng frequency at sites with decision documents in place. All changes approved for the First 
and Second Quarters 2007 are summanzed below and are detailed in Tables I A and IB» 
respectively. 

E. 1 , L 1 First Quarler 2007 

The following changes were approved and implemented during the First Quarter 2007, as 
detailed in Table I A. 

Saniplinc Melhod Modifications 

No monitoring well, piezometer, or seep sampling metliod modifications were proposed dunng 
the First Qnarter 2007. 

Waler Level/Seep EtTjIualion Erg qnencj Changes 

The following changes were proposed for the frequency of water leveUseep evaluation 

measurements prior to the First Qnarter 2007, as detailed m Table I A. 

• Waler level measurements at Fill Site 5 were reduced to annual during the First Quailer. 

• Water level measurements at tlie Nike Missile Facility were reduced to annual during the 
First Quarter. 

ES-l 
Fiial and Sci:and Quiilcis 2007 October 2007 



• Water level measuremeuls ^1 Fill Sile 6 were reduced lo semi-annual during the First and 

Thii-d Qiianers 2007. 

• Water level measuiemenis al Buildjng 1065 were reduced to anitual dunng (lie First 
Quartei". 

• B^sed on ihe large hi sloric^ld^t^ set, watei" level measuremeuls ^1 Upgradient and 
Tennessee Hollow welli will no longer be collected. 

Analylical Addirions and Reductions 

Several changes m ihe sampling and analytical program scope were approved for Ihe First 

Quarter 2007. The following changes were approved and implemented dunng the Firsi Quarter 
2007, as detailed in Table I A. 

• The post-remediali on groundwater monitoring requirements and cleanup levels from the 

RAPfor OCPsatFill Site 5 were achieved in the Thiid Quarter 2006. Add ih on ally, the 
Colma backfill soil sampling showed thai OCPs were not present above cleanup levels in 
Fill Site 5 backfill soiL Thus, OCPs and dissolved osygen were removed from Ihe Fill 
Sile 5 moniloniig program pnor lo the First Quarter 2007. Fill Site 5 wells were not 
proposed for sampling dunng Ihe First or Second Quarters 2007. 

• Moniloring of NDMA and dissolved oxygen al ihe Nike Facility was reduced lo an 
annual basis lobe coiisisleiil wilh olher Nike Facilily analyses unlil the remedial action at 
the site is implemenled. 

• The post-remediali on groundwater monitoring requirements from Ihe Fill Sile 6A RAP 
have been mel for one year (5 quarters of dalaj. Analyses were reduced loa semi-aiiniial 
basis, in accordance with Ihe Fill Site 6A RAP. 

• All well and piezometer sampling at Building 1065 was reduced to an annual basis until 
implementation of ihe Building 1065 CAP, after which samphng will beconducled in 
accordance wilh CAP requirements. 

• Moniloring of Building 207/23 1 wells is required at leasl Iwo months prior to the 
Building 23 1/207 Area remedial aclion in order loeslabhsh a pre-construclion baseline. 
During ihe First Quarter 2007, Ihe remedial aclion was scheduled to begin in August 
2007; thus, Ihe annual sampling for ihe Building 207/23 1 wells was postponed until the 
Second Quarter 2007. 

• At Landfill 10, LF10GW02 and LFIOSPOl could not be sampled during Ql, Q2, or Q3 
2006 due lo Ihick vegetalion. The brush was cleared aud samples were collecled at these 
locations dunng Q4 2006. The sampling frequency al ihese two locations has returned lo 
malch Ihe remainder of ihe sile. TPH analyses have been increased from annual lo 

ES-2 
FiiEl and Second Qiurlcra 2007 Oclobcr?007 



quarterly in all Landfill 10 wells and Die seep due lo recenl delecrions in groundwater ^1 
Landfill 10. The TPHd^la will beevalualed in The RAP. 

EJ.L2 Second Quarter 2007 

The following changes were approved and implemenred during the Second Quartei" 2007, rs 
delai led in Table IB. 

Sampliiitt Melhcxi McxJifications 

No moniroring well, piezometer, or seep sampling method modi fi call on s were proposed duiing 
the Second Quarter 2007. 

W'aler Level/Seep Evalualion Frg queiicy Chanees 

The following changes weie proposed for the frequency of water level/see]"' evalualion 
measurements during ihe Second Quarler 2007» as detailed jn Table IB. 

• Water level measurements at Ihe Commrssarv'/PX were added back inio the program on a 
quarterly basis. 

• AtBuilding 1065, four wells (I065PZI A, 1065PZIB, I065MW9A. dnd 1065MW9B) 
were abandoned prior lo Second Quaiter 2007; iherefore, waler level measurements will 

no longer be laken al Ihe^e wells. One new well llO65MW103Aj was mslalled pnor to 
Second Quailei" 2007. Waler level measurements for this new well and all the other site 
wells weie measured. 

• At the Mini -CAP Area, water level measurements werediEconlinued for all wells except 
FM14EX07GW102. FMI4EX07GWI0l,and 1213GW10] which will continue to be 
measured on a qiiarlerly basis. 

Analytical Additions and Reductions 

There were some additions and reductions in the samphng and analytical program scope 

approved prior lo the Second Quailer 1007, as delai led below. 

• Sampling at the Commissary/PX Area was temporanly suspended prior lo the Fourth 
Quartei 2006, until ihe Commissaiy/PX Area CAP implementation is complete. Phase 1 
excavahon remediation work al iheCom/PX Area was subslanhallycomplele during the 
Second Quaiter 2007. The post-remediation gi'oundwater moniloring program required 
by the Revised Final CAP (600GW106, 6I0GWI0I Ihrougli 6I0GWI03 and seeps 
6I0SP01 and 61OSP02) was initiated during Second Quarter 2007. Well600GWIOI has 
been decommissioned and has not been replaced. 



ES-3 
FiiEl and Second Qiurlcra 2007 Oclobcr?007 



• Four wells (I065PZ1A. 1065PZIB, I065MW9A. and I065MW9B) were abandoned 
prior To ihe Second QLiarler2O07 in accordance wilh Ihe Building 1065 Implemenlalion 

Work Plan. One new well [1O65MWI03A) was installed prior To Second Qiiarler 2007. 
Well 1065MWI03A'Aas sampled during the Second Qiiarler 2007 for llie analyses 
required in ihe Final CAP. 

• No chemicals have been detecled above cleanup levels at Mini -CAP Area monitoring 
wells, except 1213CW101. Samples were collected at FMI4EXO7GWI0I and 

FM 14EX07GW102 dunng Ihe Second Quarter 2007 lo obtain additional data. No other 
analyses were proposed ^t any other Mini -CAP Area moniloring wells. 

E,h2 Arsenic and Redox Evalualions 

Several parameters were measured in the field and m ihe laboratory lo help detennine Ihe redox 
state of groundwater at Fill Site 6, Building 231/207, Building 1065, ^nd Conimiss^iT/PX Areas. 
The parameters collecled were inckided in ihe gjoundwaler monitoring pi ogi"am al Ihe 
^foremenhoned sites during the Flrsl and/or Second Quarler 2007. 

The field and an^KTicaldat^ were collecled at Fill Site 6, Building 231/207, Building 1065 and 
Commissary/PX Aieas lobeller understand redox conditions aleach sile. Modified redox 
diagrams were develoi>ed for Fill Sile 6 (A-3), Building 23 1/207 (A-10), Building 1065 (A-ll) 
^nd Commissary/PX (A-I6j Areas and presented to ilkislrate Ihe redox conditions sp^lmlly 
across each sile. 

The redox diagi"ams were generated using the Sequence ' ^' program and imj'korted onto ihe 
figures. The redox diagi"ams were developed using concenlralions of dissolved oxygen, nilrate, 
manganese, iron, sulfate and melhane. Each redox diagram consists of multiple axes, with each 
individual axis represenlingoneof the above analyles. Each redox diagram is associated with 
one moniloring well localion. Therelalive shai^e of each redox diagram represents an 
approximation of Ihe redox state within the well studied. In general, the larger Ihe polygon, ihe 
more oxidizing the environment is within Ihe well location; conversely, the smaller the polygon, 
the more reducing the environment. Examples of lypical redox environmenis (i.e., aerobic, 
nitrale-reducing, manganogenic, ferrogenic, sul fate-red ucmg, and methanogenic) and their 
associaled redox diagrams arepresenled on each redox diagram figure. 

E.13 Significant Observations and Accomplishments in First and Second Qnarters 2007 

Siguificanl changes or trends in ground waler characleri sties and chemistry as well as significant 
site -si">eci fie milestones are discussed below. Changes lo proposed site-specific samphng 
schedules aie discussed in the site-ipecific seclion^ of Apjiendix A. 



ES-4 
FiiEl and Second Qiurlcra 2007 OclobcT?007 



E.13,1 Building 900a Area (Appendix A-1) 

Gl"ound^^aler elevalion^, gi"adienls, and f]o^^ direclioiis during Firs! Quarler 2007 are consisleni 
with historical values and inlerpretations. VOC concenlrations detecled dunng Ihe First Quarter 
2007 did no! exceed their respective RAP -specified cleanup levels. The majorily of VOC 
concentt-alions delected dunng the First Quartei" 2007 wei"e within ihe range of previously 
delected concentrations. The only monitoring well with significantly higher VOC concentrations 
was intermedia le well 979CWI 10, which had a higher cone enhali on of cis-l, 2 -DC E detecled 
than in any previous monitoring event. Ci5-1,2-DCE and vinyl chloride were detecled for the 
first time wilhin moniloring well 937CW104 and TCE was detecled for the first hme within 
monitoring well 937GWI 14. All VOC deleclions were significantly less than RAP -specified 
cleanup levels. 

Therelaliveconcenlration rahos of TCE»cis-U2-DCE, lrans-l,2-DCE, and vinyl chloride wilhin 
Bnilding900sgi"oundwaler samples conlinue lo i ndicale thai nalural biodegradalion processes 
are occnrring. Theralios of TCE»cis-U2-DCE, trans-U2-DCE, and vinyl chloride will continue 
to be monilored in future events. 

TPHg and TPHd were only detecled in the shallow moniloring well 937GW10g during ihe First 
Quarter 2007. The detecled TPH concentrations within 937GWI0S were within or below Ihe 
range of historical concenlrations. 

Thecurreni sampling program al ihe Building 900s Area will be reviewed as part of a five year 
review report for this area, which is scheduled to becompleled in 2007. Changes to the 
monitoring pi ogiam al Ihe Building 900s Area will be proposed in the five year review rej'ioit. 

E.13.2 Landfill S (Appendix A-2) 

Groundwaler elevalions, g]"adienls, and flow directions during Firsl Quarler 2007 are consisleni 
with historical values and interpretations. The five Landfill B moniloring wells were sampled 
and analyzed dnring Ihe First Quarler 2007 according to ihe proposed sampling schedule. The 

inajority of general chemislry results fi"om Ihe First Quarter 2007 were within the range of 
previously delected concenlrations withm Landfill E Area m oni ion ng wells. 

No OCPs, F*CBs, VOCs, or chlorinated herbicides were delected in Ihe Landfill E groundwaler 
samples collected during First Quarter 2007. 

No olher significant frends or obsei"vations were idenlified at Landfill 8 during Firsl Quarter 
2007. The sampling frequency al Landfill S has been reduced to annual moniloring, nntil Ihe 
Landfill E RAP (RAP4j is finalized and implemented. RAP4 is scheduled lo be completed in 
200S. Sampling al Landfill 8 will be performed in accordance wilh Ihe RAP4 requiremenis upon 
ils complehon. 



ES-5 
FiiEl and Second Qiurlcra 2007 Oclobcr?007 



E.1.2J FiH Site 6 (Appendix A-3) 

Gl"ound^^aler elev^lions, gi"adienls, and flow directions are consi stem with hisroncal values and 
interpretations. No significant trends or observahons were identified at FS 6 duniig tlie First and 
Second Quarters 2007. 

No RAP-specified cleanup levels weie exceeded during the FirsI Quarter 2007 within the FS 6 
wells sampled. 

NoTPH, OCRs, PCBs,orPAHsweredetected within any FS 6 wells sampled for these analyles 
during the Firsi Qiiarler 2007. 

Several new high or Lowconcentrahons of dissolved metals were delected within FS 6 samples 
during the FirsI Quarler 2007. However, the majonly of Ihese metal concentrations were only 
slighlly higher or lower than previously delecledconcentr^lions. No delected melals 
cone eiilrali on s exceeded their RAP-specified cleanup levels for FS 6 m oni ton ng wells during the 
Firsi Quarter 2007. 

Post-remediation groundwater monitoring at FS 6A beg^n during the Fourth Quarter 2005, in 
^ccord^nce with Ihe RAP. Analyses were reduced to a semi-annual basis beginning in the First 
Quarter 2007. The wells are expecled lobe sampled on a semi-^nnu^i b^sis ihrough theThiid 
Quarter 2008, but monitoring res nils are reviewed following each sampling eve nl lodetennine if 
modifications to the sampling program should be made. 

FS 6B will be addressed in RAP5, which is scheduled to becompleled in the summer of 2009. 
FS 6B wells are expected lo be sampled on an annual basis unlilRAPS is prepared. 

E.1.2,4 Ballery Howe/Wagner (Appendix A-4) 

Groundwaler elevations, gradients, and flow directions during FirsI and Second Qu^rlers 2007 
are consislent with historical valnesand inteipret^hons. The five Battery HoweAVagner 
monitoring wells were sampled and analyzed during the Firsi and Second Quarter 2007 withoni 
any significant findings. 

The majority of general chemistry and dissolved metals results were within Ihe range of 
previously detected concentrations for BalteiT HoweAVagner monitonng wells ^nd are not 
considered significant. Chloride and chromium were the only analyles detected above their 
cleanup levels during the First and Second Qu^ilers 2007. Chloride was detected above its 

cleanup level in HWGWIOO during the Second Quarter 2007 andchroniinm was detected above 
its cleanup level during both Ihe First and the Second Qnarters 2007. Chromium h^s exceeded 

its cleanup level withinBHWGWOl since 1992. 



ES-6 
FiiEl and Second Qiurlcra 2007 OclobcT?007 



Aulimoiiy and vanadium were detected for Ihe fir^l time in Battery Howe/Wagner monitoring 
wells during ihe First Quarter 2007. Analysis for dissolved metals will continue to determine if 
trends develop. 

The VOCs results for Die First Quarter 2007 are similar to historical ti'ends with low levels of 
carbon, letrachloride and chloroform delected in monilorlng well BHWGWOI and a new low of 

concenlralion I J-DCEdetecled m m oni ton ng well HWGWIOO. 

E.1.2.5 Building 1349 Study Afeq (Appendix A-5) 

Six Building 1349 monitoring wells were sampled during the Flrsl Quarler 2007. Monitoring 
well I349MWIOO was Ihe only well sampled during Ihe Second Quarler 2007. 

The Building 1349 Area CAP was finalized and submitled lo the stakeholders m Februaiy 2006. 
Groundwaler sampling al the Building 1349 Area will beconducled in accordance wilh the CAP 
wheu Ihe CAP is implemented. The recommended corrective aclions for Ihe Building 1349 Area 
are delailed in the CAP and are summarized in Section 3.0. 

OCPs, PAHs, TPH and VOCs compounds conlinue to be delected within monitoring well 
1349MW 1 00 abnjveCAP-specified cleanup levels, however, Ihedetecled concentralions of these 
compounds has remained relahvely slable over recen I quarters and concentrations were nol 
observed outside of hislorical bounds. 

Additionally, monilonng wells I349MW02, I349MW03R, I349MW100. 1 349M W 1 03, and 
1349MWI05 all had al least one dissolved metal delected above CAP-si">ecified cleanup levels 
during the Firsi and/or Second Quarler 2007. 

Dissolved arsenic, iron, and manganese have been delected in monilonng well 1349MWI0O 
samples at concenlrations generally higlier Ihan wilhin ihe other Building 1349 monitoring wells. 
Arsenic is commonly found in ihe nalural environmeni and is often preseni in combination with 
iron and manganese oxides. Arsenic has also been delected at elevaledconcentrahons in 
monitoring well 1349MWI05, allhough not in associalion wilh elevated concentrations of 
manganese or iron. Arsenic, iron and manganese are generally more soluble and mobile under 
reducing conditions. A reducing environmeni likely exists wilhin l349MW100due lo the 
degradation of petroleum hydrocarbons present al this well This chemical process is likely 
contributing to Ihe elevaled levels of dissolved arsenic, iron and manganese wilhin I349M\V100. 
Future deteclions and concenlration trends for these metals will continue to be monitored and 
evaluated. 

Building 1349 Area monitoring wells will conlinue to be sampled in accordance with the 
Building 1349 Area CAP, and results evaluated against ihe Building 1349 Area CAP cleanup 
levels. The Building 1349 corrective aclion is scheduled to begin in the Fall of 2007. 



ES-7 
FiiEl and Second Qiurlcra 2007 Oclobcr?007 



E.1.2^ Fin Site 1. LandHll 2, El Polin Spring, Tennessee Hollow, and 

Upgradieiil Wells (Appendix A-6) 

Cyanide wusdetecled at rlie laboraroiV^ reporting l[mil of 0.0 1 |i/L for (lie fir^l limein tlie 
sample collected from moniloring well LF01GW04 during the Firs! Quarler 2007. The delected 
concenlralion is below Ihe cleanup level [0A5 mg/L) and i^ nol considered to be sigiificanL 

Several new high concentrations of total metals were delected within the EPSPOl sampled 
collecled dunng the First Quarter 2007, and may be associaled wilh an increase in the amount of 
sediment in ihe El Polin Spnng waler al ihe lime of sampling. No other significant trends were 
observed dunng the FirsI Quarter 2007. 

EJ.2,7 Landfill £ (Appendix A-7) 

Groundwaler elevalions, giadienis, and flow directions are consistent with historical values and 
interprelalions. No significant trends or observahons were identified al Landfill E dunng Ihe 
FirsI and Second Quarters 2007. 

The majorily of the general chemislry parameters measured during Ihe First Quarter 2007 are 
withm hislorical ranges. 

NoTPHg, TPHd or TPHfo was detecled above laboratory reporting li mi Is wilhin any Landfill E 

monitoring wells dunng the First Quarter 2007. 

Benzene was detected wilhin ihe sample collecled from m oni Ion ng well DAEGW03 al a 
concenlralion of O.l tig/L during ihe First Quarler 2007. No other VOC compounds were 

delected above laboratory deteclion limils within Landfill E monilonng wells during the FirsI 
Quarter 2007. 

No PAHs, OCPs, or PCBs were delected within any of Ihe groundwater samples collected from 
Landfill E monitoring wells dunng Ihe First Quarter 2007. 

Several metals (cadmium, nickel and chromium) were detecled above Landfill E cleanup levels 
during the Firsi Quarter 2007. Wilh the exception of nickel within DAEGW05, the metals 
concentrations delected were wilhin hislorical ranges. 

MBAS were not delected above laboratory deteclion limits wilhin any of the wells sampled. 

Total hardness concentrations were within hislorical range. 

Molybdenum was delected in theQC duplicate sample DAEGW104CL during Ihe First Quarter 
2007 al a concentration of 2.34 Mg^L. This detection was below the reporting hmit used for the 
primary and duplicate samples of 5 |.Lg/L. 



ES-a 

FiiEl and Second Qiurlcra 2007 OclobcT?007 



E.1.2^ Landmi 4 (Appendix A-8) 

No groLindwatei" cleanup levels were exceeded foi" Ihe foiirlh coiiseculive groundwaler 
monitoring event al LF4. If no groundwaler cleanup levels are exceeded dun ng the Third 
Quarter 2007 sampling eveni, this sile will be recommended for closure. 

E.1,2^ Fill Site 5 (Appendix A-9) 

Post-remedialiongioundwater cleanup levels from the Fill Site 5 RAP were met for ihe required 
frequency of niomtoringwilhinmoniloring wells I349MW03R, I349MW101, and I349MW102. 
prior to ihe First Quarter 2CX)7. Therefore, no samples were ]"'ro]"'osed for the First and Second 
Quarters 2007 al Fill Site 5, in accordance with Ihe proposed sampling plans (Tables I A and IB). 
The Fill Sile 5 wells will remain in place until regulalory sile cerlifi cation is received. Wells 
required for the Building l349correclive action will remain m-place and be monitored per ihe 
Final Building 1349 CAP. The Building l349correchve aclion is scheduled to begin in the 
Fall of 2007. 

E.I-2,10 Building 231/207 Area (Appendix A-10) 

Moniloring well 231MW09 was Ihe only monitoring well purged and sampled during the First 

Quarter 2007. All Building 231/207 Area moniloring wells and piezometers were sampled 
during the Second Quarter 2007. 

The majority of detected analytes were within historical bounds during the First and Second 

Quarters 2007. 

TPHgand TPHd concentrations downgradient of Building 231 continue to exceed cleanup levels 
and lo flucluale withm historical bounds in Building 23 1/207 Area mom ton ng wells and 
piezometers. TPHfo was nol delected in any sample collected from Building 231/207 Area 
monitoring wells or piezometers. 

VOC concentrahons within Building 231/207 Area moniloring wells and piezometers are 
relalively slable. Benzene was delected above ils CAP-specified cleanup level wilhin moniloring 
well 23 1 GW22 and piezometers 23 1 PZOl, 231 PZ02, 23 1 PZ03, and 23 1 PZ04. Elhylbenzene 
was detected above ils CAP-specified cleanup level within moniloring well 231GW22 and 
piezometer 231 PZOl. Total xylenes were delected above their CAP-specified cleanup level 
withm monitoring well 23 1 GW22. 

The majorily of new high and low dissolved metal delech on s were only slighlly higher or lower 
than previous highs and lows. However, some CAP specified cleanup levels were exceeded 
during the Second Quarter 2007. Dissolved arsenic concentrahons conlinue to be delected above 
the CAP-specified cleanup level (10 |.Lg/L), in anumber of wells. Cadmium concenlralions 
exceeded Ihe CAP-specified cleanup level of l.Opg wilhin moniloring well 231GW20. 

ES-9 
FiiEl and Second Qiurlcra 2007 OclobcT?007 



Dissolved copper was delected in Ihe primary ^nd duplicale samples from wells 23IGW13 and 
231GW20 in exceedaiice of theCAP-specified cleanup level of 2.9 Mi/I- In addili on, dissolved 
copper was detected at new liighconcenti"alions of 3.8 and ]J Mg/L wilhin monitonllg^vell^ 
231GWI5, ^nd 231 GW25, respectively. This is ihe firsi lime dissolved copper has been delected 
withm these wells. Thedetecled copper concenlrali on within 23IGW15 exceeded theCAP- 
si>ecified cleanup leveh 

Concenlrali on s of TPH and BTEX continue lo exceed cleanup levels and should continue to be 
monitored wilhin Building 231/207 Area monitoring wells. At some localioiis, relalively few 
groundwater samples have been collected for some dissolved metals and trends are nol yel 
aj'kparenL 

The CAP for the Building 23 1/207 Area has recenlly been snbmitted lo slakeholders for final 

review. Sampling at the Bnilding 231/207 Area will continue on an annual basis unlil theCAPis 
implemented, which is currently schednled lo take place in Ihe summer of 2008. 

E.1-2.11 Building 1065/1027 Area (Appendix A-11) 

TPH and VOCs were nol delected above CAP-specified cleanup levels in any samples collecled 

during the Firsi or Second Qnarlers 2007. 

Dissolved arsenic conlmues lo bedetecled at concentrations exceeding Ihe CAP-specified 
cleanup leveK 10 Mg/L) wilhin I065PZIA, 1065PZ4A, I065PZ5AR, and 1065MWIOIA. 

Fonr wells were abandoned [1065PZI A, I065PZ1B, 1065MW9A, and I065MW9B) and one 
new well was installed (IO65MWI03A), pnor lo Ihe Second Quarter 2007, in accordance with 
the Coi I ccllfe Action !mfficmenliil'\on V/ork Finn BuUd'wi}; t065 Area (MACTEC, 2007c). 
Monitoring well I065MWIO3A was installed after the First Quarter 2007, and was sampled for 
the first time in the Second Quarter 2007. No significant detections were observed in 
IO65MWI03A during Ihe Second Quarter 2007. 

The final CAP for Ihe Building 1065 Area was approved in Januaiy 2007. Construction based 
on the CAP IS anhcipated to begin dnring summer 2007. Monitoring will continue following 
remediation in accordance with Ihe Final CAP. 

E.1.2,12 Mini-CAP Ar«is (Appendix A-12) 

Groundwater cleanup levels for benzene, 1 ,2Hdichloroethane and chromium were exceeded in 

groundwater samples collected from monitoring well 1213GW101 dunng either Ihe First and/or 
Second Quarters 2007. 

All First and Second Quarter 2007 samples were analyzed for PAHs. Fluorantheneconhnues to 
be detected at low levels in 5I4AGW101 and FMI4EX07GWI0I. However, thedetecled 
concentrations were well below the cleanup level for fluoranthene of 300 jig/L. 

ES-m 

FiiEl and Second Qiurlcra 2007 Oclobcr?007 



NoTPHg, TPHd or TPHfo was detecled wilhin any of the wells sampled during Ihe First and 

Second Quarters 2007. 

E.1-2,13 Nike Missile Facililj (Appendix A-13) 

Giouudwaler elevations, gi"adieiils, and flow directions during The First Quarters 2007 are 
consilient with historical values and inteiprel^tions. NDMA wasdetecled in all four of (lie 
groundwater samples collecled from Nike Missile Facilily monitoring wells sampled during ihe 

First Quarler 2007. The NDMA concentrations were all below the RAP-specified cleanup level 
of 0.01 \ig/L. 

The Final Remedial Acif on Pian, Baker Beocb Disturbed Aieas I. and 2A, and Twenty-Six Other 

5//«[RAP3)(MACTEC,2007aX was released m June of 2007. The Nike Missile Facihty will 
be sampled m accordance wilh RAP3 uponitsimplement^hon, which is scheduled to take place 
in Ihe summer of 200E. 



E.I. 2,14 Bak«r B«ach Disturbed Area 3 {Appendix A-14) 

Posl-remedialiou monitoring at BBDA 3 began in December 2004 in accordance wilh the Final 
RAP. Data willconlinue to be reviewed on aquarteily basis to determine if modifications lo the 

sampling program should be made. The First and Second Quarlers 2007 were (he lenth and 
elevenlh moniloring evenis conducted at BBDA 3, since the new groundwater monitonng 
nelwork was installed in December 2004. 

Nitrate and sulfate concentrah on s within BB3GWI0O were significantly higher than previous 
detections within this well and appear to be anomalous. Fu lure detections will be monitored lo 
see if a new trend develops or if these results are anomalous. 

No other significant frends were id enh tied during the First and Second Quarters 2007 at 
BBDA 3. Future detections and trends will continue lo be monitored and evaluated in 
accordance wilh the RAP. 

E.I. 2.15 LandfiH 10 (.Appendix A-IS) 

During ihe First Quarler 2007. TPHd and TPHfo were delected within seep LFlOSPOl at 
concentrations of 22,000 and 1 4,000 jig/L, respectively. These concentrations were 
aj'kproMmately len times the levels delected in Fourth Quarler 2006. It was noted by the 
laboralory Ihat the Fourth Quarter 2006 and First Quarter 2007 results did not exhibil a fuel 
pattern resembhng the standard. Further invesligation inio the sampling protocols used during 
theFourlhQuarter 2006 and First Quarter 2007 revealed that samples from LFlOSPOl were not 
collected m accordance wilh the projecl SOPs and therefore, additional sampLng was i^erformed 
on 1 1 May 2007 between Flrsl and Second Quarters 2007. 



ES-II 
FiiEl and Second Qiurlcra 2007 Oclobcr?007 



During the Second Quarter 2007, LFlOSPOl wa^ sampled in accordance with the SOP. TPHd 
wasdelecled above the reporhng limit ax ^ concentred on of 210 M&'L. Thisdelection was 
qualified by the leboralory as no! matching the standard for TPHd. In aiiefforl loideiilify the 
compounds conlnbuting to ihe TPHd queiilifi cation end Ihe anomalous hydrocarbon pattern, the 
laboralory was asked lo run Ihe extrecl by GC/MS. Three compounds were idenhfied in the 
exiract by GC/MS: hexacosane (Ihe surrogele used for the TPHd exlraction), alpha-pinene, and 
eiomadendrene. No olher compounds were identified. 

Alphe-pinene and aromadendrene are of a chemicel class called terpenoids, which are naturally- 
occurring and are known loexist meucelyplns oiL The sample localion is adjacent to a lerge 
eucalyptus tree with niimeious eucalyptus leaves on ihegiound and also in the creek. Based on 
these resiihs, it appears thai the TPHd quantificahon may be a result of these nalurallynxicurring 
teipenoids pieseni in eucalyplus leaves. 

MTBE was detected for Ihe sixlh time in monitoring well LFIOGWIOO during the Firsi Quarter 
2007 al a concentration of 10.0 Mg^L. Clear trends in MTBE concentrations or geographic 

dislnbution have not been identified and this detection may not represent an impact to 
ground watei" from Landfill 10. 

No BTEX was detected above the laboratory's reporting limit within Landfill 10 monitonng 
wells during the First Quarter 2007. 

The majority of dissolved metal results were within the range of previously detected 
concentrations for Landfill 10. Dissolved chromium within LFIOGWOl was the only dissolved 
metal detected above its cleanup level during the First Quarter 2007. 

Several total metals results for LFlOSPOl were significantly higher than previously detected 
concentrations. Total aluminum, arsenic, barium, iron, manganese, nickel, and vanadium were 
all detected at concentrations during the First Quarter 2007, which are significantly higher than 
previous concentrahons for this location. 

The Trust is currently preparing R A P4 and designing new remedial actions for the Landfill 10 
and S sites. Landfill 10 data will continue to be reviewed and sampling will be adjusted as 

necessary during preparation of the RAP4. RAP4 is scheduled to be completed in the summer of 

200S. 

EL1.Z.16 Commisaarv/PX Exchange Area (Appendix A-16) 

TPH concentrations were generally within historical ranges at theCommissary/PX Area during 

the Second Quarter 2007, with the exception of TPHfo which was detected for the first time 
withm seep 610SPOI at aconcentrahon of 490 MS^L. No TPH detections exceeded CAP cleanup 
levels. 



ES-l? 

FiiEl and Second Qiurlcra 2007 Oclobcr?007 



Toluene was detected for the first time withiit 610GW103 at a concentration of 0.66 jig/L, during 
Second Quirfer 2007. Toluene h^s nol previously been delected ^t this location. MTBE was 
delecledal2.6iig/Lin well6lOMWIOI. No toluene or MTBE delections exceeded CAP 
cleanup levels. 

The majority of dissolved metal concentrations were wilhin hi stoncal ranges and weie also 
below Iheir applicable CAP-speci tied cleanup levels. Arsenic was the only metal delec led above 
its CAP-speci fled cleanup level Arsenic was delected at anew higli concenlralion of 28 \fg/L 
within 610SP01 during the Second Quarter 2007. 

Total metals were only analyzed within seep 610SP01 during the Second Quarter 2007. All 
concenlralions of lolal melals were significantly higher than the historical results, however, 

CAP-specified cleanup levels do not apply to lolal melals concenlrations. 

G round w aler moniloring at theCommissary/PX Ai"ea will conlinue lo be conducted in 
accordance wilh Ihe Revised Final CAP. 

E.1.2.L7 Baker Beach Disturbed .\reaa 1 and 2A (Appendix .\'I7| 

EEDAs I and 2A were added lo the Presidio-Wide Groundw aler Monitoring Program beginning 

Firsi Qiiarler 2006. The FirsI and Second Quarters 2007 were the fifth and si\lh expanded 
monitoring events conducted al BBDAs 1 and 2A, since Ihe piezomelers were inslalled in April 
2005. 

During the Second Qnarler 2007, TPHfo was detecled wilhin BBIPZIOO al a concentt^ation of 
760 tig/L which exceeded Ihe RAP cleanup level of 443 MS^L. Dissolved lead was detected 
withm Ihe sample collecled from BE IPZIOI at a concentration (3.2 Mg^) '" excess of ils RAP- 
specified cleanup of 2.5 MS^L. Chrysene was delected al a concenlralion ofOJ [\.g/L wilhin 
EEIPZIOI which exceeded ihe RAP cleanup level of 0.0044 |jg/L. 

No olher analytes were delected above cleanup levels during Ihe Firsi and Second Quarlers 2007. 

The remedial ei'icavation began following Ihe Second Quarter 2007. No further sampling is 
scheduled for EEDAs I and 2A nntil ihe remedial excavalion has been compleled. If fresh water 
seeps are preseni following Ihe remedial action, then moniloring will resume. 



ES-13 
FiiEl and Second Qiurlcra 2007 OclobcT?007 



SEMI-ANNUAL GROUNDWATER MONITORING REPORT 

FIRST AND SECOND QUARTERS 2007 

PRESIDIO- WIDE GROUNDWATER MONITORING PROGRAM 

Presidio of San Fraucisco, California 



1,0 INTRODUCTION 

This Semi-AniiLial Ground waler M on iloring Reporl foiihe First and Second Quaiter^ 2CX]7 of the 
Presidio- Wide Groundwaler Moniloring Program has been prepared by Tieadwel] & Rollo, Inc. 
(Treadwell & Rolloj for The Presidio Tnist (Tru^l)^ During ihe Flrsl and Second Quarlers 2007. 
17 sites at the Presidio of San Francisco [Presidioj were included in ihe gjound water moniloring 
program, r^ shown on Figure \. Although Ihe Presidio iscurrenlly under Ihe jurisdicli on of the 
TrusI and the Nalional Park Service (NPS), the Triisl is managing the Presidio-wide Groundwater 
Moniloring Program. 

This report describes the groundwater elevation monitoring and sampling methods used, 
summarizes ihe laboratory analytical procedures ^nd results, and presents the results of the quality 
assurance ^nd quality control (QA/QC) and data validation activihes for samples collected during 
the First and Second Quarters 2007. This report ^Iso summarizes historical sampling data 
previously collected by others. The groundwater monitoring, l^boratorj', and data v^lidahon 
methods and procedures used by others during historical sampling events have been discussed in 
previous quarterly groundwater monitoring reports (Montgomery Watson, 1996c, 1 999a -n, 2000; 
Treadwell & Rollo. 2001b, 2002b, 2002d, 2002f, 2002g, 2002h, 2003e, and 2004cj. 

The Trust worked with the United States Environmental Protection Agency (EPA|, California 
Environmental FVotection Agency, Dep^itment of Toxic Substances Control (DTSC), Regional 
Water Quality Conh'ol Board, San Francisco E^y Region (RWQCB), and Restor^hon AdvisoiT 
Board (RAB) representatives to develop the Cleanup Levels Document. The Devciopment of 
Piessdia-Wide Cletiiiiip Lev eh for Soil, Sect'sment, Groiindtvater, tind Siiiftice Walei' (Cleanu]'' 
Levels Documenti summarizes the derivation of human health and ecological cleanup for soil, 
sediment, groundwater, and surface water, and the development of soil background metal 
concentt^ationsatthe Presidio (Erler & Kalinowski, Inc. |EKI], 2002; Revised 2006). The 
original Cleanup Level Document d^ted October 2002 was revised in M^y 2006. Table 7-6 of 
the Cleanup Level Document {Cieaiiup Lcveis jor Sufjacc Water, Seep and Groundwaler a! Ihe 
PiesidioqfSiin Frmictsco] was revised ^t this time. The document also presents the proposed 
methodology for detennining Presidio-specific cleanup levels based on the protection of hum^n 
health and ecological receptors forchemicals that may potentially be encountered in soil, 
sediment, and water at the Presidio (EKl, 2002; Revised 2006). These cleanup levels were 
developed to be applied to new decision documents for chemical release sites within the FVesidio. 



Fiial Biid Si:i:and Quini^ia 2007 DclDbcr20D7 



Cleanup of perroleum piogiam ^ites, such r^ ihe Commis^ury/Post Ei'ichange (PX), niusr adhere 
to Site Cleanup Requiremeiil^ (SCRt.),per Orde, No. R2 -200 3-0080, Revhed Si!e Cleanup 
Rcqiiheinenls and Reschsscm oj Order No. <fl -082 and Order No. 96-070 (RWQCB. 2003). Thjs 
Older requires that the Presidio-Wide Quarterly Groundwatei Monitoring Pi"ogi"am reporl 
monitoring achvihes and findings, and publish chemical concentralion plume maps of 
^ppropriale coiilaminants of concern ^emi -annually. This report i^ intended lo comply wilh the 
requiremenis of the Order. 

1,1 Report Orgaiiizalion 

Thi^ report is organized asde:»cribed below. 

• The Executive Sum maiy presents a brief, concise synopsis of the most significant 
changes lo the moniloring program and any significant findings, observations, and 
recommend ati on s. 

• The Main Body of the reporl presenis the projecl background, ihe geologic and 
hydrogeologic setting, Ihe groundwaler moniloring procedures, Ihe laboratory 
analyses, and the QA/QC procedures and findings. The main body of Ihe report 
inckides a sile location figure and tables summarizing moniloring plans, samphngand 
analytical procedures and methods, and data validation procedures. 

■ Apj'kendix A j'lresents sections for each of ihe areas inckided in Ihe prog]"am. Each 
sechon describes ihe sile background and site-specific geologic and hydrogeologic 
setling, presents cunenl and hislorical sampling re su Us, and provides 
recommendations for nnxlifi cations in future monitoring events, if necessaiT. Each 
sile seclion contains sile-si'iecific figures, tables summarizing analytical results, and 
moniloring well purge recoids. 

■ Appendix B contains completed equipment calibrahon forms. 

■ Appendix C contains ground water-level measurement logs. 

• Appendix D conlalns Ihe laboratory analytical quality control (QC)reporls for Ihe 

First and Second Quarters 2CMD7 prepared by DalaVal, Inc. (DalaVal), ihe projecl dala 
vahdalion firm. Appendix D is included in electronic form on a compact disk (CD). 

• Appendix E contains Curbs & Tompkins, Ltd. (Curtis & Tompkins) laboralory 
analytical dala reporls. Curlis & Tompkins was ihe designated primary laboratory 
for the First and Second Quarters 2007. Appendix E is included in electronic form on 

aCD. 



Fiial Bnd Si:i:and QuiHi^ia 2007 DclDbcr20D7 



• Appendix Fconlains Columbia Analylicul Services (CAS) laboralory dn^lydcdl data 
repents. CAS wa^ ihe QC laboralory designaled lo analyze ihe QC duplicate samples 
for the First and Second Qiiurterth 2007. Appendix Pis included in eleclrouic form 
on a CD. 

1,2 Field Sampling Plan 

The groiindwatei" monilonng activities docLimenled in this repoil were performed in accordance 
with Ihe F\eld Sanifiiirif; Plan, Prei\(i'so Gixfiindwafcr Moniforiiig Project, Picst'dio of 
Sun Francisco, San Francisco, CaHJomia (FSP) (Tre^dwell & Rollo, 2001a) ^nd Ihe Prestdio- 
wtde Quisitfy Assitiance Piojecl Piaii SanifiHrig anJ Aniitysis Plan (QAPP) (Tetra Tech, 2001). 
Any deviations from Ihe FSP during the Flrsl and Second Quarters 2007 have been doc nmen led in 
Appendix A sile-specific sections or where ^pphcable. The FSP initially identified the 
gronndwater elevation monitoring and sampling schedules, well locations, sampling procedures, 
^nd proposed analytical test methods. Cunently, gronndwater elevation monitoring and sampling 
schednles, well locations, samj'iling procedures, and jirojiosed analytical lest melhc-ds are identified 
on aqu^rterly basis in Table I of thi s report. Table I is submitted to Ihe stakeholders for review 
and approval prior to sampling during each quarterly monitoring even L 

Sland^i"d operanng procednres (SOPs) were presented for required monitoring tasks ^nd for 
optional tasks such ^s well abandonment, which may be performed within the scope of the 
groundwater monitonng program. The Base-wide Gioundwaler Monilonng Pian (BGMP) 
IM on Igomerv' Watson, 1996c) and site-specific corrective and remedial action plans (CAPs and 
RAPsj were also consulted in preparation of this reporL 

Modifications to the FSP may be required if the scoi^e of work is modified, or if there are 
substantial revisions lo the QAPP. [f modifications lo the FSP are required, ^ leller will be 
prepared which will inclnde a brief discussion of the proposed changes and copies of revised 
tables and figures. The leller will be submilted to Ihe NPS and appropriate regulatory agencies 
for review and commenl. Minor ^djuslmenls may be made lo the monitoring prog]"am dej'iending 
on field conditions, and those changes will be documented in field logs and reporied in the semi- 
annual reporls. 

\3 Cixiundwater Monitoring Objeclives 

The general objeclives of Ihe Presidio-wide Groundwater Monitoring Program, ^s presented in 
the FSP, are as follows: 

• Monitorthe lateral and vertical extent of gionndwater contamination . 

• Track contaminant concentrali on and migration lohelp evaluate impacts lo potential 
beneficial uses of groundwater. 



Fiial Biid Si:i:and QuiHi^ia 2007 DclDbcr20D7 



• Piovidedara on contain in ^nl conceiitrali on and migr^lion needed for stndies lo 
evalu^le poreutiul exposure pathways to hnm^ii ^nd ecological receptors. 

• Improve underslandingof the FVesidio geology' and hydrogeology. 

• Validale, optimize, and evaluate Ihe effeclivenes^ of ground waler remedial measures. 

• Evaluate whelher remedial objectives have been met. 

• Pi'ovide the mformalion necessary lo establish and npdate long-tenu monitonug 
sirategies. 

• Provide groundwater monitoring reports with defensible data in accordance with the 
QAPP, SOPs, site-specific remedml plans and decision documents, and applicable 
regulatory agency requirements. 

Site-specific monitoring objectives are identified in the sile-sjiecific sections presented in 
Appendix A. 



Fiial Bnii Si:i:and Quini^ia 2007 October 2007 



2.0 BACKGROUND 

The Uniled States Department of Defense, Department of the Army (Anny) operated the Presidio 
as a military base until 1994, when the Army closed ihis base and iraiisferred the Presidio^ s 
admmisliative jurisdiction to iheNPS. As part of the Army's responsibihties under base closure 
legislation, the Army initiated certain actions to address en viionmenlal conditions at the Presidio, 

including inshtuting the EGMP. The Army retained Montgomeiy Watson to prepare the BGMP 
and to conduct the groundwater monitoiing program. 

The Trust was established follo^^lng passage of the Presidio Trust Act in 1996. The Trust 
negotiated with the Army to assume the Aruiy's environmental cleanup responsibihties in order 
to ei'ipedite the environmental remediation efforts. The Trust retained Montgomeiy Watson to 
continue the Groundwater Monitoring Program through the Third Quarter 2000 and retained 
Tread well & Rollo to perform the Piesidio-wide Groundwater Monitoring [Program beginning 
with the Second Quarter 200L 



Fiial Biid Si:i:and QuiHi^ia 2007 October 2007 



3J) GEOLOGIC AND HVDROGEOLOGIC SETTING 

Tsrtonic activity in The San Francisco Bay Area, and llie Pi'esidio specificaUy, has resulted in an 
irregular topography of near-surface and sui Jicial bediock (referred to as llie Fi"anciscan 
Fonnation). Througlioiil the Presidio, the Franciscan Complex consi sis moslly of serpentinite 
that is typically overlain by relatively permeable iinils of poorly consolidated or unconsolidated 
sediments. These units are defined as (from oldesl lo youngestj: the Merced Formalion, the 
Colma Formation, Ihe West Valley Clay, and dune sand. 

The Merced Formalion is a discontinuous uni I, composed primarily of clay wilh low hydraulic 
condiiclivity. The Colma Formation overlies theMei"ced Formalion, and overlies Ihe Franciscan 
Fonnation bedrock in areas where Ihe Merced is absent. The Colma Formation consisis of 
horizontally bedded, fine-grained, slightly silt>' sand. A local, disconhiiuousclav deposit of 
unknown on gin, refeiTed loas the WesI Valley Clay, has been observed in a layer up to 30 feet 
thick overlying the Colma Formalion. Dune sands are the most recen I continuous unit deposited 
across ihe Presidio. Dune sands generally overlie the Colma Formahon, bnl mav also overlie the 
Franciscan, Merced, or West Valley Clay where erosion of the Colma Formalion has occurred. 
The dune sands are generally well sorled, fine- to medium-grained, and yellow -brown to light 
gray in color. 

Previous investigalions have identified ihree groundwater basins al Ihe Presidio. These basins 
are the Lobos Creek Groundwater Basm, the Coastal Bluffs Groundwater Basm, and the Marina 
Groundwater Basin (Figure I). The Lobnjs Creek Ground waler Basin includes Lobos Creek, Ihe 
principle perennial siream at Ihe Presidio. The Marina Ground waler Basin includes ihe West 
Valley, Norlheasteni, and the Crissy Field Ground waler Areas (MonlgomeiT Watson, 1996c). 
The Coastal Bluffs Groundwater Basin is nol subdivided into ground waler areas. 

The Lobos Creek Groundwater Basm is underlain by the Franciscan Formahon and substanlial 
thicknesses of relatively permeable, unconsolidated units. Several ground waler wells wilhm ihis 
basin were used lo supply a portion (approximalely 10 percent) of ihe waler used forfonner 
Presidio opera lions. 

The Marina Ground waler Basm is ihe largesi of the Ihree basins at the Presidio. As menhoned 

above, ihis basin includes three giound waler areas, based on iheir geographic location. 

The Marina Ground waler Basin is underlain by all of the geologic unils identified at the Presidio. 

The Coastal Bluffs Groundwater Basin is Ihe smallest of ihe ihree groundwater basins and is 

predonimanllv underlain by relatively impenneable serpenlmile rock (Franciscan Formalion) 
with minor amounis of overlying peimeable materials. Groundwater yields m this basin are 
expected to be exiremely low. 



Fiial Biid Si:i:and QuiHi^ia 2007 Oclobi^r 2007 



TheEGMP w^^ prepared in 1996 and has been supplemenled by subsequeni sile-specific 
inve ^ligations. Summaries ofgeologic and hydrogeologic condilions encounlered ^1 each 
sampling area are piesenled in Appendix A. 



Fiial Biid Si:i:and Quini^ia 2007 October 2007 



AJa GROUNDWATER MONITORING 

The scope of field work for thi? report included collecting groundwater elevation 
measurements and samples fiom groundw^ler nioniloriiig wells, piezomelers, and seeps or 
springs ^t 17 areas al ihe Presidio [Figure 1). Tables I A ^nd IB idenlify the elevalion 
monitoring, sampling, and analyses schedules for wells, piezometers, seeps, and springs at 

each ^i"ea for the First ^nd Second Quarters 2007, respectively. The 17 areas are: 

1. BiLildmg900sArea 

2. Landfills 

3. FillSite6 

4. Ballery Howe/Wagner 

5. Building 1349 Area 

6. Fill Site I, Landfill 2, El Polin Spiing, Tennessee Hollow, and UpgradienI Wells 

7. Landfill E 

8. Landfill4 

9. Fill Site 5 

10. Building23l/207Area 
IL Building 1065/1027 Area 

12. Mini -CAP Areas 

13. Nike Missile Facihty 

14. Baker Beach Dislurbed Area3 

15. Landfill 10 

16. Commissary/PX Area 

17. Bakei Beach Dislurbed Areas J and 2A 

4,1 Groiindwarer Elevation Monitoring 

On 26 February and 4 June 2007, groundwater elevation measurements were collected at 
moniloring wells, piezomelers, and seeps at 1 83 and 103 locations, respectively. Tables 2A and 
2B summarize the groundwater elevation measurements collected dun ng the First and Second 
Quarrel's 2007, respectively. Groundwater elevations were measured using a Slope Indicator 

8 
Fiial Bnii Si:i:and QuiHi^ia 2007 October 2007 



model #51453 or a Solinst model #10] wdler level melen Copies of ^11 field equipment 
calibration forms are included in Appendix B. A minimum of ihiee mea^iiremeiil^ w^s taken at 
each well and recoided on the ground w^ler elevation log, as described in ihe SOPs. Copies of 
the ground water-level measurement logs are included ^s Appendix C. The w^ler level melers 
were deconlaminaled afler e^ch use by ^pr^ying them with an Alconox delergeni solution, then 
ringing wilh potable water* in confonnance vnWh the SOPs. 

Durmg the First Quarler 2007 ground waler elevali on monilonng, iwo wells [HWCW102 and 
LF4GW101) were found lobe dry. Two groundwater monitoring well^ (I349MW102 and 
1065PZ6A) were proposed for elevation moniloringdunng the First Quarler 2CX)7, but these 
wells were nol located. Four groundwaler seeps ILF5SPI00, DAESP03, BB2ASW100, and 
BB3SW104) were not flowing at the time of ihe g]"ound water elevation survey. Additionally, 
theCommissary/PX Are^ Final Correchve Aclion Plan (CAP| was being implemented during the 
FirslQuarler2007, so no monitoring wells f600GWmi Ihrough 600G W 1 09 and 6I0GWI01 
through 610GW103) or seeps (610SPOI and 6I0SP02J were measured in this area during the 
First Quarter 2007 sampling evenl. The conditions ^t these locations are identified in Table 2A. 

During the Second Quarler 2006 groundwater elevation monitoring, four weiis ^nd piezometers 
(BB3PZ101,BB3PZI02, HWGWI02 and LF4GW101) were found to be dry. Two groundwaler 
monitoring wells {1349MWI02 and 1065PZ6A) were proposed for elevalion monilonng during 
the Second Quailer 2007, but these wells were nol located. Four groundwater seeps IDAESP03, 
6lOSP01,BB2ASWIOO, and BB3SW104) were not flowing ^t Ihe lime of the groundwater 
elevalion sui"vey. Two moniloring wells (I065MW9A ^nd I065MW9B) ^nd iwo piezomelers 
(l065PZIAand 1065PZIB) were abandoned prior lo the Second Quarler 2007, as part of the 
Building 1065 Area Final CAP. The conditions al Ihese locations areidenhfied in Table 2B. 

4,1,1 Groundwater Elevation Monitoring at TIdally Influenced Wells 

During the FirsI Quarler 2007, low and htgli tides were predicled lo be at 2:02 PM and 6:33 AM 

on 26 February 2007, respeclively. Observed low lide on 26 February 2007 w^s at 2:00 PM with 
R magnitude of 0.09 feet below Presidio Lower Low Water (PLLWj. Obsei"ved high tide on 
26Februai-y2007 wasal6:36AM wilh ^ magnitude of 5. 8S feel above PLLW. The First Quarler 
2007 predicled and observed lidal times and magnitudes are pi"esenled in Ihe notes on Table 2A. 

During the Second Quarler 2007, low ^nd high tides were predicted to be at 3:34 AM ^nd 
4:18 PM on 4 June 2007, respectively. Obsei-ved low lide on 4 June 2007 was at 8:48 AM wilh a 
n-iagniludeofO.72 feel below PLLW. Observed high hde on 4 June 2007 was ^1 4:00 PM wilh a 
magnilude of 4.48 feel above PLLW. The Second Quarter 2007 predicled and observed tidal 
times and magnitudes are presenled in Ihe notes on Table 2B. 



Fiial Biid Si:i:and QuiHi^ia 2007 DclDbcr20D7 



During The Flrsl Qiijirler 2007, depth lo grouiidwaler mea^ureiiienls were collected between 
2:10 PM ^nd 2:52 PM on 26 M^i-ch 2007 at the Building 900s Area, which the Tmsl has 
determined ii minimally influenced by Ihe lide^. Figure 2A shows graphical tide plol^ for Ihe 
Golden Gale Tidal Stalion on 26 February 2007. 

During the Second Quailer 2007, deplh to ^ound water measurements were collecled between 
1 1:56 AM and 12:42 on 4 June 2007 at the inajont>' of Commissary/PX Area monitoring well?, 
which the Trust has determined i^ tidally influenced. Monitonng weli 6I0GWI03 was 
mistakenly not measured with the other Commissary/PX Area monitoring well^ and was 
subsequently measured at 2:20 PM on 4 June 2007. Addihonally, seeps 610SP01 and6lOSP02 
were observed at 3:00 and 3:02 PM, resi^ectively. Figure 2B shows graphical tide plots for the 
Golden Gate Tidal Station on 4 June 2007. 

Varying degrees of tidal lag may exist at site wells, causing goundwater elevations within 

monitoring wells to vary and to not necessarily be synchronized to the tidal schedule. 
The'^dal lag" is the length of time between a tidal extreme and the maximum influence 
measured in a well. The distance inland from the nearest tidally influenced surface water body 
is used to determine the hdal lag. In a homogeneous aquifer, the hdal lag time should be directly 
proportional to the distance from the surface water body. Varlahons in Ihe hdal lag may be due 
to aquifer heterogeneity oi the presence of man-made structures. AlCrissy Field, Ihe shallow 
aqnifer may be hydrau Ileal ly connected to the tidal marsh, whereas the intennediate and deej'iei 
aquifer may be hydrauhcally connected to the San Francisco Bay, though these relationships have 
not been specifically characten zed. 

4,2 Groundwater ^iiipling 

The equipment and methods desciibed in the FSP are summarized below. Groundwater samples 
were collected in laboratory-supplied sample containers, sealed, labeled, and placed into ice 
chests containing a sufficient volume of ice to maintain a temperature of 4.0 degrees Celsius ( C) 
for transport to the offsite analytical laboratories, in accordance with the methods described in 
the FSP. All samples were documented with chain -of-cus tody protocols, as described in the 
chain-of-cuslody SOP. The sile-specific sechons in Appendix A present details of well, 
piezometer, and seep sampling. 

During the First Quarter 2007, three groundwater sampling crews purged and/or sampled 
1 12 wells, piezometers, and groundwater seeps between 27 Februaiy and 7 March 2007. The 
following groundwater monitonng wells, piezometers and seeps were proposed for sampling 
during the First Quarter 2007, but did not contain a sufficient amount of water to complete a 
fii I l/parhal bottle set, were not flowing at the time sampling was attempted or had accessibility 
issues: DAEGW07, DAESP03, NKGW03, BB2ASW100, BB3GW101, BB3PZ101, BB3PZ102, 
BB3SW100, BB3SW101, BB3SW102, BB3SW104, HWGWI02, and 1065PZ6A. Additionally, 

ID 
Fiial Bnii Si:i:and QuiHi^ia 2007 DclDbcr20D7 



rheCommis^ary/PXAi-eamoniloring locations 600GW101 through 600GWI09, 610GW10] 
Through 610GW103. and 610SP0] and 610SP02 were nol sampled dunnglhe First Quarter 2007 
due lo the ongoing coirective action ihat was laking place at llie lime of samphng. 

During the Flisl Quarter 2007 monitoring event, the Trust requested thai seep NKSW 100 be 
sampled a I the Nike Missile Facility' and Ihe analyses be conducted on a 24 -hour rush lurnaround 
time. The seep was sampled on 7 March 2007. 

During the Second Quailei" 2007, three groundwater saiiij'kling crews j'lurged and/or sampled 
53 wells, piezomelers, and groiindwatei" seeps between 4 June and 8 June 2007. The following 
ground watei" moniloring wells, piezomelers and seeps were proposed for sampling during ihe 
Second Quarter 2007, but did not contain a sufficieni amount of waler to complele a full/partial 
botlle sel, were not flowing at Ihe liuie samphng was allempled or had accessibility issues: 
6I0SP02, DAESP03, BB2ASWI00, BB3GW101, BB3PZ10U BB3PZI02, BB3SWIO0. 
EB3SWi02, BB3SW104, and HWGWI02. 

4,2.1 Cixiundwal^r Pur^iii^ Methods and Seleclioii Criteria 

The following sections describe Ihe groundwater purging melhods and selection criteria that were 
used during this quarter. 

4,2.1.1 Croundualer Pur^ng Methods 

Two pnmary gioundwater well purging melhods, normal and low flow, were used during Ihe 
Firsi and Second Quarters 2007 and are described below. Tables lA and IB identify the 

samphng methods that were proposed for each well, [f field condihons required any changes 
from the proposed methods, those changes are described in Ihe site-specific summanes in 
Appendix A. 

Normal -This method involves purging unhl three borehole volumes of gi ound water have been 
extracted or unhl groundwater parameters have stabilized, which ever is greater. Table 3 
idenhfies well conslruchon details required to calculate the borehole volumes for each well. 
Table 4 shows the precalculated volume of water m a I -foot sechon of various borehole and 
casing sizes. For low-yield wells that require slower pumping rates than would be used with the 
normal method. Tables I A and IB identify a **modi lied" normal method, which is the same as 
the normal method except that a maximum purging rate of 0.5 gallons per minute (gi^mj is 
designated. If the well is able to sustain a 0.5 g[*n\ purge rate, well puigingis considered 
complete after groundwater parametei"s have stabilized. If a well is purged dry using the normal 
or modified purging melhods, Ihe groundwater level is allowed to recharge to within SO percent 
of its pre-purgmg elevation prior to sampling. Additional details on this method are presented in 
the FSP. 



LI 



Low Flow -This melhod involves pur^ngal a rale as low asO.02gpm in onderlo niinimize 

gTOLindwarei" sample dislui'bance. Additional derails on ihis method are presenled in The FSP. 

4,2.1.2 Groundwater Purging M«lhod Selection Criteria 

TheTrusI has delerinined which piirgiiig method louse at each well using the following 
selection en ten a: 

1. Whenever possible, wells should be purged using Ihe normal method. 

2. To help maintain dala comparabllily, ihe purging melhod for a well should remain 
consislent from qiiarler to quarter e'icepi ^s noted below. 

3. If a well is pumped diy or shows a sigiiificaiildiop in the groundwater elevation using the 
normal melhod ^nd requires a slower pumping rate, ihe modified normal purge melhod 
win be used. This change to a slower pumping rate can be made dun ngpuiging, 
depending npon groundwater recharge conditions. 

4. If a well is pumped diy using the modified nonnal method and requires a slower pumping 
rate, the low-flow purge method will be used. This melhod requires si">ecialized 
equipment ^nd has the potenlial lo affecl dala compar^bilily, so changes lo this melhod 
would only occur with Trust approval prior to future qiiarlerly sampling. 

5. When not conflicting with crileria 1 through 4, all wells al a single site screened in the 
same zone shall be purged using the same method. 

4,2.2 Groundwater Sampling Methods 

The sampling methods nsed following purging are described below. 

4.2.2.1 Groundwater Sampling; Methods After Normal Purging 

Following normal purging, gioundwaler samples were collecled using a new disposable bailer, 
a 2^nchHdiameler Grundfos Redi-Flow™ or a peristaltic pump, and decanled mlo the appropriate 
laboraloty-supplied conlainers. Monitoring wells that ^re sampled using eilher a 2-inch Redi- 
Flow™ or perislallic pump may have dedicaled lubing assocmled wilh them. Dedic^led lubmgis 

stored at the Central Magazine in new plailic bagi after each use. 

4.2.2.2 Groundwater Sampling Afler Low-Flow Purging 

Following low -flow purging, groundwater samples were collected using eilher a peristaltic 
pump or a 2-inch Redi-Flow"" pump. Monitoring wells Ihat are sampled usmg eilher a 2-inch 



I? 

Fiial Biid Si:i:and Quini^ia 2007 October 2007 



Redi-Flow'''" or pensitaltic pump may have dedicated lubing associated with ihem. Dedicated 
tubing IS stored at tlis Central Magazine in new plaslic bags after each use 

4.2.2.3 ^muplingat ^e^5 

Eight and nine seep and fixed mamlDnng locations were identified for sampling ai^pait of this 
program during the First and Second Quarters 2007, respeclively {Tables I A and IB). 

First Quarta 2007 

A seep sample was collected &"am EPSPQ 1 during the First Quarter 2007, m accordance with 
procedures presented m the FSP. Seep LFlOSPOl was also sampled durmg the First Quarter 
2007, as described below 

During the Fourlli Quarter 200^ and the First Quarter 2007, ihe field team used a polyethylene 
conlamer, typically used for general cheimstry analyses, lo transfer water fi"om ihe seep 
(LFlOSPOl) to the TPHd and TPHfo sample bottles Tins procedure does not comply wilh the 
FSP or surface waler sampling SOP As disaissed below, ihe passible effect of the improper 
samphng lechniques on ihe results was evaluated by coUeclmg samples by bolh methods and 
evaluating the results 

Based on the inconsislent TPHd and TPHfo resulls (lA^en compared to hisloncal data), and ihe 
inappropriate sampling for TPH methods used m the Fourth Quarter 2006 and First Quarter 
2007, additional sampling was p erf onned on 11 May 2007 between First and Second Quarters 
2007 Primary samples were collected using ihe SOP method and a duphcale sample 
(DUP0511071A) was collected following the melhod used during the Fourth Quarter 200e and 
the Firsl Quarter 2007 (samples were collected mpolyetliylene container then transferred to 
appropn ale lab oratory -sup plied containers), in an attempt to determine if the elevated TPHd and 
TPHfo detections were caused by ihe sampling melhod and use of ihe polyethylene conlamer 
TPHd was detected above the reporting limit in ihe May 2007 primary sample at a concentralion 
of 3S Lig/L, but was not detecledin the May 2007 duphcale sample TPHg and TPHfo were not 
detecled within either the primary or duplicate samples First and Second Quarter 2007 TPHd 
and TPHfo results, along witli additional sampling and analytical metliods used to understand 
these results are discussed in Section 5 3 of Appendix A- 15 

Seeps DAESP03, BB3SW104 and BB2ASWiaD and BBDA 3 fixed surface water seep 
momlonng points BB3SW100, BB3SW1D1, and BB3SW102 were all dry or did not contain a 
sufficienl amount of water for sampling durmg ihe First Quarter 2007. 

In addition to ihe seep samples collected during the First Quarter 2007^ the Tmsl requested that the 
Nike Swale seep (NKSWIQD) be sampled This sample was not part of the onginal scope and was 
therefore, nol included on Table lA The Nike Swale seep was sampled in the presence of Tmsl 
personnel Discussions of the Nike Swale seep sampling is included in Appendix A Section A- 13 

13 
FjreliindiecoiidQoiiileis2a07 Oclabei3Qa7 



personnel. Discussions of The Nike Swale seep sampling is included m Appendix A Section A-13. 
Because spniigand seep localions can change over time. The sample locanons were initially 
identified by the Tmst. 

Second Quarter 2007 

Two seep samples and one fixed moniloring point sample (610SP01, LFIOSPOI, and 
EB3SW101) were collected during Ihe Second Qiiarler 2007, in accordance wilh procedures 
presented in Ihe FSP. Seep6lOSPOI was exposed and samples were collected by Blaine Tech» as 
they h^ve been historically, by digging r small hole and a I lowing groundwater lo see]"' inio the 
depression. The w^ter w^s ihen collecled wilh ^disposable bailer and placed in laboratory- 
supplied containers for analysis. Seep 6lOS['02 was not sampled during ihe Second Quarter 
2007 because it was submerged. 

ThreeBBDA3 fixed surface water seep moniloring points BB3SWI00, BB3SWI0I, and 
BB3SW102 were ^11 dry or did nol contain r sufficient am ouni of water for sampling during the 
Second Quailer 2007, with ihe exceplion of BB3SWI0L A dissolved melals sample w^s ihe 
only sample collecled from BB3SW101 during the Second Quarter 2007 due lo insufficient 
waler. These fixed moniloring pomls are purged prior lo sampling, in accordance wilh the 
'modified' melhod of sampling described in Seclion4.2.2J above. 

Seeps (DAESP03.BB3SW104^nd BB2ASW100) were not sampled during the Second Quarters 
2007 due lo an insufficienl amouni of w^ler. 

4^ Sample Preservation^ Handling, and Transportation 

Samples were collected in laboratory-supplied sample containers, sealed, labeled, and placed into 

^n icechestconlainmga sufficieni volume of ice lo maintain a lemi^eralure of 4.0 C (plus or 
minus 2.0 C) for transport to Ihe offsile analylicai labor^lories, in confonnance wilh procedures 
presented in Ihe FSP. Temperature blanks were included m coolers for measurement by ihe 
laboralory upon receipt. 

43,1 Sample Labels and Chain-or-CusIodv Ekicumenlation 

Sample labels for e^ch conlainer were preprinted on adhesive paper prior lo beginning sampling 
operations. Prior lo samj'iling, each field leam w^s designated r number {e.g., 1 through 4 in the 
case of four sampling teams J for the duralion of the sampling event. The samples were idenh fied 
according to ihe numbering scheme described m the FSP, wilh the following modifications. 



14 
Fiial Biid Si:i:and QuiHi^ia 2007 October 2007 



• The FSP specified Thai iripbianks be ideiilified asTB ^nd the dale. When 
multiple tri]"' blanks ^^e^e generaled by different sampling crews on Ihe ^ame 

date, the number assigned to the field crew collecting the sample (1,2, 3» or 4) 
and a letler (i.e.. A, B,C, etc.), indicating which sample of iheday it was for 
lliat team, were ^dded to the sample identification to ensure ih^l all inp blanks 
had unique idenlifi cations. For example, trip blank TB0227071A was the first 
trip blank collected on 27 February 2007 by field crew nnmber 1 . 

■ The FSP specified that duplicate samples be idenhfied ^^duplicale (DUP) and 
Ihe d^te. When multiple duplicate samples were generated by different 
sampling crews on Ihe same date, ihe s^me l^behng methodology descn bed 
above for irip blanks was applied lo the duplicates. The number assigned to 
Ihe field crew collechng ihe sample and a letter (i.e.. A, B,C, etc.), indicating 
which sample of the day it was for that team, were added to the sample 
i den lifi cation lo ensure Ih^t all duplicales had unique idenlifications. For 
example, duplicate sample DUP0605073A was the first duplicate sample 
collecled on 5 June 2007 by field crew number 3. 

After labeling, each sample's requesled laboratory analyses were recorded on individually 
numbered hi p li c ate chain -of-cnslody forms. The sample coolers and chain-of-cuslody forms 
were kepi in the possession of Ihe samplers onn r secure, locked loc^hon prior lo pickup by 
the laboi"aloi"y conrier. 

4^,2 Fillration of Groundwater Samples for Melala Analyses 

Beginning in Ihe Second Quarler 2001 and through the Thii"d Quarter 2002, all groundwater 
samples collected for dissolved melals analyses were filtered in Ihe field with a 0.45 -micron, 
Clearwater Engineering'^ filter prior lo being placed in preserved containers. For reasons 
discussed below in Seclion 5A3.4, a different brand of filler was selected beginning in the 
Fourlh Quarler 2002. 

Beginning in Ihe Fourth Quarter 2(X}2, ^11 ground w^ler samples collected for dissolved melals 
analyses were fillered in Ihe fiekJ wilh r 0.45-micron, high-capacity polyelhersulfone QED 
Quickfilter'" pnor to being placed in preserved con la iners. The filters were flushed wilh al least 

200 milliliters of sample water prior lo collechng the sample, which adheres lo the 
manufaclurer^s instrnctions. For wells being analyzed for lotal dissolved solids (TDS), analyses 
were also performed using the fillered sample. 



Fiial Biid Si:i:and QuiHi^ia 2007 October 2007 



At DTSC's request and beginning in The Second Quarter 2003, both dissolved (filtered) and tolal 
(unfiltered) melals samples ^^ere collecled at seep and fixed monitoring poini locations. Tolal 
melals results are not lepresenlative of dissolved melal condi lions in ground waler. 

All dissolved melals samples collected during the First and Second Quarters 2007 were filtered 
using QEDQuickfillers'f^. 



L6 

Fiial Biid Si:i:and Quini^ia 2007 October 2007 



5.0 LABORATORY ANALYSES 



5,1 Analylira] MelhcxJs 

Table 5 lists the types of analyses, analylical melhods, sample container l^pes and volumes, 
preservatives used (if applicable), and the maximum allowable holding times prioi loextraclion 
for each analysis. The follo^^ing carbon ranges were used for lolal i>etroleum hydrocarbon (TPH) 
analyses and are summarized in Table 5. 

• TPH us gasoline (TPHg, carbon range C7-C 1 2). This carbon range was sjiecified by 
Ihe QAPP. 

• TPH as sloddard solveni (TPHss, carbon range C7-C 12). TPHss analyses were added 
lo the Presidio-wide GroundwalerMoniloniig Program beginning wilh the First 
Quarler 2004 al Ihe requesi of Ihe Trust. The carbon range for TPHss is nol specified 
in the QAPP. TPHss is a specialized formiilalion of TPHg and is found in Ihe same 
carbon range as TPHg. Laboratoiy quantificalion for TPHss is achieved by 
comparing ihe shape of ihe analytical chromalogi"am within the same carbon range as 
TPHg for a diagnostic combination of spikes. 

• TPH as diesel (TPHd, carbon rangeCl2-C24). This carbon range was specified by 
the QAPP. 

" TPH asfliel oil (TPHfo, carbon range C24-C36). No carbon range for TPHfo was 
specified by the QAPP. At the requesi of Ihe Trust, TPHfo is qualified by the 
laboratory using the TPH as motor oil (TPHmo) standard and the QAPP carbon range 
forTPHmo. This issue is discussed in more detail m Sechon 5.4.3.1. 

Table 6 lists compounds of potential concern (COPC) identified in Ihe QAPP and analytical 
reporting hmits forCOPCs in the groundwater monitoring program. Several water quality 
cnleria are summarized in Table 6 for comparison with the labnjratory reporting limits. The 
water qua hty en ten a pi"esenled in Table 6 do not necessarily represent cleanup criteria for 

Presidio sites. 

The analytical methods for some metals and polycyclic aromatic hydrocarbons (PAHs) were 

changed from those idenhfied in the FSP in order to reach the lower reporting limits idenhfied in 
the QAPP. The following changes, approved by the Trust, were made. 

• Twelve metals (antimony, arsenic, bannm, beryllium, cadmium, copper, chromium, 
cobalt, nickel, silver, thallium, and zinc) wei"e analyzed using Environmental 
Protection Agency (EPA) Method 6020 instead of EPA Method 6010 as proposed in 
the FSP between theSecond Quarter 2001 and the First Quarter 2003. Beginning in 
the Second Quarter 2003, seven of these metals (arsenic, barium, beryllium, 

17 
Fiial Bnii Si:i:and QuiHi^ia 2007 DclDbcr20D7 



chromium, cobalt, nickel and zinc) wei"e graiiled variance by Ihe slakeholders from 
Ihe QAPP reporlmg limils ^nd were analyzed using EPA Melhod 6010. 

■ PAHs were analyzed using EPA Method 8310msle^d of EPAMelhod 8270 as 
proposed in the ESP. 

Four emergen! chemicals fi^erchlorale, N-nitrosodimethyhmine [NDMAJ, 1 ,4-diox^ne and 
polybrominaled di phenyl ether |PBDEll^^e^e added to Ihe Eirsl Qu^rler 2004 ground waler 
monitoring event al the requesi of Ihe RWQCB. As haled on Tabled, analylical methods for the 

emergeiil chemicals are: 

" Perchlorate, EPA Melhod 314.0; 

• NOMA. EPA Melhod 1625' 

" U4-dioNane, using EPA Melhod 8270C; and 
- PBDE,EPAMeihod 1614. 

NDMA was Ihe only emergent chemical analyzed during the FirsI Quarter 2007. No samples 
were analyzed foi Ihe four emergent chemicals during Ihe Second Quarter 2006. 

Three new analyses (tolal organic carbon [TOC], dissolved gases [melhane, ethane, and elhane], 
^nd arsenic III and V speci^hon) were added to ihe Presidio Groundwaler Monilonng Program 
during the Eourth Quarter 2004. Analylical melhods used for these new analyses are lisled in 
Tabled ^nd below: 

• TOC,EPA4l5.2; 

" Dissolved gases, RSK I75;and 

■ Arsenic TTI^ndVspeciation. Draft EPA 1632 Modified. 

TOC, Arsenic III ^nd V si"»eciation and dissolved g^ses analyses were nol conducted during ihe 
Firsi and Second Quarlers 2007 and will not be included ^s r p^it of the Presidio Groundwater 
Moniloring Program in fu lure quarters as il is no longer required lo evaluate ground waler redox 
conditions at the Sile. 

5,2 Analytical [>ata Delivery Methods 

The analytical hboralones submitted ^11 analytical reports in paper and eleclronic formats to 
Treadwell & Rollo. Both Ihe electronic and paper copies were forwaided lo Dat^Val. Dat^Val 
reviewed bolh the electronic and paper data, and ]"'re]"'ared three D^l^ V^lidalion Summary 



Reporlt. d^led 1 6 March 2007 (DalaVal, 2007^), 7 May 2007 [DalaV^I, 2007b) and 15 Augu^l 
2007 (DalaVal, 2007c). The reporlt. eiilitled, Duln Vafidalkm Suinmaiy Report foi the N!ke Seep 
Siinipiifif; Eveiil. The Prei\(i'so oj San Fnsncisco, CA, Data Valiiialion Summaiy Reparl for lire 
Firs! Qua rley 2007, Groundwater Monilnring. Presidio of San Frniieiseo, CA and Data 
Viilidislion Siimmaiy Report for the Second Quarter 2007. Groundwtsler Monitoring, Presidio of 
San Francisco, CA, re^peclively, ^re discussed in Secrion 6.1 and altached as Appendix D. 

S3 Analylica] ResiiEls 

The rabies in rhi^ report that presenniew analytical dala were generated fi'om laboratory-supplied 
electronic data deliverables (EDDsj, aftei Ihe EDDs had been validated by DataVal and imported 
into the projecl database. Analytical summary tables ^^ere prepared for each sile and are 

presenled in Appendix A. 

5A Analytical E)ata Comparability 

One of the goals of this Groundwater Monitonng Piogiam lias been to establish standards for 
ground water sampling and analvlical methods thai provide a high degree of data comparability' 
among different wells throughout tlie Presidio, and between the current and historical dala 
collected at the same well. The primary vanables that can influence data comparability are the 
field methods, samplingmethodology, the types of analyses pei formed, and the analytical 
methods used by the laboratory. These issues are discussed below. 

SAA Field Methods 

To assist with data comparability, the FSP established Presidio-wide standard well purging 
and sampling methods, and criteria for selecting purging methods, as described m Sechon4.2. 
The selection criteria include evaluating the historical purging and sampling methods at a 
parhcniar well and at other wells within a single site. 

To assist with comparability of data collected from direct-reading field instruments, this program 
has attempted to employ similar methods and instrumentation at wells purged using the same 
method. 

5,4,1.1 Dissolved Oxygen 

Dissolved oxygen (DOj results are discussed in the individual sile-specific sections in 
Aj'kpendix A. In general, wells purged with the low -flow method used an in-line oi'iygen probe. 
Wells purged with the normal melhod have used a downhole oi'iygen probe since the Third 
Quarter 2001. During the Second Quarter 2001, DO was recorded wilh either a downhole probe 
or a surface instrument in wells purged with the nonnal method. The surface inshument 



19 
Fiial Biid Si:i:and QuiHi^ia 2007 October 2007 



generally recorded higher DO coucenrr^tions lliau rhedowuhole lusrruinenl because of water 
turbulence caused by collecting Ihe sample vnWh r boiler. 

Beginning ill ihe Second Quarter 2002, in an effort lo increase Ihe accuracy and precision of the 
DO measui'ements being collecled in the field, the following prachce was implemented. 

The down-hole DO meler probe i s slowly lowered to ihe middle of the screened inlerval in each 
well before recording Ihe DO measuremenl. Thi^ prolocol ensures Ihat the relatively dislurbed 
and aeraled water near the top of the water column is not measured. This prolocol does nol ajiply 
to wells sampled using Ihe low flow sampling method, because ihose wells are measured using a 
flow-lhrough-cell at the surface. 

This prolocol has produced significantly more stable, and generally lower, DO measurements 
when compared to historical values. 

5.4.2 Analylkal Suile 

Toassisl wilh data comparabihty, the analytical suile for each well was selected for consistency 
with previous analyses conducted by others. Additionally, analyles were added to provide grealer 
consislency wilh the analytical suile for all wells at a site and with wells at adjacent siles. 

5.4.3 Analytical Methods 

To assist wilh data comparability, the laboratory analytical methods used, beginning in the 
Second Quarter 2CX1I, generally remained Ihe same between subsequent quarters, and these 
methods were similar to most of the methods previously used by others. A significant change 
from previous TPH analyses was the introduction of carbon ranges specified m the QAPP that 
differ from previous ranges. Addihonal significant changes from previous analytical methods 
involved PAH compounds and 12 metals, as described in Section 5.1. 

SA3.1 TPH Analyses 

The TPH analytical methods used during the First and Second Quarters 2007 are the same as 
those used in recent quarterly samp hng events. However, historical TPHfo analyses used a 
carbon range of C?i-C]b, which the QAPP states should be called TPHmo. During the Second 
and Third Quarters 2001, TPH within the C^ -Cm and C^j-Cjo carbon ranges were reported as 
TPHfo and TPHmo. respectively. Beginning in Ihe Fourth Quarter 2001, TPH within the Cji-Cj6 
carbon range is reported as TPHfo in order to conform with the reporting convention used prior 
to the Second Quarter 2001. 

It is a standard procedui"ein this monitoring program to use sihcagel cleanup EPA Method 
3630A to remove non petroleum -based hvdrocarbons in all TPHd, TPHmo, and TPHfo analyses. 



Foi ThiidQuarler 2001, EPA Melhod3630A was requesled for all TPHd.TPHmo. and TPHfo 

^u^lyse^ on The ch^iu-of-cu^lody fornix, bur the primary laboratory mislakenly did not perform 
the silica gel cleanup for most of these analyses. For Second Quarler 2002, ihe QC labor^lory 
mistakenly did nol perfonn ihe silica gel cleanup for the sample from nioni tori ug well 937GW42. 
Performing TPH ^n^lyses wilhout using r silica gel cleanup to remove non petroleum -based 
hydrocarbons can lead loelevaled TPH concenlrations, due to the quantification of nalurally 
occurring hydrocarbons ^sTPH. This is especially true for sites underlain by matenal wilh very 
high organic content, such as the shallow B^vMud present in portions of Crissv Field. Previous 
groundwater moni Ion ng reports have described this issue ^nd presenled jushfication for why ihe 
TPH detections in samples run withoul the silica gel cleanup are not representative of petroleum- 
based hydrocarbons, and why this data is not being rehed upon (Tre^dwell & Rollo, 2002b, 
2002d, 2002f, 2002g, 2002h). 

All of Ihe samples wilh detections of TPHd, TPHfo, ^nd TPHmo, which were not run wilh the 
silica gel cleanup, were qualified with an ^NJ" by Dat^VaL The USEPA National Funchonal 
Guidehnes for Orgmc Data Review defines 'NJ^ as follows; 'The analysis indicates the 
presence of an analyte that has been 'lent^hvely identified^ and the associated numerical v^lue 
represents its approximate concentration." 

As requested by the Trust, monitoring well 1047MWI00 was sampled fwTPH asSloddaid 

solvent iTPHssj beginning in Fourth Quarler 2003. 

5.4.3.2 Xjlene Analyses 

Beginning in the Fourth Quarter 2C01, xylenes were reported as total xylenes in order to conform 
to the reporting convention used prior to the Second Quarter 200 L Dunng the Second and Third 
Quarters 2001, xylenes were reported as m,p-xvlenes and o-xylenes, because the QAPP identified 
reporting limits for these compounds only and not for total xylenes. The sum of the 
concentrafions of m,p-xylenes and o-xylenes is equivalent to total xylenes. The reporting hniil 
for lot^l xylenes is 0.5 micrograms per liter l|.Lg/L|, the same ^s currently being used for the two 
xylene compounds. 

5.4.3.3 PAHAnaJjses 

The new method used for PAH compounds beginning in the Second Quarter 2001 (EPA Method 
8310) has lower detection limits than the previous method (EPA Method E270). EPA Method 
8310 analytical data generally confirms historical findings that detectable concentrations of 
PAHs are not present at most sites. 



21 

Fiial Biid Si:i:and Quini^ia 2007 DclDbcr20D7 



5A3A Metals Analyses 

The new method u^ed lo analyze 12 metals beginning in the Second Quarter 2001 (EPA 
Method 6020) has lower detechon limits than Ihe previous analytical inelhod (EPA Method 
6010J. A description of Ihe differences belween these methods was included in previous 
reports (Treadwell & Rollo, 2002d, 2002f). 

Re iju Its using EPA Method 6020 showed detectable concentrations of some metals for the first 
time in some wells, such as antimony and arsenic, beginning in the Second Quarter 200 L 
For metals such as antimony and arsenic, the detected concenti"ations were generally lower than 
the historical i"eporhng limils. Analytical resnils measured belween the Second Quarter 2001 and 
the Third Quarter 2002 indicated thai some zinc concentralions and the majority of barium 
concenlrations were higlier Ihan hislorically reporled. 

The reason for the increases m barium and zinc concenti"alions belween the Second Quarter 
2001 and the Third Quarter 2002 was delermined lobe aresull of ihe brand of filter used, as 
discussed in the Sernt-Aimiitil GixHiiidwiii€i- Mamiariiig Repoit, FiisI and Second Quarters 
2004 (Treadwell &. Rollo, 2004d). 

5,43.5 BTEX/MTBE Anahses 

Benzene, toluene, ethylbenzene and xylenes (BTEX) and methyl tertiary-butyl ether (MTBE) 
analysisthroughtheSecondQuarter 2007 have been run by EPA MelhodB020/B02L This 
melhod has a potential for false detections. This is especially Irueof S020 in which a 
pholoionization deteclor (PID) is used. The PlDis not selective enough and responds to 
hydrocarbons of all t>'pes, not just aromalic hydrocarbons. Dunngihe First Quarter 2007, 
two equipmeni rin sale blanks had detectable concentrations of MTBE. Addilionally, MTBE 
has sporadically been delected al low concentrations across Ihe Piesidio at vaiying 
concenlrations. These sporadic detections may be associated wilh false detections associaled 
with EPA Melhod S020/8O2I. Beginning wilh Ihe Third Quarter 2007, BTEX/MTBE will be 
analyzed by EPA Melhod 8260B and the results will be evaluated against hi stone al 
8020/8021 results. 



2? 



6,0 QUALITY ASSURANCE, QUALITY CONTROL, AND DATA VALIDATION 

The QA/QC program for thi? pioject is designed lo verify Ihal Ihe information presented in this 
reporl is bused upon uccui"ale and reliable laboratory analyhc^l data. Tlie program includes Ihe 
collection and analyses of many types of QA/QC samples, including duplicates (Table 7)» 
equipment rinsate blanks (Table E), Irip blanks (Table 9j source watei bhnks (Table 10|, and 
running m^lni'i spike/matrix spike duplicate (MS/MSDs) lo ensure Ih^t Ihe analytical laboratories 
perform and document all required calibrahons and internal QA/QC procedures. 

Overall, Ihe project d^taqualily objectives have been mel for ihe First and Second Quarters 2007. 
Where dat^ have required qu^lificalion, ^discussion is provided in each quarlerly d^la valid^hon 
report and in each sile-specific seclion. The following sec hons describe the dat^ validation 
procedures and the results of the QA/QC sample evalu^lion for both ihe Flrsl and Second 

Quarters 2007. 

6.1 Data Validation 

Dala validation reports dated 16 March 2007 (DataVal, 2007aX 7 May 2007 (Data Val. 2007b) 
and 15 August 2007 f DalaVal, 2007c) entitled. Data Vaisdalkm Summary Refxyrl jarlhe Nike 
Seep Stinifiiifif; Event. T!i^ Pr€i\dio oj San Francis cc, CA, Dtila ValiiialUm Stimmciiy RcjMjrififr 
ihe FirsI Qua rley 2007, GroLinc/ymlei- Mcni'loring. Pies'sdio oj S<sn Fiunctscci, CA and Data 
VaUddioii Sitniniaiy Re par! for the Second Quaifer2007. Groiindwisler Mimtformg, Presidio of 
San Francisco, CA, re sj'iec lively, are attached as Appendix D. The DataVal reporl for Ihe Nrke 
seep was completed on a rush tuni around at the request of the Trust and was therefore, reported 
separately. 

The reports evaluate the relative pei"cenl difference (RPD) for the duplicate samples from Curtis 
& Tompkins (C&T) and C^ duplicates from Columbia Analytical Services {CASj, and the 
following QC data (where applicable) for each analytical method. 

• Reporhng limits 

• Holding times 

• Target blanks 

• Gas chromatograph/mass spechometer eq^[l]■^men^ tunes 

■ Initial equipment calibration 

■ Continuing equipment calibration 

• Matrix spike/matrix spike duplicate 

• Laboratory control samples 

■ Surrogate recoveries 

• Intenial standai'ds 



:^3 



The following data validation qualifiers used by D^t^Va] ^nd shown in our lables are those 
recommended in USEPAConrr^cl Laboralory Program Nanona] Funclional Guidelines for 
Organic Dala Revietv (EPA, 1999J. 

U The analyle was analyzed for, bul was no! detected above, the reported sample 

quanlitahon limit. 

J The analyle was positively identified; the associated numerical value is the approximate 

concenlration of Ihe analyte in the sample. 

Jb The analyle was idenh tied below the laboralory r^orting limit bul above the laboratory 
melhod delechon limit and QAPP -specified reporting limil. 

N The analysis indie ales the presence of an analvlefor which Ihereis presumptive 
evidence lo make a **lenlative identificahon." 

NJ The analysis indie ales the presence of an analyle that has been "ten latively identified" 
and the associated numerical value represenis ils approximate concentration. 

UJ The analyte was nol delected above ihe repoiled sample quantilahon limit. 
However, Ihe reporled quanlilalion limil is approximate and may or may not 
represent the actual limil of quanlitahon necessary lo accurately and preciselv 
measure the analvie m the sample. 

R The sample resulls are rejecled due lo serious deficiencies in Ihe ability lo analyze ihe 

sample and meel QC criteria. The presence or absence of the analyle cannol be verified. 

Table 1 1 summarizes the data qualifiers used during these evenis and previous Treadwell Si 
Rollo sampLng evenis. 

6,2 Quality Assurnnre and Qualil} Coiilrol Sampling 

Field QC samples include duplicales, QC duplicates, equipment rin sale blanks, field blanks, and 
trip blanks. The following sections summarize Ihe QA/QC samples that were collecled during 
die Firsi and Second Quarlers 2007. 

6,2.1 Duplicate Samples 

Duplicale groundwater samples were collected on a minimum schedule of I dnplicale per 
10 samples (10 perceni) for Ihe primary laboralory (Curtis Sl Tompkins), and I duplicate per 
20 samples (5 percentj for the duplicate QC laboralories (CAS). Duphcale groundwater samples 
were collecled using the same melhods as the primaiT samples, as described in ihe FSP. 
The duplicale samples were analyzed for ihe same suite of analytes as Ihe primary samples. 

24 
Fiial Bnii Si:i:and QuiHi^ia 2007 DclDbcr20D7 



First Quarler 2007 

Forihe First Quarter 2006, 112 primary samples were col lecled for analyses. Fifteen duplicate 
samples [ 13 i">ei"cenl) were analyzed by the primary laboratory and seven QC duplicale samples 
(6 percent) were analyzed by Ihe QC duplicale laboratory (CAS). Therelalive percenlages of 
duplicate and QC duplicale samples collecled are lypically higliei" Ihau the QAPP requirements in 
order lo attain sufficient d up he ate s for each analysis. Table 7 summarizes ihe sample 
idenfifications and analyses for ihe diiphcale samples. The analytical resulls for the duphcates 
arepresenled in Ihe site-specific analytical lablesin Appendix A. 

Second Quarter 2006 

For Ihe Second Quarler 2006, 53 primaiT samples ^vere collected for analyses. Eight duplicate 
samples [15 iierceiil) were analyzed by the primary' laboratory and four QC duphcate samples 
(8 percent) were analyzed by Ihe QC duplicale laboratory (CAS). The relalive percenlages of 
duphcate and QC duplicate samples collecled are lypically higlier Ihan the QAPP requiremenis in 
order to allain sufficient duplicates for each analysis. Table 7 summarizes ihe sample 
idenfifications and analyses for the duphcate samples. The analylical results for the duplicates 
arepresenled in Ihe sile-specific analyfical lablesin Apjiendii'i A. 

6,2.1.1 Du[^icBLe Sample Analytical Results 

The field and pnmary laboratory duplicale precision was evaluated by collechng duplicale 
samples, as described in Ihe FSP, submifting the samples blind to Curtis Sl Tompkins for 
analyses, and Ihen calculating Ihe RPD belween the detecled resulls in the sample and ils 
duplicate. This evalualion assumes ihat Ihe water sample collecled from a well is homogenous. 

Theconlrol limil of 50 percent or less was used for the RPDs todelermine whether project dala 
quality objeclives were being mel. RPDs are calculated for two samples by sublracting the 
concenlralion of Sample One from the concenlration of Sample Two and Ihen dividing this result 
by the averageof the twoconcenlrations. 

Nike Seep- Firsl Quarter 2007 

The overall correlafion of analytical results met project data qualily objectives. 

First Quarler 2007 

The overall correlafion of analvlical results met project data qualily objeclives. Analytes in each 
duplicale pair met the RPD conlrol limil requiremenis, except for the following: 



15 



In field duplicates 1065 PZ7A and DUP0227072B The RPD belween Ihe detecled 
resLiU^ failed The 50^ acceplunce crileria for MTBE at ] 24%. 

In field duplicates LB:HGW04 and DUPO22807IA, Ihe absolule difference belween 
Ihe resLill^ wa^ gjeater Ihaii the 100 tig/L reporting li mi I for dissolved iron. The 
origina] result ^^as non-delect al 100 |jg/Land the duplicate resiill was390|jg/L. 

In field duplicates 1047MW10] and DUP0301072A, the absolule difference belween 
Ihe resLill^ wa^gieatei Ihan the 10 jig/L reporling limil for lolal dissolved solids. The 
original result was non-delect al 10 |.Lg/L and Ihe diiplicale result was 8S jig/L. 

In field duplicates 1349MW0I and DUP030I073A the RPD between Ihe delected 

resLills failed the 50% acceplance crileria for dissolved copper al 155^. 

In field duplicates 1349MW100 and DUP0301073B Ihe RPD belween the detected 
resulls failed the 50% acceplance crileria for TPHg at 64%. 

In field duplicates 1349MW100and DUP0301073B, the absolute difference between 
Ihe resLills was gi'eater Ihan the 300 Mg^ reporting limit for TPHfo. The original 
result was non-deled at 300 Mg/L and the duj'ilicale resull was 670 |Jg/L. 

In field duplicates 1349MW100and DUP0301073B, ihe absolule difference belween 
Ihe results was gi'eatei" Ihan the 0.05 |.Lg^ rej'ioiti ng limit for gamma -ch lord ane. The 
original result was non-delect al 0.05 MS^L ^nd the duj'ilicale resull was 0.5 jig/L. 

In field duplicates l349MW100and DUP0301073B, ihe absolule difference belween 
Ihe results was gi'eater Ihan the 0.97 |Jg/L rej'ioiliiig limit for acenaphthene. The 
original result was non-delect al 0.97 Mg^L and the duplicate resull was 3.8 jig/L. 

In field duplicates I349MW100 and DUP0301073B Ihe RPD belween the delected 
results failed the 50% acceplance crileria for anthracene, fliioranthene, pyrene, and 
chrysene al 62%, 57%, 76%, and 67%, respectively. 

In field duplicates l349MW100and DUP0301073B, Ihe absolule difference belween 
Ihe results was gieater Ihan the 0. 1 |Jg/L reporling limil for benzol a )anthracene. The 
duplicate resull was non-delecl at OT MS^ '*^^*^ 'he original result was L9 MS^- 

In field duplicates NKGW02 and DUP0306071C, the absolute difference between the 
resulls wasgieatei ihan the I \ig/L reporting limit for dissolved copper The onginal 
result was non-delecl at I M&'l- ■'n^ '^^^ duplicale resull was 2.4 jig/L. 

In field dujilicates BHWGW04 and DUP0306073A, the absolute difference between 
Ihe results was grealer Ihan the I \ig/L reporting limit for dissolved anhmonv. The 
duplicale resull was non-delecl al 1 |.Lg/L and ihe onginal resull was 2.2 |.Lg/L. 

In field duplicates BHWGW04 and DUP0306073A ihe RPD belween Ihe detecled 
resulls failed the 50% acceplance crileria for dissolved copj^er al J46%. 



26 
Fiial Biid Si:i:and QuiHi^ia 2007 DclDbcr20D7 



The Data VaUdtiliaii Siirnmurj Repoii je/r th^ Presid'so Tins! Gjoitnd^val^i Monsloi ing (DVSR) 
Firsi QLiaiter2007 ( Append] i'i D| discusses ihe diiplicale sample RPD re su Us, the analytical 
resulls and RPD calculations (Table 3). Dalu was not qualified by Data Val due lo RPD failure of 
duplicate samples because the effect on Ihe quality of the data is not known (DalaVal, 2007b). 

Second Quarter 2006 

The detected results of the original sample and the associated duplicate sample were compared 
and Ihe calculated RPDs reporled. All analyte^ m each duplicate pair met Ihe RPD conlrol limit 
requiremenis, except for the following: 

" In field duplicates 23 IGW20 and DUP0605072A, the RPD bett^een the delected 
results failed the 50^ acceplance crileria for alkahnity at 54^. 

• In field duplicates 23 IGW20 and DUP0605072A, the RPD belween die delected 
resulls failed the 50^ acceplance crileria for TDS al 73%. 

• In field duplicates 23IGW13 and DLrP0605072B. Ihe RPD between Ihe delected 
results failed ihe 50^ acceptance crileria for dissolved copi^er al 130%. 

• In field duplicates I349MW100 and DUP0606073A, the RPD between the detected 

results failed the 50^ acceplance criteria forTPHgat 108%. 

• In field duplicates 1349MW100 and DUP0606073A, ihe RPD between thedetecled 
resulls failed the 50^ acceplance crileria for alkalinity al 65%. 

The DVSR Second Quarter 2007 (Appendix D) discusses Ihe duplicate sample RPD results, ihe 
analytical results and RPD calculations [Table 3). Data was nol qualified by DalaVal due to 
RPD failure of duplicate samples because Ihe effect on thequaLty of Ihe data is not known 
(DalaVal, 2007c). 

6,2.1.2 Quality Control Duplicate Sample Analytical Results 

The laboratory -to -laboratory duplicate precision was evaluated by collecting QC duplicate 
samples and submitting the j'lrimary duplicale sample to Curtis Sl Tompkins and a <I^ duplicate 
sample lo CAS. All ihe QC duplicate samples submilled Ihe QC laboratory had ihe same sample 
identification as Ihe primary samj'ile, with a*C!L" added to ihe end. The relative precision was 
evaluated by calculating the RPD between Ihe delected resulls in ihe duplicale sample and its QC 
duplicate. This evaluation assumes Ihat Ihe water sample collected from a well is homogenous. 

The control limit of 50 percent or less was used for the RPDs todelermine whether project data 
quality objectives were being met. 



27 
Fiial Biid Si:i:and QuiHi^ia 2007 DclDbcr20D7 



First Quarler 2007 

The overall correlation of analylical results between ihe iwo laboratories met projecl dala 
quality objeclives. All analyte^ in each duplicate p^ir met the RPD coiilrol limil requiremenls, 
except for: 

- In QC split duplicates I047MW10] ^nd I047MWIOICL, the absolute difference 
between the results was greater ihan the 10 mg/L repoiting limit for TDS. The 
origina] result was n on -detect at lOmg/L and Ihe duplicate re su lis was 52 mg/L. 

• In QC spht duplicates I349MW0I and 1349MW01CL, the RPD between the reported 
results failed the 50^ RPD acceplance crileria for dissolved copper and zinc at 155% 

and 156*^, respectively. 

• In QC spht duplicates I349MW0I and 1349MW01CL, the absolute difference 
between theresulls was grealer than IheOJ mg/L reporli ng limit for fluoride. The 
original result was n on -delect al 0.1 mg/L and theduphcate result was 0.3 mgfl_. 

The DVSR First Quarter 2007 [ Appendix D) discusses the QC spli I sample RPD results, Ihe 
analytical results and RPD calculalions (T^ble 4). Dat^ was nol qualified by DalaVal due to 
RPD failure of QC split samples because the effect on the qualily of Ihe dala is nol known 
[DalaV^I, 2007b). 

Second Quarter 2007 

The overall correhh on of an^lvtical i"esLihs belween the two laboralories mel project d^t^ qualily 
objectives. All an^lvles in each duplicate pair met the RPD conlrol limil requiremenls, 
except for the following: 

- InQCsplitdLiplicates l349MW100and I349MWIOOCL, the absolute difference 
between ihe rej'iorting limit for heplachlor, acen^phlhene, benzo(a)anthracene, and 
chi"ysene and the detecled resulls were grealer than Ihe inilial repoiting limit. 

- In QC spLt duplicates I349MW100 ^nd I349MW100CL, the RPD between Ihe 
reported resulls foiled the 50^^ RPD acceptance cntena forTPHgf 189%), TPHd 
(76%), anlhr^cene (76^), dissolved arsenic (63^) and alkalinily (70%). 

The DVSR Second Quarter 2007 (Appendix D) discusses the QC spli I sample RPD resulls, the 
^nalylical results and RPD calculations (Table 4). Data was nol qualified by DalaVal due to 
RPD failure of QC split samples because the effect on the qualily of ihe dala is nol known 
I DalaVal, 2007c| 



Fiial Bnii Si:i:and QuiHi^ia 2007 DclDbcr20D7 



6,2.2 Equipment RinsaTe Blanks 

Up to one equipment nnsate blank (ERB) was collected per non-dedicaled sampling device per 
day. Perihe FSP, the ERE s weie collected by pounng clean laboralory-supplied deioiiized water 
over Ihe decontaminated sampling device and direclly inio the sampling container Table 8 
summarizes ihe analytical resulls for Ihe ERB samples. 

First Quarler 2007 

During ihis sampling event, six ERBs were collected and submitted for the same analyses as 
the sample ihat Ihe equipment was used lo collecL The following analyles were delected in Ihe 
ERBs dunng Ihe First Quarter 2007. 

■ Equipmeni blank 1065MWIOARBI065MW10B had a delected level of MTBE at 
5.1 tJg/L. The resLills for methyl lerliary-butyl elher in Ihe associated samples were 
changed to non-detecl (U) if those values were less than five linies the blank amount. 

■ Equipment blank 1065PZ6ERB 1065MW9A had a delected level of MTBE at 
4.7 tig/L. The resulls forMTBEiii the associaled samples were changed lo non- 
detect (U( if Ihose values were less than five limes the blank amounL 

■ Equipment blank BHWGW05REEHWGW0I had a delected level of nitrogen as 
nitrate al0.21 nig/L. The resulls foi nitrogen as nitrate in Ihe associated samples were 
changed to non-detecl (U) if those values were less ihan five times the blank amounL 

- Equipmeni blank I065MWI0ARBI065MW10B had adelected level of total 

dissolved solids al 16 mg/L. The associated samples had lotal dissolved solids values 
grealer Ihan five limes Ihe blank amounl^ and qualification was not required. 

• Equipmeni blank 1065PZ6BRB1065MW9A had detected levels of chloride 
(0.4 mg/L) and lotal dissolved solids (100 mg/L). The associaled samples had 
chloride values gieater Ihan five limes ihe blank amount or non-detecl, and 
qnalification was not requii"ed. Qualificahon was not required for Ihe physical 
properly parameter lotal dissolved solids. 

No other compounds were detected in any equipmeni blanks during the First Quarter 2007. 

Additionally, a field blank was collected at Ihe Nike Missile Facility dunng Ihe First Quarter 
2007 to determine ifNDM A contamination was a result of field practices. The field blank, 
FB030207JA, was collected by fiMmgaclean, disposable bailer with laboratory-supplied 
deionized water at Ihe Site and decanting it into laboralory-snpphed bottles. NDMA was not 
detected above the laboratory reporting limit (0.002 jig/L) in Ihe field blank samj'ile collected 
during the First Quarter 2007. 



29 

Fiial Biid Si:i:and QuiHi^ia 2007 DclDbcr20D7 



Second Quarter 2007 

During ihis sampling even!, one ERB was collected ^nd submitted for the same analyses as ihe 
sample ihal Ihe equipment was used to collect. The following analyles were detected in Ihe 

ERB duniig tlie Second Quarter 2007. 

" Equipment blank BHWGW04RBHWCWiOO had a detected level of nilrogen as 
nilrate al 0.08 mg/L. Associated sample BHWGW04 had a nilrogen as nitrate level 
greater than five limes Ihe blank amouni, and qualification was not required. 

■ Equipmeni blank BHWGW04RB HWGWIOO had a dissolved metals value of 

1,490 i-Lg/L, which is a total based on a sodium value of 530 |.Lg/L and acalcinm value 
of 960|jg/L. The associated samples had sodium and calcium values gi'eater than five 
limes the blank amouni and qualificalion was not required. 

6.23 Trip Blanks 

The laboratory supplied 40-milli liter trip blanks with each shipment of volatile organic 
compound (VOC) sampling containers seni from the laboratory. One irip blank was included 
with each cooler conlainingfiekl samples planned for VOC analyses. Table 9 summarizes the 
analytical results for the tiip blank samples. 

First Quarler 2007 

Elgin irip blank samples were received by the analytical laboralorles and analyzed for VOC s. 

• Trip blank TB0228073A (193055-015) had a detected level of chloroform at 5.3 |ig/L. 
The levels of chlorofonn in Ihe associated project samples were non-delect, and 
qualification was nol required. 

• Trip blank TB0306072A (1 9321 7-013) had a detecled level of chloroform at 0.5 Mg/L. 
The levels of chlorofonn in Ihe associated projecl samples were n on -delect, and 
qualificalion was nol required. 

No olher VOC compounds were detected during the First Quarter 2007 in any trip blanks. 

Second Quarter 2007 

Nine trip blank samples were received by the analytical laboratories and analyzed for VOCs. No 
VOCs weredelecled wilhin any of Ihe irip blank samples collecled during Ihis quarter. 



30 



6.2.4 Source Wafer Blanks 

Blame Tech Services, Inc., the contractor who pei formed ground w^ler inoititoring lasks, 
provided deionized waler for decont^min^hon puiposes from Ihe water deionizali on sy^lem al ils 
San Jose facilily. Source watei" blanks weie collected fiom Die outflow of ihe wateideionization 
svslem and fi'om Ihe watei" lanks mounted on one of ihe sampling vehicles. The soui"ce waler 
blanks were submitted lo Die prinidry laboratory for all analyses in ihe Groundwater Monltonng 
Program. Table 10 summanzes Ihe analytical results for the source water blanks. 

First Quarler 2007 

Source blank DW030807B was collected fi"om the water tank on r sampling vehicle and source 
blank DW030B07A was collected from Blaine Tech's water deionizati on system. A summary of 
detected results in these source blanks are listed below. 

■ Soume blank DW030E07B had a detected level of benzene at 0.07 ps'L. Benzene 
was reported in project samples at concentrations within histoncal ranges, except for 
937GW106 which h^d a first time detection, therefore, the detected concentration in 
the source water blank does not appear to be significant. Detected concentr^hons of 
benzene in 937GWI06 will be monitored to determine if this detection is repeated. 

■ SoumeblankDW030E07BhadadetectedlevelofNDMAat0.002] ^Lg/L. All 

groundwater samples collected for NDMA were collected using disposable bailers 
and therefore, the NDMA contamination in the source w^ler did not affect any project 
samples. 

■ Soume blank DW'CB0807A had a detected level of NDMA at 0.01 13 jig/L. All 
groundwater samples collected for NDMA were collected using disposable bailers 
and therefore, the NDMA contamination in the source water did not affect any project 

samples. 

• Soume blank DW030E07A had delected levels of calcium (660|jg/L) and magnesium 
(2,600 i-Lg/L). FVoject sample association with this blank could not be estabLshed^ and 
qualification was not required. 

" Soume blank DW030E07B had a detected level of TDS at 22 mg/L. Qualification 
was not required for the physical property parameter total dissolved solids. 

" Soume blank DW030E07A had a detected level of TDS at 22 mg^. Project sample 
association with this source blank could not be established, and quahfication was not 
required. 

No other analytes were detected above I aboratoiy detection limits within this source water 
sample during this quartei . 






Second Quarter 2007 

Source bl^uk DW052506A was collected from Ihe water lank on a sampling vehicle and source 
blank DW053006B wascollecled from B bine Tech's water deionizati on syslem. A summary of 
delecled results in these source blanks are lisled below. 

■ Souire blank DW060707A had a detected level of calcium R{720\ig/L. Project 
sample association with this blank could not beeslabhshed, and qualification was not 
required. TDS was leporled in project samples at concentrations ranging fi"om4IO 
mg/L to 2,940 mg/L. TDS conceiili"alions in samples collected at Ihe Presidio during 
Ihe Second Quarler 2007 appear lo be comparable to Ihose collecled in previous 
qnarteis, iherefore, Ihe detected concenlralion in the source water blank does not 
appear to be significant. 

" Soume blank DW060E07B had a delected level of antimony al 15 pg/L. The 

associated projecl samples were n on -delect for antimony, and quahfication was nol 
required. Antimony was leporled in project samples al concentrations ranging from 
non-detecl (less Ihan 0. 1 |Jg/L) to 3.2 \fg/L. Antimony was only delected at 
monitoring locahons BBIPZIOO, BB I PZIOU and 231 GW29. Piezometers 
BBIPZIOOand BEIPZIOI were sampled using a disposable bailer and 231GW23 
was sanij'kled using a j'lump. The concenti"ati on delected in 23IGW29 was in ihe QC 
diiplicale. Aniimonv was not detected in the j'lrimary or duplicate samj'iles and 
Iheref ore, the delecled concentration does not appear lo be significant. 

■ Source blank DW060707A had a delected level of TDS al 44 mg/L. Qualification 
was nol required as TDS is a physical jiroi'ieitj' parameter. 

No olher analytes were detected above laboratory detection limits within these source water 
samples during this quarter. 

6,2.5 Temperature Blanks 

Temperature blanks were included in coolers containing field samples sent to analytical 
laboratories, and the blank temperatures were recorded by Ihe laboratory upon amval. 
The QAPP specifies a temperature of 4.0 °C, plus or minus 2.0 '^C. 

First Quarler 2007 

The temperature of all 24 temperature blanks sent lo Curtis Sl Tompkins ranged from 1.2 to 
4.2 C, which are generally within QAPP requirements with the exception of slightly lower 
temperatures in select coolers. The slightly lower blank temperature is not considered to be 
significant. 

Fiial Biid Si:i:and QuiHi^ia 2007 October 2007 



Second Quarter 2007 

The rem per J [uie r^uge of all 10 temperature blanks sent loCurlis & Tompkins ranged fiom 2.3 

to 5 J °C, which is within QAPP requiiemenls. 

6,2.6 Matrix Spik« and Matri\ Spike Duplicate Samples 

Thiee hnies theuonnal amount of sample volume wascollecled on evei"v twentieth giouiidwaler 

sample for matrix spike/mainx spike duplicate jMS/MSD) analysis. The MS/MS D results for 
the various analytical methods were evaluated by DaldVal and dii^cu^sed in the DVSRs, which 
are attached as Aj'ipendix D. 



33 
Fiial Biid Si:i:and QuiHi^ia 2007 October 2007 



7^ FIELD WORK DOCOVIIT^ATION 



This sec lion describes the field documentation prepared for this sampling even!, in conformance 
with ihe FSP. Field personnel are responsible for recoiding field activities on the appropriale 
field docu men lati on form in sufficient detail lo allow reconslruclion of the sampling event 
withoLLl relying on memoiy. The localion of compleled field documenlalion fonns and logs 
desciibed in Ihe FSP and used dun iig this s am phng event are described below. 

Field InsirumentCali brail on Logs (localed in Appendii'i B and project files) 

Health & Safety Meeting Fonn [located in projecl files) 

Groundwater Level Measuiemenis Logs (localed in Appendix C and project files) 

Monitonng Well Samphng Logs (located at the end of each sile-specific section in 

Api">endix A and in projecl files j 

Cham-of-Custody Forms (localed in Appendices Hand Fand project files) 
Field Invesligafion Daily Reporls (located in projecl files) 
Bonnd Field Book {located in project files) 
Field Audit Fonns (located in project fi les) 



34 



Fiial Bitd Second QuBcl[:i& 2007 



Oclobcr 2007 



8-0 DISPOSAL OF PURGE AND DECONTAMINATION WATER 

All water purged from wells and used for decontaminalion during Ihe First and Second Quarters 

2007 was collected and stored in two 2,ECMD-gallon polyethylene above ground storage tanks located 
at Ihe Central Magazine. On 8 March and 8 June 2007, water samples WT030807 and WT060S07, 
respeclivelv. were collecled from the waler tanks wilh laboratory-supplied containers and submitted 
to Ihe pnmary laboralory for ihe analyles and criteria required by IheCily of San Fi"ancisco for batch 
discharge inio the sanitary sewer sysleni. Additionally, the hold lime for the pH sample associaled 
with WT060E07 was missed so, an addilional sample was collecled for pH on 13 June 2007 
[WT06I307). Table 12 summarizes the analyses required by the City of San Francisco and Ihe 
analytical results. The laboratory data reports are m Appendix E. All results were below discharge 
criteria. Trust personnel discharged Ihe water lolhe sanilary sewer. 



35 



REFERENCES 

Ai'goune Naliona] LaboraloiT (ANL), ] 9S9. Enhcincei! Preliminaiy Asse.isrmnl Repoif: Presidio 
ofScin Francisco Mrtiliiry Reseivalron, Sc/n Fyancisco. CciUjoinia. Prepai"ed for U.S. Army 
Toxic and Hazardous Marenals Agency. Novembei". 

Bla^land, BouckA Lee (BBL), 2006. Fina! Coffecllve Aclion PUm. Buifdsng n49 Sindy Aiea, 

Picsidio cij Stsn Fiunchco, Caisfomsa. February. 

Bradford, G.R., A.C.Chang. A. L. Page. D. Bakhlar, J.A. Framplon, and H. Wright. 1996. 
BackgivUnd Con c^iii rations of Trace and Major Element s !n CaUjaniia Soils. Kearney 
Foundation oj Soil Science, Division of Agi'ietilttiie and Natural Resources. University of 
CaHfoiJiia. Keariie-^ Foundation Special Report. Marcli. 

California Environmental Pioleclion Agency, Regional Water QualHy Control Board (RWQCB)» 

San Francisco Bay Region, 1995. Water Qualitv Control Plan, San Francisco Bay Basin. June. 

RWQCB, I 996. Order No. 96-070, Final Site Cleanup Requirements for Petroleum Impacted 
Soils, Presidio of San Fiancisco. May. 

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Constituents Detected wiifiin the Building 2 i5 Area, Presidio of San Francisco. 

RWQCB. 2003. Order No. R2-2003-0080, Revised Site Cleanup Rei/uiremenls ^SCRs] and 
Rescission of Order No. 9t-0S2 and Older No. 96-070. Augusl. 

Cheever, Julia, 1997. The Presidio's Nike Missile Site. Presidioof San Francisco 
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Code of Federal Regulalions, 2000. Pari 131.3S, Establishment of Numerical Criteria for 
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Dames & Moore, 1995. Final Draft Wetland and Riparian Corridoi Restoiation Feasibility 
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Dames & Moore, 1997. Final Remedial Investigation Rejiort. Presidio Main installation. 

Piesidio of San Fiancisco, California. Prefxired for the USACE. Januai"y. 

DalaVal, 2004a. Quality Control Summaiy Report for the First Qaaiter 2004. Groand-\uater 
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DalaVal, 2C04b. Quality Control Summary Repoitfor the Second Quaiter 2004. Groundwater 

Monitoi iiig. Presidio of San Fiancisco, CA. 13 August. 



36 



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DalaV^I, 2007ii. Dcila VciHifal'uiri Sitnimaiy Repoii jar the Nike Seep ScimpVing Event, The 

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Monstoi mg, Presidio cj San Fnirict'scif, CA. 7 May. 

DalaVal, 2CHD7c. Data Validalioii Sitnimaiy Repoil Jor the Second Quar!er2007, Groundwaler 
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EKI, 2000b. Excavation Report jo i ihe Building 637 Area, The Presidio of San Francisco. 
Calijomia. June. 

EKI, 2000c. Memorandum Regarding the Natural Occurrence ofHexavalent Chromium in 

Surface Water cmd Groundwatei at the Piesidio of San Francisco, Cahfomia. September. 

EKI, 2002. Development of Presidio-wide Cleanup LcfelsforSoily Sediment, Givund water, and 
Surface Water. Oclober. 

EKI^ 2003. Revised Feasibilily Study Main Installation Sites. Presidio of San Francisco. 
March. 

EKI,2004. Building 637 Area Completion Report. April. 

EKI Sl Colder As50ciales, 2003. Landfill E Field Sampling Report, Piesidio of San Francisco, 
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Ceonialrix, 2006. Pliasc I Corrective Action Work Plan. Commissaiy/PX Area, Presidio of San 
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Ceo/Resoui"ce Consullaiils (GRC), 2003. Drajt Sitmmaiy Additional Investigations, Mini-CAP 
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CRC, 2004. Mini-CAP Site Revicivs and Recommendations to Address Former Petioleuin 
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Golden GateTankReniovaUGCTRX 2003. Repoil of Excavation oj Imfxscted Soil. The 
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37 



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{conriniied) 

Harding ESE, 2002. DEH Conslniclion Coinpiel'inii Rcporl. 

Haller,Slephen A, 1994. The Last WoidinAlfficids-ASpecmiUhloiySlitdyofCrissyFicid, 
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Harding ESE, 2003. Dmjt Data Gaps In^esligalion Woi±Pfaii, Biiiid'ing 207/231 Area, Presidio 
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InlernalionalTechuolog}' Corporation ([T), 1997a. ReporlcJ Pelroleum Hydrocarbon Broassay 
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IT, I 997b. Site Investigation Repoil, Buiidiiig 1065, Presidio of Sun Fiancisco. California. 

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MACTEC, 2003a. Infer im Data Repoif. Building /065 Aiea, Presidio of San Francisco. 
Febriiaiy. 

MACTEC, 2003b. Final Draft Interim Action Plan. Building 1065 Corrective Action Plan Area, 
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MACTEC, 2003c. Final Closure Report, DEH Study Area. Presidio of San Francisco, 
Caiifomia. September. 

MACTEC, 2004. Data Gaps Investigation Repoil. Building 23 1/207. Presidio of San Fiancisco, 
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MACTEC, 2005 a. Remedial Action Plan. Baker Beach Disturbed Area f, f A, 2, and 2 A, and 

Twenty-Seven Otiier Sites, Presidio ofScm Francisco. Caiifomia. ([n preparation) 

MACTEC, 2005b. Draft Corrective Action Plan, Building i065 Area, Presidio of San 
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MACTEC, 2006. Tecimical Memorandum: Arsenic and Other Metals in Groundwater at Three 
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MACTEC, 2007 a. Final Remedial Action Plan, Baiier Beach Disturbed Area 3 and Twenty-six 
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MACTEC, 2007b. RedUned Recommended Fmal Remedial Action Plan. Bitilding 231/207 Area. 
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{conriniied) 

MACTEC, 2007c. Cnneclivc Aclion Imphmenlafion WoikPian, Bui'Uhi); 1065 Area. Pi esidio 
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MACTEC, 2007d. Fmal Coiiccli'on Action Plan, Building 1065, Presidio of San Francisco. 
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Moiilgomei"y W^ltion, 1995a. Finai Building 637 Area AS! Aquifer Test Report, Presidio cj 
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Moulgomeiy Wat5on, 1995b. FricI Product Action Level Devetopinent Repoil, PiesiJiocJ 

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Montgomery Walton, 1996a. Site-specific Work Plan for Environmental Soil Investigufion of the 
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Moulgomeiy W^t5on, 1996b. Final Building ] 349 Additional Siie Investigation Repoif. Piesidio 
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Moulgomeiy W^l^oii, 1996c. Drajt Basewide Gioundwater Monitoring Plan, Piesidioof 

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Montgomery W^t5on, 1996d. Drajl Lundfill E Remediaf Design Pre-iiesign Study Work Plan. 

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Moiilgomeiy W^l^on, 1997a. Basewide Groundwater Monitoring Plan, Diajt Allachmenls F.I I 
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Moiilgomeiy W^t^oii, 1997b. Dinff Basewde Groundwater Monitoring Plan AltachmenI F.4. 
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Moiilgomery Watson, 1999a. Building 900 Series Area Groundwaler Monitoring Program 
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MonlgomeiT W^l^on, 1999b. Building !065 Area Groundwaler Moniloring Program April 1999 
Quarterly Report, Presidio of San Francisco, Caiifomia. Prepaied for the USACE, Sacramento 

District, California. August. 



i9 



REFERENCES 
{conriniied) 

Moiilgomei">' W^l^oii, 1999::. Btiildiug 637 Area Gimtndwcitei Mtmiliii ing Piogrcim Aniiuai 
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Moiitgomeiy W^l^on, 1999d. LandfiH E Groundwaler Monitoring Program Aprii 1999 
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DisfricI, Caiijbrnia. July. 

Moiilgomei">' Wilson, 1999e. DeveiopmenI of Point of Compliance Concentrations (POCCs)for 
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Moulgomeiy W^l^on, 1999f. Building 1349 Giaitndwalei Moniloiing Piogram Aprii 1999 
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Moulgomery W^l^oii, 1999g. Nike Missile Facility Area Grouitdwatei Monitoring P rogram 
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M on Igomeiy Watson, 1999h. Batteiy Howe/Wagnei Area Gronndy^^ater Monitoring Program 

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MoulgomeiT W^t^on, 1999i. Buildings 207/231 Area Giorind\vater Monitoring Pnigiam 
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M on Igomeiy Watson, 1999J. Building 2/5 Groundwater Monitoring Program Januaiy 
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M on Igomeiy Walton, 1999k. Building 637 Gioiindwater Monitoi ing Program January 1999- 
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M on Igomeiy Watson, 19991. Bnilding 900 Series Groundwater Monitoring Program April 1999 
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M on IgomeiT Watson, 1999111. Fill Site I and Landfill 2 Groundwater Monitoring Program 
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Sacramento District, Calijornia. July. 



40 
Fiial Bnii Si:i:and QuiHi^ia 2007 Oclober 2007 



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{conriniied) 

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M on IgomeiT Wilson, 2000. LanJJiUS, Briiltling 900 Series Area. Directorate of Engineering 
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Nolle ^ud Associates, 1993. Basewide Hydi ogeoiogic Coneeplnid ModeL 

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TrusI, 2000. Commissary Seeps Interim Source Removai Action Plan, Commissaiy Site Area, 
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TrusI, 2003. Preliminaiy Evaluation of Potential Emergent Chemical Use Areas and Locations 
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Trusl,20O4. Letter lo Roberl Boggtt of DTSC regaining Landfill 4 and Fill Site 5 E^ceedance 

Follow-up. l7May. 

TrusI, 2005. Wetland Sumrnarv Lefler to fhe U.S. Army Corps oj Engineers. Letter from Mr. 

Craig Cooper, Tiijsl, loMr. Bob Smith, US ACE. Januaiy. 

Ringden and Sillon, 1990. Inslcdlatiem Assessment Anny Base Closure Program, 

Piesidia MiUlaiy Reservation, San Francis*.", Calijarnia. 

Schlocker, J., 1974. Geology oj the San Fiancisco Noilh Quadrangle, California. United Stales 
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Slolbr, R.L., & Associates (Stollar), 1993. Final Remedial Investigation Repoil (R/)for the 
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Suthersan, S. and Payne, F., 2005. In Situ Remediation Engineeiing. CRC Press. 

41 



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Tetr^Tec]] EM Inc., 2CMD]. Presidic-iviile Qiiistily Ansnimice Piojet.t Piisn. Sarnpiinf; mid 
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Tread'AdlA Rollojnc. [ Tread well & Rollo|, 2001a. Field Siimplmg P km. Prasdlo 
Grouiidwatei- Manitaniig Projecl. ApriL 

Treadwell & Rollo, 2001b. Dicifl Pre\idso Quarleriy Groundwatci Moiiiti>nng Rejiorl, 
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Treadwell Si Rollo, 2002a. Dicifl Cotnmtssaiv Seeps Interim Source Removal Action Repoif. 

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Treadwell & Rollo, 2002b. Draft Preaidio Qiiisrieriy Ground'vatei Monitoring Rejiort, 

Third Quarter 200 i, Qilarteiiy Groundwater Moniioring Progiiiin, Piesidio of San Franeisco. 

February. 

Treadwell & Rollo, 2002c. Site Investigation Work Plan, Conmussary/PX Study Area. July. 

Treadwell & Rollo, 2002d. Di aft Presidio Quarterly Gronndwatei Monitoring Annua i 
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Treadwell & Rollo, 2002e. Remedial Action Plan and Evaluation of Aiteirtatives for Ixindfill 4 

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Treadwell & Rollo, 2002f. Presidio Quarterly Groitndwatei Moniloiing Rejxtrt, First Quarter 
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Treadwell & Rollo, 2002g. Presidio Qiiarteily Groundwater Monitoring Repoit, 

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Treadwell & Rollo, 2002h. Presidio Quarterly Groundwater Monitoring Repoil. Third Quarter 
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San Ftxincisco. March. 

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42 
Fiial Bnii Si:i:and QuiHi^ia 2007 Oclobi^r 2007 



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{conriniied) 

Treadwell& Rollo. 2003d. Djafl Site Invest\giil'ion Reporl, BitUd'mg 1 34<f Sliidy Aieu, Pi cs'\dio 
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Tread'Aell & Rollo, 2003e. Diafi Scrtn-Annuai Gtcifudwalcr Monilcnng Rejtiil. Fit il and 
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Sun Funic is CO. October. 

Tread'Aell & Rollo, 2004a. Work P Inn fo tmpiemcitt the Remediat Action Pian for Baker Beach 
Disturbed Areas 3 and 4. May. 

Tread well & Rollo, 2004b. Diaft Technical Repoil: EmergenI Cheniicat Study, Fiist Qitailei 
2004, Presidio of San Francisco. CatifotJiin. September. 

Tread well & Rollo, 2004c. Semi-Annrinf Gii>rind\viiter Monitoring Re/j^frl, First and Second 
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Tread well & Rollo, 20O4d. Slope Stability Evahtntion Repoif for Baker Beach Disturbed Area 3, 
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Treadwell & Rollo, 2004e. Dmjt Construction Completion RepoiTfor Landfill 4 and Fill Site 5. 
November. 

Treadwell & Rollo, 2005a. Drafi Construction Completion Repoil Biiker Beac/i Distiii bed Areas 
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Treadwell & Rollo, 2006. Revised Final Corrective Action Plan Coinmissaty/PX Sliidv Area. 
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Oclober. 

URS, 2004. Five Year Revieii' and Field Investigation Report Jor Landjills S and JO. January. 

URS, 2004. Draft Eive-Yeai Revie\^ and Field Investigation Work PlanjorLandjills S and lO. 

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UniledSt^les Anny Corps of Engineers (USACEj, 1990. Base Closure of fhe Piesidio of 
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43 
Fiial Bnii Si:i:and QuiHi^ia 2007 Oclober 2007 



REFERENCES 
{continued) 

USAGE, Unired Slales Army, California DTSC, Regional W^ter Qiialily Control Boaid- 
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Uniled Stales Geological Survey (USGS), 1999. Geocficmislry of Arsenic: Aisentc in Ground 
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U.S. DepartmenI of the Army (Arniyl , 1997. Presidio of San Francisco, Direclorale of 
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U.S. Department of the Army (Armyj, Headquarters, T Corps, and Fort Lewis and California 
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United States Environmental Protection Agency (EPA), 1996. Sampling AmhienI Walerjbr 
Trace Melais al EPA Waler Qualify Criteria Levels. July. 

EPA, Office of Emergency and Remedial Response, 1 999. United Slales EPA ConlincI 
Laboratory Piogiain National Functional Guidelines foi Organic Data Rev^icw. October. 

EPA, Region TX, 2000. Drinking Water Standards and Health Adi^isoiies Tables. Region IX, 

San Fixmcisco, California. February. 

EPA Region IX, 2002. Preliminary Remediation Goals (PRGs) published 10 October. 

htt]■^://^^ w w.ejia .gov/regi oii09/waste/s fu nd/pi"g/i ndex . htm 

Woodwaid-Clyde Consultants (WCC), 1990. Di aft Cnltura! Resources Report for Presidio of 
San Fiancisco Base Closure: Remedial Investigalions. 



44 



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□ PldiUllv H.I n <i Hi. Be Ci (iI Ei.tn ri Ti ri tfi Pb ^ E ^L V 1: H ' ^ !■ 



■ 1^ TtaHddi 



I mL iLdrii lid HI AldliJ bdn 



II PIdiULH H.I li Ei.tr rd [Krr PL hl| IJn Pb rh ■« ^ Jfl 

'I LlrTl.-l Id li Cr <J Cv ri P^T* t«^ZH 
I LIndi-LlH 1i Cr n Cn ri ri hi iMid In. 

T Lln:«.Lld ll Cl <ri Eu TV ■! uj '.■ 
I tllld..Lld II ri hHI I 

T Dl^hiriOi|irn DUhL Hk IBTHBO V ID h laluDrd Hjidd luip^ U^i DU v^irlnBJH i Mill ill "M^ 1i[mi ^|B i^ i^i 

I niddlMiTl Bi ^ra Mid i.llf rill ■iiiM f iiniiiir IIimibim ImIi .^i^fHUi *i in Hif. ■ I ^f m^ 1 ■■ I ^11^ 1 1 n ra VTillL-ri ^ ^lAzHOid la r ^HrlnJ bh HUkTlL- iHiiU ■ KiiUliU a-dnf 
H TVd «■[*- HE Dl^ I.-4 ■! ^ IHmiH] hfdl .mif -- I d-Liid d Ucrii-liBi 

ID bBHlMiU lif < rm If I -n-^IA'-f liiBidiBiii il luani I Aiidir. vi^llUiUKdii IhBIhU 1bI< -ii I- irlKTrd hh -Bitm^^ llif .li«r tf fu ^|h ri-lawdHDH - -— -" — ^ |i "F'l ' --|— ... 

lil.jH vBbiHdii^J lihWi<hJ.-H lu b-n vcillkrd la b' f^ ni b Iih-t-iiii* TIi- 'wii- - LD -'diiH-lli: ImUuf E■^.1■ All. ii fir id kmriiU^ ID|i In.fFflidliH 



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«iff riU lEUIiUlidn IM-Hiiiid lEmpiifp llir Ilia iJuhIit 2M^ 

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C tl TEei dJHL ■jH^Hini 1^, 

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!!■■ Ul- r-rldil IHI F.ID r-i^iM' if IBI TUI In Dn^ h i BiHKdr hHF nO v III bin ih- .ji|>lii| ary. ■ n i^|k E^k i^lzliri 
Ql Ifl HE l^nE iHmi viLB-< iduiiemH] 
IP it^VihnDl dl «iHlm.Hfr.L HJi-ivli: dizilrU 

inii in Id rrriri miu TidiirmiiiiMiijibdiMbMd ■ |i i^ Jini iniiri uri miiinldfhEB iri, idida iLUuDd i 

LlEEWd I'tanlKt riuivrn AlL^dJ- j Vd| felEihHic eh^h 

■DPJ1 « iMdidifci nijiMid 

TID Td nr DnmiKiEd 



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Tablr 1 b 

Prcpii^rd £][iipllii|^^liDli]lr ^miiid I Jnarlrr ZII07 
V rrj^ H -Hid E G cdu nd </i3 la MonlKi nn^ Prujrcl 

Prcsid Id i»l J^ji Fmiiruiiis C:] Ulii rnl:] 







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Tablr 1 b 

Prcpii^rd £][iipllii|^^liDli]lr ^miiid I Jnarlrr ZII07 
V rrj^ H -Hid E G cdu nd </i3 la MonlKi nn^ Prujrcl 

Prcsid Id i»l J^ji Fmiiruiiis C:] Ulii rnl:] 





1 


1 _1_-- 


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Tablr 1 b 

Prcpii^rd £][iipllii|^^liDli]lr ^miiid I Jnarlrr ZII07 
V rrj^ H -Hid E G cdu nd </i3 la MonlKi nn^ Prujrcl 

Prcsid Id i»l J^ji Fmiiruiiis C:] Ulii rnl:] 



■ II- k^MMFjn 



zl 



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31 



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Til ■■ aiMl^M^l^^llM lb f— 1-FIIFlkdlHI 



■ i^bi LkiiiaL-i^HriD ILL- \ 

aE 4y ^ i-^LtiiiJ uai ui^^ 



■ prif i^^L SEHnlinn rtE 7mj-l imrAsJ^p 
iHiHiq c^iniil- ran Oi rUJ lUr 1 Wtr tvr ■ 
n I lb- ru ILi h -lUi ■BiDiiHniliciid Ue 

I l|H I HWldHllIlHI U Ll^fllld 



r'otim 



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TpA 



yF «H iHlrH 

I— IIBd |i|L-liii:irii JimiiIi^iI -i-c^niiiri 

i^Li^hMj^ iC ^^Kvd JiniM^r^ TmMuifini Ui viSfe 
E-ir7i ini ^li U tV. IBI <urnH. nmq In 



i^in ^ INI I 
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pi,ql 



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T Dm F ID . ^H^ ■ h ■-< 1-F.-1I ili-r ikli iHpl^ 

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Tablr 1 b 

Prcpii^rd £][iipllii|^^liDli]lr ^miiid I Jnarlrr ZII07 
V rrj^ H -Hid E G cdu nd </i3 la MonlKi nn^ Prujrcl 

Prcsid Id i»l J^ji Fmiiruiiis C:] Ulii rnl:] 







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Prcpii^rd £][iipllii|^^liDli]lr ^miiid I Jnarlrr ZII07 
V rrj^ H -Hid E G cdu nd </i3 la MonlKi nn^ Prujrcl 

Prcsid Id i»l J^ji Fmiiruiiis C:] Ulii rnl:] 



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i^FnifcH«>-^fiuiM i-iU J^i" r^vHiJ — wu ^^Afj 
Inrm^ IIBjiliHn CJizfi "•f-a/ izUmitlm 

IMIKIH n Phj IBT 1 M^L I H|ll ■ ll !■ I 

■km ^Ift ^Jkri n iri U 



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11^ In Ulinilii d ■■■llriB^ In Ui m^jii pi*i^ 

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Tablr 1 b 

Prcpii^rd £][iipllii|^^liDli]lr ^miiid I Jnarlrr ZII07 
V rrj^ H -Hid E G cdu nd </i3 la MonlKi nn^ Prujrcl 

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Tablr 1 b 

Prcpii^rd £][iipllii|^^liDli]lr ^miiid I Jnarlrr ZII07 
V rrj^ H -Hid E G cdu nd </i3 la MonlKi nn^ Prujrcl 

Prcsid Id i»l J^ji Fmiiruiiis C:] Ulii rnl:] 







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Tablr 1 b 

Prcpii^rd £][iipllii|^^liDli]lr ^miiid I Jnarlrr ZII07 
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Prcpii^rd £][iipllii|^^liDli]lr ^miiid I Jnarlrr ZII07 
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lliui ■iniiijHt n L r lurill Bn-EL.-ii 



III ^ l-iWHVr IiH- '-li !■ ■ ^Ul- I nil Ih^k- 

■ IVI--U "- ~ TT ' ' - — "" 

--■ I li 1i I nil ^M I III h ^^^KirULtB 




iniBl^V llbHillll LMdLI Id ^U 

I'ri llw ■ -IliiPlUI Ui; U^ ■ jni In i:-. 
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riKV -■ HI I IIIHL, iHin ^ 1^^^ lO h 



I - "^hi^eJ I^ Fi r^v kl DdifaEd ^hJ -WiFdcc van iiMU^^Mf lE^^gvc l ^ dn^n^H^ tt u^H^nd Irclimjirvrb rwi brfnunj m Ihr ^i^ri^JiETTrriirr Wtiin ^rnir^n iirmiftwhrt^r- Mwim\nf*i^ P'^ywT 4Tr:uJ*^A HhJh 144 taj 
1 Imd P'dl hi: lublr k^ mill 

l_n I,, LDim,|'±iili AilBici^lctr LIV iirk_dii_t ^] 

Bi^ h :U miFbifeL br IiikI iniil nj ^ 

3 ^H^^np Ado- iL ^hA ^ie kaiiplribc ncJi v Hb Lbc L«rrd he^h^q Tu u F^ c?.Biipl^ iimplz ibr ^^^ba I vJbr<r4,^raiimb^2w^ri iee^bJ eLc Ike faJaai^ key cirpLiHD i die onink^iai b^ ^uii 

I - WiPi v^bin y fviil^vil dnzniDD i E/^4]:iiiicdh«rLonc-rn 

3 - Wipi v^ HCL^yKiid dszcDDn i eJ I*m l taf Entr-MiE* ■ iliEmHiJ i Ed CEAirrn 

J - Wipi w^k COB ■ Ucai ■ FECcnJ dciidmni afl*M ci^rif^n-.Hjpa i i In ^ii d i of cubl^^ 

4 - Wqli w^k b fk EKHir^v^im i e-T ^nnicd ■ «f i ifc i ii 

3 - Well teA MTV h fk vruiLT^D3iiDn I of cJiniuiiJ i i^ ■ imi i %m Pfceniiid ftc Fize plmx prid—l 

4 - lXi3dv:d iriyrE L inftJudE m eUii^: c^Mir Kid nfcsiE 

J - IrfiB^iar PTidi ^irc^Bd Qiiim1^2441 TiMi-mrvai pj^iid Er«<iL Q^FF ^c^bEd TcporHar Liiiie rr^w^Hcnl b Fbt ^ctcil msj i 

b - Ik: Idle k>i kim rdiivirEd ■■ m: di lioItc* h:I^ i cili^ui Ibr ■lunbn nlH.iQJ.id miiil i ^nfi ir< !■ h^,ii m dinnlrd k- rHmUic-c l liiciBnpl: 1} i73t h^iHei Ai 13 iT|ElJibil <bnuld he Hiilv.c* m kiniKi:wl| knyL Ibcmniii ■bbKind — jlk iHk HEld ilfed ■[ Adidiri kc]y< 

ilUEiiiiljiL ^1 5\x hi ■■ Ee Ce rd riTn Til I: n hij LI II Mr ^l L Nr \]. & H '' nd ^b 

SUmiiLiiL -it Sx ^1, li-li Ce rd ry-Tn Ty. h: lb <lj bin M h. -j hi ^[ Tl V mri fn 

liUndi Liu kl a li TilCi Cd Til Fc h-Ui Ub Sj rb >iKd£ii 

llUndi Liu ^ ^i Cy Tr C< Cb Fc IL lib Lin Ny.Eb, NL_dZB 

-lUildLLiii 1 1 Tr rd Tie Te LIii lb •-x^tlm. 

BUaM.Ua Ai rE,C<,ru Fe lb Ni _u ^ 

TUiUbliB-Ai [It rd-Cn lb NEBid/ji 

IMiUiiUd -t \x.¥c Ud 

IUeUi JiiL- 'I l[ BidCr 

7 - DLmL-id Dif i J 1 DDh iwinnliMiM —il k ilnh^J ty Tiild i-^vbarlDri DD vdKi itaiddt: nc^dEd 1— -Ij hdnn n^vlc idiiknn 

E- DibUiyii-lEducann FiksdJ |URhihH:u^n< i i^h dL yiUi pHfynd in be iB-pJe* Hyar *e Id- JUi yviiliDd y.mr yFln- iliiinrh ceII Fb vcnbid VEBbi 

^ - T>«d uitfldr ■ VE ^yd^jed by ihr Imbyr^Loi y foE dl iKnpLe i LnUmEd 3 ihf he ydm 

ID -Alyddivd ^L'CDi II u ipiadirrJ fiiiw ilaiiy «J yu rtbnE l.iA4EK«ffy quKUiilf^yta for JBoddivd ^K^i i l 3L4iie "ed by rKnp^^r di: divinrdi: i^idvlicd <lii«f 



cd tq hr ivnpLcd by xj^^ Ai nnr^d yr rnHdificd y^dliydi ^uj prvp*h:df*f OKFyicyy 



>EnlL OKP Frlt^k: mcsHii~d uun^ d bprn bilE md^ 



ilhiBib: 



n^r^ y rPlj fyr a dia^oy li>l nwk^iliiiy yf i^Lrb SinL'e TFIIrii drf priipyiEd Fnr^dvv im ilyiisEtL ibc i 



yi 1^ bcLwun llil l f.i1| ml nllui i 



kc-n c^dulH:d Fh ^yMH<5&Jv 



I vdl b: iii-yni-yiKd 2»UErd SwtA-i cnj Lmi bEen ipi^led F«f ihi h hM per Ihf Tni d ■ le^t: u Dir Tn ii "A ill c du-uf Ac ^f ■ tt-wt fJE^iEoi diuu yi pivl yl ilini llujAnp IfJ^ lM^^llly.ylH 



Dill rrd till HdiLibEipnpiiKl Lbyn||iyJir llic '^innl ijnyil e c 'hliT 

All emtJbl^ lt^h i^LLcrc mnd l ^odj ub lh pmpu ic^ viLL ^ei r ivd u^^lri ^dc^c4. ^e TidJ be TtioTd i^ij ^dj ec# Ih dibiyli^ ly^^ ■ ^^ ^Dlbc 

3t - BcBhi LI nmUiiHr idI b 

byT^r - JuuFk; VHh I^HiiplHriEi Slsriad llpsalm p hyLidiii: 

Tfv y ~ kkr ftrib^i Tni il "ajII cvdb^E bifp H BJif FVL For Tyv. pd yi|ULyl--jlv k&y l i^rf v lU irrFDrrn die -biipIehj ^rchs d x i^Eipl : x^rx kE yytirxlrd 

1^1 Ql TIE ^MiipjE*HinH ipe^iEe* qnmir . idy 

1^ A^npl : duf^r iJL qi^yiei i ^yt i h odi^FTi bc dirined 

TPUt IT Mi IFBEd iril.i ] nd rEnlE^ IrdryciykDn L D I imiliiiE *E-d IdcJ ml >K •atmt lA-inl- IIS HH\ Siei Cl:l Cln^ blEf 

Gmml I kaniury Fsx-j-eti Ukduay lul^l kiEHbna^, istiHaE xldundE Elunnd: iiimyriiyuijE fui ^| miilmi 

>fD4 I - V-mrmiaiiiiiiliylHniB: 

TID Tn Ie DEiEiininEd 



L >_ be OjEnJ mit miJmwit ly 



Tabk lA 

GroindHBlEr ElrvalLon Sjinniar} lor Fmidiit M o nLlo rJ ng VVrlLi 

BIcvdliDns CoLlKlcd aii2A February 2UQT 

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167 


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225 7J 


175 ir» 


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147 ir» 


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i«17 


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OtlDb[r7007 



Tabk lA 

GroindHBlEr ElrvalLon Sjinniar} lor Fmidiit ManLlarlng VVrlLi 

BIcvdliDns CoLLwIcd aii2A February 2UQT 

Pn:MdiooC£jn Fnucivo^CjIilorniii 



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rc5 JI 


99.91 


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1251 


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05.15 


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13.10 


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10162 


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Q 


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15.25 


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105 DJ 


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OtlDb[r2007 



Tabk lA 

GroindHBlEr ElrvalLon Sjinniar} lor Fmidiit ManLlarlng VVrlLi 

BIcvdliDns CoLLwIcd aii2A February 20DT 

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33.2S 


27E IB 


245 IJ 


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Q 


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3i2l>D 


29J90 


MW 


1? 


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11 59 


15.12 


334 r»o 


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MW 


Q 


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11 ?B 


10. IB 


111 M 


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Q 


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1140 


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Prngt infb 



OtlDb[r7007 



Tabk lA 

GroindHBlEr Elr^alLon Sjinniar} lor Fmidiit ManLlarlng VVrlLi 

BIcvdliDns CoLlKlcd aii2A February 2UQT 

Pn:MdiooC£jn Fnuc I'vo, € jlilorn u 



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14.77 


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OtlDb[r?007 



Tabk lA 

GroindHBlEr ElrvalLon Sjinniar} lor Fmidiit ManLlarlng VVrlLi 

BIcvdliDns CoLLwIcd aii2A February 2UQT 

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23 69 


NH 


Sl'CP 


Q 


JjkccBL'iick 
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BBlGWim 


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30 44 


191 &4 


16140 


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Q 


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BBIGWIOI 


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27 41 


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13037 


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The cLcvsiliDn preiiCEKcd is I luz jve n£L' o£ ( Iikl' nieiLivii rcmcUs. 
2- E leva IQII4 JC|Xini:d m Prciidio Lower Ln^ Wsilcr I PLL W j d j iim. 

2 - U Ddblc I o lev je DioDVunng f^elir pic/ooicl eri>n 4 JuDe2CX>T 
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5- WcLLMtCWLOl ira.'^dcsliDvcdiifnlvZDOf. 

6- Viilne icpitN^il >> I kc Ixllun of ofiiDg ck:vjlh>ii ]■ PLLW 

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Ike moilonag ''i^ll lul :iiid I he lop nF e jsii^ was me jsaied m I lie Cjl'IJ !ind lufi bcc» vi:riri::d lot? 0.10 fed Theieloie ihc 

LFICGWIIfiiopofcjiinE clevah>ii isappro\imjelv 175 30 Ten PLLW. 

E - Piczomeler usrd lo moiii itr siif Jie '^!Uer neL'ti IocUiod 

9- BBJPZIOI wjs lojDiL^cIv Diiuied BB^SWIIIl. AddilJonally.lkL^dL^[lliio hi;l l^c aiL^jfu reinenl ' 1 403 led k d u cjii° Ihe Fonilk 
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10- Dcplli I n w je r 4' j-ik ncdsiied oi 7 June 7IX>7 

II - MoiilniiDg f^eliy pK:7nmeler jIuidoDL'd in Md> 2007 
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Well ComriHllDn DrDillE 

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LE'SG* LOOA 


Wil\b'M 


U7.l't 


3b 


i 


2 


ISt\ 


?5fl 


35fl 


ZlBdcil AieaQ 


LP^GW lOOB 


WillO'OU 


LIbJA 


IE S 


B 


2 


ISO 


HO 


IBA 


Zlmliiil AiebQ 


Lnawioi 


06llb'D0 


1J1.Q5 


41 


B 


2 


4D0 


ZQ.0 


MO 


^Bdnl AiebQ 


Lnaw 101 


06llQ'D0 


IJ^JIb 


JS i 


B 


2 


J5J 


Z5.0 


ISO 


BuiUIbB 1027 


1027 UWOI 


0511 1«5 


2J 10 


IE S 


10.21 


4 


ISA 


J5 


IT.l 


Burdias ic-r/ 


IO37MW03 


oi^Tjes 


IS 57 


17 i 


10 11 


4 


m 


JO 


IT.O 


Upf rjijicnl 
UpjjDdicn 


UBROIG^Ci] 


IH'IJ^Vk 


ilu H 


.15 


1- 


1 


1-0 II 


45t\ 


55.0 


UBR02G^(i] 


4Hr?5^V<> 


251 yi 


4a s 


B 


2 


4B1 


4B.0 


llO 


JpjnuficW 


llBR02G^(i2 


01f?Ql99 


1S3.MP 


2q i 


B 


2 


29.0 


24 .0 


2QA 


Jpf indiciH 


UBROJCWDI 


01!211>9 


[71.22 


71 


B 


2 


a5j 


50 


Q5fl 


Jpf indiciH 


UBROJCWD? 


01fZ3J99 


170.06 


Hi 


B 


2 


3AJ 


31 


30 D 




TH-I 


0fll]4'9J 


BDTQ 


40 


S.I 


1 


4D0 


30.0 


30A 


TH-r 


OflllSISJ 


iir.26 


70 


SJ 


1 


■ DO 


QO.0 


7Dfl 


Tcan^MC IIdIId\- 


TH-J 


WU^J 


rkOB 


30 


BJ 


2 


JD.0 


ZDA 


3DA 




TH^ 


OflllSfflJ 


4159 
L33.JI 


Its 

13 S 


BS 


2 


15.0 


IDA 


IIA 


PGTG^ lOD 


ouaiTtr 


LI 


2 


5J0 


43fl 


13 a 


Tcan^MC JIdIId\- 


laCWlDD 


ouaiflt? 


Tr»BB 


IE i 


LI 


2 


5B0 


lBt\ 


IBA 


Ljudril] ID 


LFIDGWOI 


OEI?QJM 


LIS V> 


IE 


LZ 


4 


ni 


H5 


LT.l 


Ljudril] ID 


LE'IDGWQ? 


0EI?5IM 


LQS.tJ 


IZ 


LZ 


4 


11 1 


65 


LI 1 


LniiiLrLl] ID 
Ljudril] ID 


LE'IDGWQJ 


OflJOIfflJ 


ISOJIO 


14 


LZ 


4 


52 


42.0 


12fl 


LFioGW taa 


11119^2 


L7S.J0 


11 


\t 


1 


55 


45fl 


15fl 


^illCLOinc 


30oawoi 


03l??^99 


304 21 


40 


!■ 


1 


4D0 


}0f\ 


40.0 



l~04llllOIC 

1 -BB3PZI0L ^ha^ laiBcri, umcd BB3S^ I1L1 

2 - Hale BBD A 3 fiAcd ■duidjib)^ polnLi 

3 - PkjDiDclcjCEBiiiuciiL^B d[lj ill liM I0ti5 PZl A R JIE luicd in bjitj^iic ikh-iipuMi b^i pjiajinpK \tl S[(iil>b4 Ei InJitj^ lyiilu ^^e/^•^rl, 5iirl^jir; 144! 
.licvi J'rcuo'^13 "_^ !ijj f'tnt rTcn, Ci/>ifvn"ii . Frbniwi 19, 2lfOi, bf Zvl ACTBC 

4 - V>[ll <dbB run BIB iklBili forOW- 1 irc Fioh a pdfbDruB li>a f^ 1^' ""l^ E ^Bjilups'D'i^ - 1 l>on provslcd bf <k T rul v ii CHail ob 14 Oa4ibrr2DDJ 

l-OA-l luUldcpikuji ■EpDil[dai2V 12 Eca in a fXfbusMif k>)^ 1 10- I4-20D3 E \B j« Lupi-OW- L Iki c> p m v iilcd tiL 4 lie TiuM hicbjILib 
14 DilHibcr Z003 Baicd idkiccb iVcml Ihii i jKic wax jsiiimcd lu hi ib cnDrjBd ii Ji inciEJKd li 31L 12 

6 - All iicll [inilnKliuB del J lb lihrlbc [lijlc Drjv( iidk iicrc mcjiiiEd Inm l>i>iiiiji Lo^ jnil ^-hdvciIcJ Imm m[lr>; unit as ic pencil in Aiiachmcil \ Id 
Ihc RiquT^ jf ^iilJ'ffiijViais la Pc/iiKir tt Aq\i<Jif T'ri\ti'g istii' Rii'ltlitg 21" ill If'ir ffriiiiiii, Sfjr Fnaiiiiiv. bf B jmIifk EiiilninmciiiBl CiniikjBH I 
April 2DIL2 Bdjiii)^ lihfi di bdI indkaH iBid I rap aw frtacBtc olrid <ipi Tbcrubn <k bHiDH of tailoj e. ilic -^mi is ihc bHuNhm HhElk iciccncd 
mien J L 

7 - BoiEhi^k iljamdcr V j^ niii npiMlcd RirDur^ Diiic w/tlti i^n bojm)^ lih||i inikidcil j* '(u^kmcnl II lu llic H'-qMir^l /ii^ ^uJiliiT^iT^iu ^ii /'rrJiiiTj u 
.l^ivrj^' Tir^lwi/ I'irtii Hut'dwix i SI} ill Dlr P^iriiiliii !.«j i'liit m ii bL BjkLibc F.nun^Bm ( nlj I Ci^Biuling, I \piil 2110 Z Blmib£ mdlii^d d^ciiird ni 
'iDlir^ \-Aik' ' lliEiui luEciuiKC ID bo nii)^ dianidcr id ihc Dislu Hc/wrl, P'ir:iiiii'\r^ tnilaHul'inr in J Deveiiipmenl, Doilr Dnvr Rrcontl'iiclion Firjr^, 
Sm F'lmi^a t\v BjicLibc Edi iidbb( dij L Clmuu I In^ , 1 1 April 2DUL 

NR-^'Dl rcpHhilcJ 

PLLW -FiEikliL? LquccLimi A'r cj iblkim 

TB D - To be 4kl<iB mcd 



Fial J ml IccohL l>B nc B 2007 



PbHi: 1 a! 5 



OaObuwiaOl 



Table 4 

Groundwaler Purge Volume CalcufalioDS 

Presidio-wide Ground waler Monilorinc Proiiruni 

Presidio of San Francisco, Califorma 



Well Borehole 

Diameter 

fmcKes) 


Well Casing 

Inside Diameter 

(iDcKes) 


Borehole 

Annular Volume 

|l!allDns/rool| 


Well CasiDg 

Volume 
(galLoDs/foDl) 


Volume ofLiquid 

in l-fool Well Seclion 

(galloDs) 


2.1 


0.75 


0.D2 1 


(l.<H)31 


0.07(1 


2 


1 


0.016 


0.0055 


0.077 


6 


2 


0.L74 


0.02 IS 


0.555 


7 


2 


0.245 


0.02 IS 


0.714 


3 


2 


0.327 


02 IS 


0.397 


3 


4 


0.26: 


■IUH72 


1.240 


8.5 


2 


D.372 


0.02 IS 


0.99S 


10 


4 


0.453 


0.0372 


f.630 


10.25 


4 


0.436 


0.0372 


1.742 


10.5 


4 


0.514 


0.0372 


1.305 


11 


4 


0.572 


0.0372 


1.937 


12 1 


4 


0.693 


0.0372 


2.2IS 



Noic 

Sec Ground wjicr Sumpfing Surid jrd Opcraling Procedure No. 002 in Ihc F\efif Samphisg Ptan. Presidio 
Gii'iiisdwiiHT Moinloriisg Projecl (Tread well & Rollo. 2001 a) for complclc eqiialions forcalculaling 
borehole volumes 



FiiM Bnd Second QuhjKjs 2007 



Figc I of I 



OclDbcr 2007 



Cnn>-5 

Am Qllci] I' Lbi] Su m mn i> 

r^^ll1ll■-'l HJl I] rouml^aKr 1.1 ihnlLorin|| Fcopjiai 

rrL.kJi^ or Sat liajvPuL I. jJltniD 



Inilvlf ' 


1 1 Dbi7rBU>r7 lifflhnd 


Cn AlirrT>'|ir ihI 

^Hhlumf ' 


rnKJULTF ' 


HhiUIiiiI TIlM ' 


'larlxTinjijr C7-C 17} 


MnlUbl CP ^ ID 1 ^B 


3 1 4D mL vnu 


ncl 


I4i:ar^ 


'larlxTinjijE C7-C 17} 


NdJUVJ CP ^ m ^B 


?< IL ^dufCASt 


ncl 


I4IU|^ 


rpn ud^rl' 


NolUbl CP ^ lU 1 ^B 


li IL \^ia 




■1 Difs rami 


rpnf mliiii 
iarl>»i nLip ^ ( 1-l-CbJ 


NolUbl CP ^ J] 1 ^B 


li II ^du 

K IL \^icii(.'Tr 




■icaficnm 


VDQ 


rrf-BXaa 


3 1 -B mL VUU 


ncl 


ua^ 




rFAsraiB 


3 1 4D mL VOM 


ncL 


UCofi 


PAlb 


rrA 33ID 


Zl IL l^Hl 


- 


7 lb,i CiDmI 


iVOCl 


rrf-BZHK 


7 1 ILl^Hl 


_ 


TDjviCUmI 


3cn 


rrAami 


7 I IL l^Hl 


- 


7aa,iCUxl 


PC^ 


rrAHB? 


7 I IL Irim 


- 


loutsnaaci 


JAiBHal noliElb 


PF-SrilA 


7 I IL 1iit)a\ 


- 


7 lb,i CUjmI 


UioK (III ad V> ap^cU kn 


EPA IfilZMnd 


ll Z»»IDLrDflk 


ItcL 


xrajs 


Iffmr 


eP'TJl-t 


ElSKlBLPbfll. 


nro3 


SlDirS 


CWuM^aI MiSjf 4 Diri ' 


CPirOI4» 


llSKlBLPbfll. 


nr>Li3 


'--innlp, 


D^hol MtfJt • tCfASt ' 


cpiraa» 


llSKlBLPbnk 


nND3 


trhnnlp, 


DnolKil Cl^<^ ' 


RSh E?} 


3 1 4D mL VO.U 


net 


fDirs 


li'ijvnun ChHhiDBiD 


PPA T ['■'■' 


1 1 m bl rMk 


- 


itltnan 


□»Hhli<d Lend ' 


PHTJTO 


1' ZHBLPb'Vk 


nND3 


SELar^ 


r^sikt 


PPl 331! 


SN» mL rvaK ICKT] 
1 I IL Pbll K. (CAS| 


noon 


l4i:aF^ 


ant 


CP' 376! 


»» mL rMK nrai] 

1 I ILP^It(C^ 


XiCKI-tZnOAt 


7 cua 


riH' 


CP1 IOC 1 


1 I ILPbHK 


. 


1 Ca/i 


rce 


CP'41^! 


3i4l>m[ Vl>^n 


II M> 


ZEUar'^ 


1^' 


CP1 IQQ! 


1 I ILPbM^ 


. 


7 IX|1 


PKdilllfllL 


i:pi 3IJ>» 


ll ?M»ml riL4K 


- 


St\:a,s 


i:pi ju 1 


1 I ILPbU^ 


- 


-i:inivn 


*a>'n 


en icu 


7 I IL l^Hl 


1 


7itaacuKi 


J>4-dDl.lH' 


rrA BZ'DC 


7 I IL ItfHl 


- 


TiMjsnaul 


PBDC 


CP1 I'il4 


3 I IL \aba% 


- 


7Dj,iCUkI 


Soirnl C brnhrrr 










.■ kalldy 


CP1 3IC 1 


1 I ilpHk 


. 


SlDirS 


Fltratxiuli' 


CP1 31(1 1 


1 I ILFbXIt 


. 


SX\DiJS 


1. abiiulL 


i:pi 3 Id 1 


1 I II.PbM^ 


. 


St\:a,s 


Chkrkh 


CP1 no 


1 I ILPbllE 


. 


St rajs 


rUTkk 


CP1 no 


1 I ILPbllE 


. 


zxrajs 


NIDai' » NII\QDll 
NBK Ji NDi'fiii ' 


CP1 mo 


1 I ILPbHIt 




-IP nan 


NlJlli'H NiE'ljHb 
NBK 111 NnLfm 


CP' 3i3! 


ll ll'TmLrbflk 


n^o^ 


3ti:a,s 


^lEHi:' 


CP1 ]»■» 


1 1 ILPbil^ 


- 


ZEIIai^ 



J - ■! Iilim m u^K VHhij iiii9 aid hwilllif I Ibc i u h{i«l[td by lle|¥«]|Hl Iduraiirf Cnl P mJ TDrrfit lu 
7 - A ll biifiki w IJ h< filKi'd m at jjxJ Lql Jl n IP ' [XLiobd limpiialBf iF J ibgiKi CcbBi. 

I- TPn^ TPIIhJ atl irm^ juIi'^^hiU} m|j Ie 'Wk' ^14 \r\ 3 Vtl^' ^Ilii «irTf>t'd iHi^iIha 

4- TSe Ivll li m III TPnJ aid TPniu jjDl}«t« icL UHhntilfd ni^TiE ^hn u rrfibJ Idj nha llip iial,kP IvLibi illtra frl 

1- rtkJ riira kn lo tie [ii[lL'iT>xJ ll Itk ri:kli]Mf J II J^ Bkiai lUtf 

rt- nci [XLiiiMini 4111] U LHil^ hi uud 'A tkii 1 1 1 ju||tr. P lU Ivlij ci'ifjiiilht IICD P liFhj ri^<4bl, llf VDAMliukl 

br ■rfK'"^! Ld 

7 - Allul Itir": jjuJ^THi [dnhi Idin I'ib Ihr u^ J L [ibiJ ^ (irialu 



ETIIX - B<ii.jiiF Ti>tiDir. lull} hnKiu jrkJ \yitrs 
H. P - kMtjcl k El| iTiufilid P □^ma 
ICPrilS- Dktjiili LJ} r(U[ibJ Pbn rm " Ui 

M jf^ BpKl'iitqti^ LHiil liml ILHI 
Niril ^ - N-iiliHhv^JlB'lh; bBlv 

liCts - (IjKKKtil'lv Pi:M k kbi 

P^lb - Pnlicicl^ 'nhmm. UritL^otnib 

PBDC- PiMjhHhmlBol dfhi^ J i-ltkT 



K 111 - RilrdikilULd ]:irik3|i P 

Tt [ - TrklikiL>'(l>Eii' 
TES - Toil DnHHiLd ZLJkk 
roc - IVUj] «j Jjik C Jjhii 

irn - Tiul rtUDkij ■ [i>4kHk.alviD 

TS - TiJl-'iav^'iii'd ^lUkk 

VCXI - ViMU lb [kjKik- LDUfxuikK 



- - NDfl'BB^Vhl' 



I^M kJ SccMd i>Bnri 1H7 



nir^liEJ 



DiI^if1H7 



'lablr b 

Walcr Qnalll^v Crilcrta and Analjllial Rcporlinf IJmiU 

PrcEldiD <rrDiindualcrMDnllDrln£ l'rD[CBin 

Pi?& idiD of S an P ranc i&ca , C al i roml h 



Conipci ■ nds of 

FolEnlla] ConcEru 
(COPCf 


WalfrQudlll) Cnlfrla' 


A[ial}lkal 
HfpDrllnj>Lln]ll' 


PntjEfl LabDcaloc^ 
Hi.'po c lin|> 1. Im 1 1 




Frr5h»Blcr 
Sffp !bl 


^'all naif r P rolf i: lion 

ZDUf If) 


Orlukin^lS'alEC 
Clranup LEVfl (d) 


iDDT^nk Chrnkab | 


AHiaimy 


L4'e| 


-<[1 


- 


6 


ID 


10 


AiKDir 


190 


IWIfil 


36 


10 


ID 


10 


B!inun 


- 


- 


- 


IflOO 


ID 


ID 


BciyDiin 


- 


- 


- 


4 


ID 


10 


Cadniiin 


1 I4h> 


I.l|k> 


91 


5 


ID 


10 


Ckloride 


- 


- 


- 


250,001 


- 


l(K) 


CkroDiiumtlLII 


L&OlfcJ,lif 


LHUlliKUl 


- 


50 


- 


lU 


H c^u-dL^Dl € b [DDi 1 u n 


II 


II 


50 


- 


10 


10 


CIllDDllUBItTclJllJ 


130 Iht. Hi 


lftOffc),fil 


50 


50 


ID 


10 


CdIbII 


- 


- 


- 


- 


10 


10 


Copper 


1IS(bJ 


II SLk> 


29 


IJKOljl 


2D 


10 


CyBiide 


52 


52 


5 


200 


- 


10 


Lemi 


J3<h) 


3:Hfc| 


5.6 


I5(») 


5J> 


30 


Mcicmiy 


0012 Ll> 


0012 rn 


00?5 


2 


- 


02 


NH>:rl 


[53 Lk> 


153 ffc) 


7 1 


100 


2D 


ID 


SrtrnLum 


5 mi 


5ln> 


7[ 


50 


50 


50 


Silver 


4Uh).(n) 


4.L(h|.(i| 


2 3 (ij 


50 


FO 


fO 


TOjilljin 


1.7 


- 


- 


2 


5J1 


ID 


ViiiuidiiiTi 


- 


- 


- 


- 


in 


in 


Zinc 


L06|fc) 


KI6|li) 


5^ : 


5^1011 


: 20 


1 '1 



Flid ud SfixHdQuailcrefOOT 



!E I of6 



Oaobcr2007 



'lablr b 

Walcr Qnalll^v Crilcrta and Analjllial Rcporlinf IJmiU 

PrcEldiD <rrDiindualcrMDnllDrln£ l'rD[CBin 

Pi?& idiD of S an P ranc i&ca , C al i roml h 



Com po ■ nds of 

FolEnlla] CuncEru 


WBlfr<Jiidlll> CrLlfriu ' 


<JAPP 

A[ial}lkal 

HrpDrllnj>Lin]il' 


Pntjcrl l.abDcaKic^ 
Hi.'po [ lin|> ]. Im 1 L 




Frr5h»Blcr 
Sffp (br 

IPBfLl 


^'bII nairr F rolri: lion 

Zduf ief 


l>rJiikinglS'alE[ 
Clranup Lcvrl (d> 


SrnlvalBl^Lc Organic Cd ni poi nd£ Ibji EPA riiclhDd BJIO rx^rplivhrrcnDlol> | 


AcPDjphihrn? 


1 :i)o 


- 


- 


- 


50 


5 


Accj\-jpbl'hy\cnc 


- 


- 


- 


- 


ID 


10 


AilkmccDC 


9fiOO 


- 


- 


770 (d1 


02 


05 


BrizcHaUiiil kiazrir 


CiJX}44|p> 


- 


- 


0.1 


02 


0.1 


BriZOlilJpV [CDC 


CiJ)044|p> 


- 


- 


02 


02 


0.1 


Bri/iH bkriionnl Iil^fil' 


OflOiifpk 


- 


- 


02 


02 


02 


B?iziH£,li,i Jpcr' LiZDiz 


- 


- 


- 


150 


02 


02 


Brizol E>nD4n!ini lien c 


OflOtifp) 


- 


- 


2 


0:2 


0.1 


Bcizyl Ahratari 


- 


- 


- 


- 


10 


101 EPA 8? 701 


Bi42-akyl]iciyljphi halu c 


]S 


- 


- 


4 


10 


IOfEPAft?70j 


Cki>«ic 


CIJXU4|p> 


- 


- 


20 


0:2 


1 


DIbcizola kfeini hnii:? n? 


CiJ)044|p> 


- 


- 


- 


05 


02 


DibrizoFimn 


- 


- 


- 


- 


10 


IOfEPAft?70j 


FIlDIBIIhCBC 


100 


- 


- 


300 


02 


04 


FIlDICH 


1 jno 


- 


- 


300 


10 


1 


] aicj\c* 1 J J-cd)- pyir n? 


OflOiifp) 


- 


- 


- 


02 


14 




- 


- 


- 


- 


10 


IO|EPAft270j 


hfaphkalrn? 


- 


- 


- 


300 


50 


5 


■- ■iliD«Mli[ikeii'] joilic 


5 


- 


- 


- 


10 


rOfEPAft?70j 


Pmack litroph? nul 


o.a 


- 


7.9 


1 


50 


LOfEPAft?70j 


PkeuHkicDC 


- 


- 


- 


2J0 


IJ> 


OS 


PkCIDl 


2 LOGO 


- 


- 


1 


10 


10 


PdIvcvcIk: ArDniaH H yd rDCiirtDn!i 


011 Lpj 


- 


0.031 


16 


- 


1 lo LO 


Pvrcnc 


960 


- 


- 


210 


02 


02 



Flid ud SQXHdQuailcrefOOT 



!c 2 of 6 



Oaobcr2007 



'lablr b 

Walcr Qnalll^v Crilcrta and Analjllial Rcporlinf IJmiU 

PrcEldiD <rrDiindualcrMDnllDrln£ l'rD[CBin 

Pi?& idiD of S an P ranc i&ca , C al i roml h 



Conipci ■ nds of 

FolEnlla] CuncEru 


WBlfr<Jiidlll> Cnlfriu ' 


g.APP 

A[ial}lkal 

HrpDrllnj>Lln]ll' 


PntjETl LabDcaloc^ 
Hi.'po c lin|> ]. Im 1 L 




Frr5h»Blcr 
Sffp (hr 


^'bII nairr F rolri: iLon 

Zduf ief 


OrJukin^lS'alEC 
Clranup LevfI (d> 


VdIbUIe D rganLc CorapDandA | 


Ac clone 


- 


- 


- 


- 


- 


10 


Bmncd \i'h \0t0mah3mc 


OJd. 


. 


- 


SO 


10 


05 


2-3aiiima»etlAE\it 


- 


. 


- 


- 


- 


10 


Caitnm Taiackknidc 


0:25 


- 


- 


05 


05 


05 


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0.40 


- 


- 


SO 


- 


05 


Ck loiobf n 'eiL' 


6S0 




. 


70 


2 


5 


CklocDlurm 


- 




. 


SO 


05 


05 


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- 


- 


- 


- 


ID 


10 


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400 




- 


s 


lA 


05 


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o.s 


- 


- 


05 


05 


05 


1 J -d kblorDEllirDE 


0.D57 


. 


- 


6M 


o.a 


- 


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- 


- 


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- 


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4.7 


. 


- 


5 


45 


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OS 


. 


- 


5 


05 


05 


■JJ-trlrhlarabcmrnE <St 


. 


- 


- 


70 


- 


- 


1 ,1,4-lrdzhlDrDlirniEnc 


. 


- 


- 


70 


Id 


- 


].l 1 -1 [H khHon banc 


. 


- 


- 


200 


05 


05 


T [H tiknudlicic 


27 


. 


- 


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05 


05 




. 


- 


- 


150 


10 


05 


]'Llri»1(in HjdmrBriiDiv and CDislllirnlb | 


Cj^iIirl' Rliu^ l' 11 yd mcartrms 


441 


44J|q| 


1.? 


770 


- 


50 


DiL's*:! RjriE'-' Kyd n>tiiiliiMi!i 


- 


- 


27 


830 


- 


50 




- 


- 


?2 


I^ZOO 


- 


100 


Moor Oil RanfE Hyd m: jrboB'k 


. 


. 


- 


E^ZOO 


- 


100 


BeizcBC 


1 J 


463 


051 


1 


- 


05 


Er h > IlKDr? DC 


S45 


345 


0.043 


TOO 


- 


05 


Toluene 


490 


490 


] 


150 


- 


OS 


IcImakvlLmid 


. 


. 


- 


- 


- 


100 


Tasil Xyknc'v 


113 


118 


[1 


1,750 


- 


05 


MrlbiTll-hil^LrlbicrlM'rBE) 


- 


- 


44 


13 


2J> 


O.S 



Flidud SnxndQuailcrefOOT 



!E3of6 



OOobf 12007 



'lablr b 

Walcr Qnalll^v Crilcrta and Analjllial Rcporlinf IJmiU 

PrcEldiD <rrDiindualcrMDnllDrln£ l'rD[CBin 

Pi?& idiD of S an P ranc i&ca , C al i roml h 



Com po ■ nds of 

FolEnlla] ConcEru 
(COPCf 


WalfrQudlll) Cnlfrla' 


(J.APP 

A[ial}lkal 
HrpDrllnj>Liniil' 


PntjETl l.abDcaKicy 
HLp(iclin|>].lnilL 




Frr5h»Blcr 
Sfrp !bl 


^'all nairr F rolri: iLon 

Zduf (e) 


LtrJukin^lS'alEC 

Clrannp LevfI (d> 

(pet) 


PCBb, PHlicidra^ jnd Herbicide | 


PolyckkmnjlRl BLplicn>bi 


O.OailT(r) 


0[4fr),(L) 


01 


03 


- 


03-10 


Ahlni] 


O.OOilJ (r) 


i 


I.I 


- 


- 


005 


Cblo[d!iie 


0.01X5 T(r) 


0043 (r) 


OJMM 


0.1 


- 


05 


2A-D 


- 


- 


- 


TO 


- 


ID 


44-DDD 


O0OO3J(p1 


- 


orcj fii 


- 


- 


0.1 


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00059 (pi 


- 


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- 


- 


L 


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O.0OO59(pl 


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OOJ] II) 


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- 


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- 


- 


- 


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01 


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0J)0S7(IJ 


- 


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003ti|p> 


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o.Jr» 


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0.05 


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0.05 


0.05 


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- 


16 


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oaoisipt 


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0.01 


- 


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(1.0013 


i 


1.3 


- 


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- 


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500 


M0 lio\>'[ likir 


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5 



EAtasha-ta in bold icU wck njideoi I April ?I!C1 bjsedini npda^d veisidr oETabI? 7-6 of tk? QAPP , I i^osdi ill ed Iiudi C h nik ^J? Is3i en 1 4 Mdirk 2CCil. 

1 Wjii?rQiiii]iLy€nl?niiisEiunTjbl? 7-6artk?ClKiHupL?v?t Da:unEH(EKI, 2002J 

2 Thrxarr tcm is cUbliiJird ii III? QAPP (Jn ra Tccli, 7CDI). 

- = DiH i^q:ihli&hrd 

(a) ClE!in up kv? K JK biifii:il upon ^oncciLiEUionscjfCOPCsiluii icfuli m ckKiiic Ioi^h ily Lo jqn jJ k oigjni'inis, ono h ■□] jd' I li R>iif li 
CDiikU Enpl HID of hj' jJ L'c dud li'ih , j^ liH liE- EC l^ moK^ringEUI Cli'miup kv^L'vdpply I o ikii fIlicl' ivjcr jnd f rouid'i JcnhM nijy e^IiILM? 
djird ly Id Mjf j[? •tulci ymck-n Li>lxfli CcEEk, Muhijiii L!ik?,!nid ih?T?nnEHiE? Hulknv R ifTiriiin Cunidor upon ? n luiu^? m? ni 



Flidud SEixMdQuailErefOOT 



!E 4 of 6 



Oaobcr2007 



Table 6 

Water Qualil^ Crileria and Anatylical Reporlin^ l.imils 

Presidio Groundwater Moniliiring Proi>rain 

PrcsJdio of San Frarici&co, California 



NdH;s (cpntiniicdl 



(b) Cleanup IcvcLiv bec baivcd uj"n conccnlraUoni of COFCz thai result in chronic loxicily Id aquilic or^inLivins 
Cleanup levels ipfily lo seeps amd lo groundwalcr ihil emerges aiv frcshiv » le r sec [fli 

(c) CLeanup levels »rc basccl upon concenlraliDH'i of COCz ihil resuLl lh chronie lo\ieily lo marine orgBniivins ClcBnup I eels appLv Li> mirine arsBll "■ alcr cnv i ran m e nliv 

(d) Cleanup level hivled is i prDmulgalcd orpropaived federal Maximurri Can l» m i n an I Level fMCLl, or pramulgaled orpropoived MCL or aclion level 
spec I fie lo I he Si ale of CBlifomia MCLs oblained fram U.S. EPA Region IX, Dr/nk/ira Wiriirr Sl<"iiSiinI<^ aniS HeulSh AdvlAtrrrtx TabSes ,dt\zd 
February 2000. Drinking ivaleroleinup levels apply lo groundwiler ind surface vvBler il I he PresidiD 

(c) Cleanup level obtained fiom Tille 40 of I he Code af Federal Re^ulalions. Pari *il3 r.3B, EsiabH^fftenloff^initericnl Criteria for FrioriiyToxic Poiititaits 

far the SlaSe of Cai^o'nia .or CaS'fomia Toxu^x Rule fCTR). prom ulgi led IS May 2000 

|F) Hyphen indie ales ihil i cleanup level is ncl specified in Pre&idiD Trust Q A PP. 

(g) Cleanup leveF obliined from California EEivirunmenlil Pioleclian Ageney, Regional W a ler Quality Ccnlrol Boird, Stn Frinciseo Bay Regian. 
Wule' QaaSiSy Conlrof Plan. San Francisco Bay Ba<ii'i. Sir/i Francisco Bay Region ("Basin P]an"),diled 2 I June 199 J 

|h) Cleanup level is a f u nclio n af h ardne&s. Value shown c based on i hirdnessof LOO mg^ as calcium carbon ale. 

(■} Cleanup level is CHpresied z^ a funelion of ihe waler-effecb ralio, is defined in iheCTR. 

(j) Cleanup level liivled is a secondary MCL. Secondary MCLs apply lo ehemicaU in drinking waler ihal adversely affect lEodor, lasle, or aj^tearanee and 
therefore eause people to discon[inue using ihe wilen 

|k) MCL based upon Ireilment lechnique. TieilmenI lechnique and public nolifiealion n;quired al aclicn level of 15 ^Ig/L for Fead. 

(I) Cleanup level for mercury is 0.0 12 (Ig'L. However, ihis level \.\ below ihe typical analylical melhod reporling limit of 0.025 (Ig/L. A cleanup objeclive of 

0.0 12 flg/L IS dcvirable. bul alliinmenl can only be delei mined al ihe analytical melhod repining limil 

(m) Cleanup level for CCC in lolal recoverable form. 

|n) Cleanup level for COC corresponds lo i nsl a nl anea us maximum value 

(o) Cleanup level oblained from Montgomery Walson, Fuel Product Aclion Level Deveiopment Repo't. Presidio c^ San Francisco. Cafifomia ("FPALDR"}. 



Fjn,l and Second Quarters 2007 Page J of 6 Oclober 2007 



Table 6 

Wnter Quatil^ Crileria and Anatylical Reporlia^ l.imils 

PresidiHj-u'ide GrDUDduater Munitoriag Prograni 

PrcsJdio of San Francisco, Culifo mi u 

NdIe^ fcpnliniicdl 

(p) Thj^ Level is below ihc typicil inilyticBl mclhocT icpoTling Eimil langcof Cl. I Id 10 ^l/L fDnicmivoLililc otgaaic co m [v und:^ Clcin up level lii^led is 
desirable, bul Blliinmeulean only be delemiined al ihc inalyUcaL mclhod ccpoMing limil. Cleanup level j^i eivlablLshcd il ihe lypicsl anilylii^al melhod 
reporting limil range fo c sem i vu I b U k organic 1:0 m [Xf uuds avvumiug ao milrii in Ir rference In I he even I of malnx inlerfeccnce, iclual melhod rcpaniug 
hmili dclcrminLngcompliBnee wilh cleanup levels may be raiicd. 

(qt Cleanup level d burned iiom Monlgomery Wilion. Deve}</piienl iif PtrinI of CompSinic-e Ciinceitliiilkjt'slFOCCslfo' Gajioiine m Surface 

Wtile'suffd Sedh'teili of She Proiiiiseil Fre-Jiwnte' Stream , P'^^riSii/ofSait Francisco. Cal/fi'/nin . dBled4 May 1999 l Numeiteal vilues bi&ed upon 
biDiaaay iklLidies pcrfbrmed by RWQCB and review oflovieDlogieil dali pubTiEhed in ^erenliEio I Hen lure. 

(r) Cleanup level applies lo lolal PCBs 

(s) Cleanup level is Stale afCaliEbniia aelion level faidTinkjng WHCec. 

|l| Th]^ level !■£ belou' I he lypjeal Hnilyli^al melhod re parting limil range of 0.05 lo CI ^ MS^ farPCBa and pealieideik. CFeanup level listed is 
desirable, bul alliinmenlcan only be delermined al ihe inalylieal method re polling limjl. 



Fin,l and Second Quarlera 2007 Page 6 of 6 Oclober ^OOl 



TDbLr 7 

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^ITBE - ■□ hrl 4< n-hlyl dkr 

NA-Ndjnal>'<\l 

ND- Niil dclcticil ilKih( I he bbDBlDr^ ruporllnp lima 

TDS - 4Cj I eIludLi-oJ ^Hhltl^ 

TFH -l('jl r<iii>lEiiin kiilrEq.Ari)Cfc. 

VDC - hTibLilc L>q|ji]i[ coBpcurxk 

m^L - milllfianL^ per lice 

lig/L- mitPhjDBi pcjllcc 



FiEl ji>J Sdicibl i^iaHcE. ?1Ki7 



PjKt I I'f I 



H>:l«bcj5Ki7 



Table 9 

Analylical Resulls for 'I'rip Bfanks 

Presidio-wide Ground waler Monilorinc Proeran 

Presidio of San Francisco, California 



Trip Btank 
Idenllflcallim 


Samp If 
Da If 


CblorolDrm 


AllOlher 
VOCs 


Anilvli^sl 
Method 


SWS260M 


SW3260M 


First Quarler 1007 i 




TBI):!:^7II71A 


112/27.117 


-^0 5 


ND 


7\i[<2im---\ 


112/28/117 


5 .1 


ND 


TBUJ01II73A 


IIJ/II L/II7 


<05 


ND 


rB03O207CIZA 


ll3/02/n7 


<ii 5 


ND 


TBI) .10511 72 A 


11.1.11^/117 


-^05 


ND 


TBI).10ftll72A 


II .1/116/11 7 


0.5 J-i- 


ND 


TBI) 3(161) 7 2 ACL 


II .1/116/11 7 


';0 5 


ND 


TBI).107II71A 


II .1/11 7/11 7 


';05 ND 


Second Quarter 20117 


TBI)605II71A 


06/05/117 


NA ! 


ND 


TBI)605II72A 


||6;II'^;|I7 


M ■ 


ND 


TBI)605II75A 


06/05/07 


M \ 


ND 


rBU606IJ71A 


06/05/07 


MA 


ND 


rBI>60607IACL. 


06/05/07 


';0 5 


ND 


TBI)60ftll71A 


06/05/U7 


MA 


ND 


TBI)607II71A 


06/05/U7 


MA 


ND 


TBI)f.07ll72A 


06/05/07 


MA 


ND 


TBIi^ii7ll7"^A 


06/05/07 


MA 


ND 



All ic^ulQ irgnHfil in miciD^rinti pcrlilcr. 
Tiblc I ] Ldcnlificv dil B quB] ificis 

ND - NdHIcIccIcilI »bo>c Ibic 1 Bl>i>rBlor>' irpojling litnil 
VOCi- Volalllc orgBULC CO mpouiKls 



FiiM Bnd Second QuhjKjs 2007 



Figc I of I 



OclDbcr 2007 



Table 10 

Analytical Results for Source Water Blanks 

Presidio-»'ide Groundwater Moiiiloring Program 

Presidio ofSjii Fiancisco, Call forma 



Sample ID 


Sample 
Date 


All General 
CKeniislrj 
Parameters 


Dissolved Metnis 


TDS 


VOCs 


NOMA 


AllOCPs 

and 

PCB5 


All 
PAHs 


IPH as Gamliue 
(Carbon Rau^e 

C,-C,,) 


TPH as Diesel 

(Carbon Rautje 

C,:-C.,» 


TPHasFuelOil" 
(Carbon Ranee 


Cakium 


MaiiDesiuni 


AllOtKer 
Melak ' 


Benzene 


Another 
VOC5 


Analylicj] 
Molllr. 


Vuruiu^ 


SW60IO/ 

SW6020/ 


SW&OIO/ 

SWM20/ 


SW6OI0/ 


E160 1 


SW82&0B 


SWa26<)B 


EI62^C 


SW808iA/ 
SW80H2 


SW8310 


SW80I5B/ 

SW8(1 1 ^M 


SWH0I5B/ 
SW80I^M 


SWS0I5B/ 

swsoi.mi 


Suurce Water blanks i 


Img/L) 


iMg/L) 


Cms^l, 


(Mg/L) 


(mg/L) 


(Mg/L) 


iMg/L) 


(|.il:/Li 


<|.ig/L) 


(tig/Lf 


[ffi-'U 


(Mg/L) 


Cjig^Lf 


First Quarter 2(HI7 




DWfl.'08ll7B ' 


03/OS«7 


ND 


<500 


<500 1 


ND 


22 


0.07 J J+ 


ND 


0.002 1 


ND 


ND 


<l30 


<50 


< 300 


D WO 30 807 a' 


03/08/07 


ND 


ft60 


2 £00 


ND 


TT 


<0.5 


ND 


0.0113 


ND 


ND 


<» 


< ^0 


< 300 


Second Quarter 2(107 




DW(I60707A-' 


06/07/07 


WD 


720 


<500 


ND 


44 


<0.5 


ND < 


NA 


ND 


ND 


<50 


<50 


< .1(10 


DW0608I)7B ' 


<>6/08/07 
1 . 


WD 


<500 


<500 


1^ 


-- 


<05 


ND 


NA 


ND 


ND 


<50 


<.^ll 


< .100 



NclCB 

1 - Mclal^ include aluminum^ [u^cnic, aracmlc, arsenate, anlijnony^ baiijm, bcrylliuiik, cadmium^ calcium^ chroniiLim, cobalt^ copper, iion, Icad^ magnesium, maagaiic:^:, mercury, nickel^ pola^sijm, ajdium^ siKer, selenium^ ihallium. vanadium. 
and zinc. 

2 -TPH as fuel oil uses a moloT oil slandard for carbon range (C?, -C[i). 

3 - Sample collccled from source wiUer lank on a field vehicle. 

4 - Sample collccled from ihe deiontzalton syslem oulLel al Blaine Tech Services, Inc. faciliLy in San Josc,CA. 
Table I I ideiilirics current and hisioncal data qualifiers. 

TDS - loial disirfilved solids 

W.-^ - Nol jniilyzed 

ND - Nol delecled above ihe laboratory rcfoilmg limil 

OCRs - organochlonne pesticides 

PAH^ - polycyclic aromalic hydrocarbons 

PCHs - polychlonnaled biphenyls 

SVOCs - semi-volatile organic compounds 

TPH - loial pelroleum hydrocarbons 

VOCs - volalile organic compounds 

fig/L - micrograms per liter 

mg/L - milligrams per liter 



First and Second Quarters 2007 



Page I of I 



Ociober 2007 



Table 11 

Laboratoi'^V Qualifiers for Current nnd Hialoricaf Analylical Data 

Preadiu -uideGi'oundHater Moni luring Pribram 

Presidio of San Franc 1 1^:0 ^ California 



The follow Jng dala volidalion qualifiers acre usd for anaJyrJcal dara generated beginning in ihc Second 

QiLoder 2001. Multiple dalaqual triers can be applied lo individual sample results. These qualifiers tire 
recommended in ihe October 1999 docnineni llled USEPA CortiacI Laburalvry Piogtam Nchonti! 
Funclionu! Gt'icic fines Jot Oigaric Data Review: 

# The continuing calibralion vcrificalion (CCV) drifled ourslde the limlrs although the average 

CCV drifl was wilhin ihe limits per irielhod reqiuremenls. 

U The analyte was analyzed for^ but was not delected above^chc reported sample quanlilalion 

llmil. 

J The analyle a as positively idenlified^ Ihe associated numerical value is the approximate 

concenlralKin of the analyle in the sample^ refer lo ihe specific analyli::al rcporl for ihe 
rationale behind the qualificiilion. 

J+ The analyle was positively idenlifiedi Ihe asanDciated numerical value is biased high due to a 

high surrogate recovery and should be <>3nsidered an approiimale concentration of ihe 
analyle in ihe sample. 

J- The analyle was positively idenlified^ ihc assnDcialed numerical value is biased low due lo a 

low surrogaic recover^' and should be considered an apptosiinale conccnlralion of the analyte 
in Ihe sample. 

Jb The analylc was identified below (he laboralory rcpotling limit but above ihc laboraEoiy 

melhod deleclion liiriii and Q APR -specified reporling liiriil. 

N The analysis indicates Ihe presence of an analyle for which ihcrc is prcsumplive evidence lo 

make a "leni alive identificalion." 

NJ The analysis indicales ihe presence of an analyie Ihai has been "leniatively identified" and ihc 

assDcialed numerical value represents ils approximate conccnlralion. 

in The analyie was not delecied above the reported sample qsianlilation hmil. However, Ihe 

reported quant iloljjn hmil is approiiimaie and may or inay nol repieseni ihe actual liinit of 
qiianlilation necessary lo accurately and precisely measure ihe analyte in Jhe sample. 

R The sample results ore rejected due lo serious deficiencies in ihe ability lo analyze ihe sample 

and meet qualily conlrol criteria. The presence or absence of ihe analyte cannot be verified. 

The current reported analytical data also includes ihe following laboralory supplied validation 

commenls: 

A-01 No HjSOj preserved sample available for 2S day hold iime. 

B Analyie is found in the associated blank as well as In ihc sample. 

C Presence confirmed^ but confirmation concentration differed by more than a factor of Iwo. 

D The reported resull is from a dilution 

g Compouitd was found in ihe blank and sample. 

H Heavier hydrocarbons conlribuied lo ihe quanlilation. 

HT-04- This sample was analyzed beyond ihe EPA recommended holding lime. The results may still 
be useful for their inlended purpose. 



FiislBncl5c[:DnclQiian[:E20O7 Page I of 3 October 2007 



Table 11 

Laboratoi'^V Qualifiers for Current nnd Hialoricaf Analylical Data 

PrFsdiu -uideGi'DundHater Moni luring Pribram 

Presidio of San Franc 1 1^:0 ^ California 

HT-RA This sample aai originally analyzed wilhin ihc EPA recommended hold rime. Rc-analyiis 
for confirmalion or dihilLon was performed pjw ihc recommeitded hold lime. The resLills 
may slill be used for ihcir iiilendcd purpoie. 

i The mclhod reporting limil/melbod dcleclion limll has been elcvalcd due lo a rnalri:i 

inlcrference. 

ndp Hydrocarbon reported docs not match ihe pallern of ihe diescl standard. 

L Lighler hydrocarbons conlribuled lo Lhc quanrltalion. 

P The GC or HPLC conrirmahon crileria was exceeded. The relali^e pcrceiil difference is 

grealer (han 40^ between ihe (wo aiialyrical resulls [25% for CLP Pesticides). 

QBOI The mclhod blank contains ihis analyle al a coneenlraiion above ihe reporting limii; however, 

ihe coneenlraiion is less Ihan 5% of ihe sample result, which is negligible according lo 
mclhod criteria. 

¥ Sample ciibibils a fuel pallcm, which does nol resemble standard. 

Z Sample eiihibila unknown single peak or peaks. 

Analylical dala reported prior lo ihe second quarter of 2001 have used ihe same data qLiallFiers 
described abovc^ bul ha\e also used lhc ^alidaiion qualifier'^ iutd commenis Q, Rd, DR, D, B^ G, P. d^ j^ 
k^ z.. Dcscriplions of ihcse previously used validalion quiilifiers and comments arc provided in ihc 
quartcdy monitoring report corresponding lo lhc sampling dale shown in ihc analylical summary tables. 

The following is a table of daia validalion qualifiers and commcnis used by Monigomery Watson for 
Ihcir previous Presidio groundwaler mDniloring work. 

Data VaLldation Qualifiers: 

J - Qualified as estimated U - Qualified as noi detected R - Qualified as rcjcclcd 

Data VaLldadon Commenls: 

L Qualified due lo delecicd conceniralion in associaied melhod blank sample. 

2. Qualified due io detecied coneenlraiion in associated Irip blank sample. 

3. Qualified due lo detecied coneenlraiion in assnjcialcd filler blank siunple. 

4. Qualified due lo delecicd concentration in asyjcialed cquipmeni rinsalc blank sample. 

5. Qualified as positively biased due to surrogate recoveries above the established acceptance limils. 

6. Qualified as negatively biased due lo surrogate recoveries below lhc established acceptance limits. 

7. Qualified due io surrogate recoveries outside ihe established acceplancc limits; bias cannot be 
delcmuned. 

8. Qualified as positively biased due lo MS/MSD recoveries above the established acceptance limils. 

9. Qualified as negalivcly biased due io MS/MSD recoveries below the established acceptance limits. 

10. Qualified due lo MS/MSD recoveries out^de lhc established acceptance limits; bias cannot be 
delcrmined. 

1 1. Qualified as posilivcly biased due to LCS recoveries above the established acceptance limils. 



FiislBncl5c[:DnclQLian[:E20O7 Page 2 of 3 October 2007 



Table 11 

Laboratoi'^V Qualifiers for Current nnd HialoricaE Analylical Data 

Preadiu -uideGi'oundHater Moni luring Pribram 

Presidio of San Franc 1 1^:0 ^ California 

12. QuaJificd a^ ncgalivcly biased due lo LCS rccovcrici below ihc established acccplancc liniili. 

13. Qualified due lo LCS recoveries oulsidc ihe eslablishi:d acccplartce lirruls; bias canitol be 
dclcmiined. 

14. Qualified as poslhvcly biased due lo eaJibralion iionconfomiaiices. 

15. Qualified as ncgalively biai^cd due lo calibrarion nonconformances. 

16. Qualified due lo calibration nonconforniances; bias cannol be derermined. 

17. Qualified as ncgalively biased due lo hclding lime noncojifomiances. 

18. Qualified as negalL\e]y biased due lo sample recelpl iionconformiuices. 

19. Qualified as posilively biased due lo sample recelpl nonconformances. 

20. Qualified due lo sample rcceipl nonconformances; bias cannol be deleimmed. 

21. Qualified as po'villvely biased due lo ol her criteria. 

22. Qualified as ncgalively biased due lo olher crileria. 

23. Qualified due lo olher crilcria^ bias cannol be delermined. 

34. Qualified due lo delecled conccniralion in as'vocialed source waler sample. 

25. Qualified due lo chromatographic pallem of ihe sample does nol malch Ihe calibralion pallem. 

26. Reporled value determined by method of slandard addilion; bias cannol be delermined. 

27. Qualified as negatively biased due lo post-digesi spike recovery betvn'een 40'^ and 85%. 

28. Eslimated value; resull isdeteclcd betvn'een Ihe mclhod dcleclion limil (MDL) and Ihe reporting 
limit. 

29. Qualified due lo holding limes esceeded. 

30. Qualified as eslimated^ compound is a common laboratory conlaminanl. 

31. Reported value delermined by GCMS library search, compound is tenlalively identified and 
quantilalion is estimated. 

32. Qualified dalaeitplained furlher in ihe report assnDcialcd wilh Ihe sampling event. 

33. Qualified lo field duplicate RPD oulside of eslablished limits; bias cannol be delermined. 

34. Final purge readings arc not represenl alive of site condilions. The reporled readings are taken from 
earlier entries associated \t'ilh ihat purge log. 

35. Questionable field parameler results; readings do nol appear lo be represenl alive of site conditions. 



FiislBncl5c[:DndQLian[:E20O7 Page 3 of 3 October 2007 



Tablr II 

A naif Ileal RcAulU for Pu rgi ditd DrconlamlnaliD n WaCrr 

Prrdldio- u Idc <r ro undu alEr \l DDllorlnE Pn^rBm 

PrriildlD of San FrancEiCO , C aljfDmii 



EjinplE 


^mplr 


Mcljl', 1 




■D 

-. "a 
B E 

— = 


11 


■D 

C 

i 


5 








1 . 
or 

o 


1 

or 
-J 


1- 

= 

or 


or 

z 


4- 




Aujl^lhjl 
Malmd 


S^^fJGO 


S^^fSJ20 


Sft&l?0 


s^^fB?o 


SW«ilO 


SW74.T0 


SW6O20 


SW60?0 


SW6O20 


SW9012 


EJT62 


E1M4A 


E420 L 


SW9IMIB 






i|] ■■.'[.) 


IP£/L> 


IPE'LJ 


IPEl-) 


<PEl-J 


<PEl-l 


(|iEl-l 


(lig/lj 


(ligfl-J 


tnsIL) 


fn£/L) 


(ngT-J 


Imf/L) 


- 


Discliacgr Crilrria 


J,1Ml(i 


SOO 


5,000 f 4000 f 1,500 f *0 ' ?,000 1 


601h 


7,000 


IJIOD 


9)0 JOOJHtO 


23,000 


fi.O -11.5 


'ira Quardr IftMl \ 


wrrGoaiiT 


OI/IBjUT 


<5 


< L 


< 10 6 <1 <02 20 <' ^-^ <0"l 


<004 ^4 75 


<0fl5 


77 


irtana Quarlrr 2007 | 


ftTUabllT 


cwianjT 


15 


■; L 


?9 


.10 


15 


<0J! 


66 


< I 1 


■'5 1 


003 


<004 


<dT 


< 0.(15 


-- 


W706U07 


(«i/lJAI7 


-- 


-- 


— 


— 


— 


— 


1 


- 


- 


-- 


-- 


' 


-- 


77 



TAk 1 1 HfrBljiK] ninE nl ind HbId 
ligJl. - niicio°cinis ivrlV^r 
Di°/L- m ilJifnns [>:: r In lt 



I ibna quHFE 



FirM iind Bi-cnnd QiidilciH?HI^ 



PdEC I "F L 



OaDlffr2«i7 



FIGURES 



GoKan Gals 



I 



CO^iSTAL BLUFFS 

GROUNDWATER 

BASIN 




IDDD 



lOffl) FddI 



LEGEND 



^'rcsll^l□ [hmndiiry 

I cjpD]!iipli[i. Ciinliiiiri 
iCanlDLirlinia-viiL 10 fccll 



GROUNDWATER BASIN AR FAS 

I. . I Qi-isuL ULiiifs Giuimdw^L;:! Hl&iii 
^^1 Crispy in4:l4] Gniiini]w^L::r Arm 
I I Lab cii Crrck Grmind wilier Arcji 
I I Labcii Crrck Grniiiid''iilcr U-isiii 



I. J Haiin J Gruund *alcr Ujsih 
^^^ NiiTlhcitlaTi GruujidwjLa- AiiM 
I I Wcs I Valley GmuDdvsilcr Ar4:ii 

NftKs: 

HonznnLBl Dfllum N"AD 27, CA SlaH: 

PIdlH CcudDLBE^ ZOILL J, ll^ 
Volicd I3£[lllll 1IO|HgTq^V Nnrilh 

Amutai Vcrlnal CWrnii, NAV [MB 



PRESIDIO MAP 

WITH SAMPLING AREAS AND 

GROUNDWATER BASINS 



Ik^adwell&Rollo 




Presidio Trust 

34 Graham Slreel 

PO Bd:<29D52 

San Franosco, Cft 

94129-0052 

41&561-53DIJ 

fax 41 5/561-5315 

OclDber2007 



FIGURE 1 



7-1 







^ ^ _^ ^ ^^ f 
■^ ^ ^ ^ ^ ^ 



TimE 



-WalBr BtvBlon 



Sola,- 

Acliial AiLcrlcvcl dal» *rrc r»kcii fmni: 
hllp ^^lide^arKfcurrenlg noaagov/slalion relrewe &hlml''ltiDe=Hi5lork;-i-Tkte4Dala 
SlnriDn Number '94J4Z90" and contrncd Id FLLW. 
Wjicr Level mB|niriidcs were cc Lice led by NO A A every zji minules 
NOAA- N Ilia rial Oce anagriplue and A Imoaphcnc Adrmnislrnlion 
PLLft - PrcaiJio Lower Low Waerdu an 



TIDAL ELEVATIONS AT THE 

GOLDEN GATE TIDAL STATION ON 

20 FEBRUARY 2007 




Presidio Trusi 

P □ 5a- SV\iZ 
Em FmnciTia Cfi 

4l^'»l-^3rO 
DcDber BID7 



FIGURE 3A 



5 
_j 

IL 



-2 



06 ■.-■.- ^ a iV iV :■ fr « W « B 'V " lb lb 4^ ft .D .D .-- .-- A jV j> .1^ .:■ V .'ly .^ .a .B ^ '■ .* jb . 



^ ^^ 1^-" it- iT^ 



/// 



Tina 



-WsEr Bpvalcn 



\clui] waEfrlfVfl dm ucec EahcnfiDm: 

htlp/.lKtesindcuirQnE noaaqQVJ5lafi3n_rpln&vpahtinl?1y|B=HslQr"K:-i-T"cl9-i-Daa 
SliliPn N[irribLT'''4l42^<l and L'unvcrlcil Mi FLLW. 
1^ 3lL!r Lc' el mi^mludcb wficcDiImcd by rJOAA cvfi) ii\ niiniilrB. 
^OA\- Niliani] Occim^ nphir inil AUnibphcnc Adni 1 mslTil la n 
*LLW - FraiJiaLoi^rrLo* WjJfjdjlDii 



TIDAL ELEVATIONS AT THE 

GOLDEN GATE TIDAL STATION ON 

4 June 2007 




Presidio TrusI 

PO BD'sn; 
Sm FrorKisia C 

Ocabe<2001 

FIGURE 2B 



APPENDIX A 

Sampling Area Summaries 



BUILDING 900s AREA 

APPENDIX SECTIONA-1 

SEMI-ANNUAL GROUNDWATER MONITORING REPORT 

FIRSl' AND SECOND QUARTERS 2007 

Presidio of San Francisco, CalLforiiia 

1^ INTRODUCTION AND BACKGROUND 

The Building 9CHDs Area is locared in Ihe norlheni portion of Ihe Presidio, adjacent to Crissy 
Field at the boundary of the San Francisco Bay, jiisl southeast of the Golden Gale Bridge 
(Figure l|. The si le is approximate ly 15 ^cres, wilh surface elevalions ranging from 
approximately 10 to 15 feel above the Presidio lower low w^ler [PLLW)d^tiim {Montgomery 
Walt^on, 1996c). 

Buildings in the Building 900s Area were associated with aviation maintenance actit'ities for 
Cns^y Field, which was built in 1919. and a formerly relive CoasI Guard Station (Figure A-l-l). 
Building uses shifted from airfield maintenance lo vehicle maintenance m 1936. Building uses 
of concern include: a former motor pool repair shop, transformer storage, a solvent dip tank, bulk 
oil and wasle oil storage, aulomohve bodywork, jiaintmg, battery storage, a former fuel pump 
house, fuel slorage, ste^m cleaning, an underground oil-water separator, aircraft maintenance, a 
boiler house, equipmeni storage, vehicle maintenance, w^ste oil/solvenl storage, r fuehngare^, 
and mine storage [ M on lgomer>' Watson, 1 997a j. Documented potential soui"ces of 
environmental concern are surface spills ^ssocialed wilh vehicle maintenance and waste oil 
storage ^nd subsurface releases from underground slorage tanks (USTs) and associated piping 
(Dames & Moore, 1997). 

Groundwaler samj'iles collecled from sile wells h^ve previously been an^lvzed for lotal 

lietroleum hydrocarbons (TPHi as gasohne{TPHg),TPH asdiesel(TPHdj, TPH asfuel oil 
(TPHfo), volatile orgmc compounds (VOCsj, and dissolved metals. Dissolved metals analysis 
has nol been apart of ihe Building 900s Area m on iloring program since 1997. Summaries of 

dissolved oxygen, TPH, and VOG results can be found m Tables A-l-l through A-l-3. 

The Coast Guard Slalion is located adjacent to and southeast of Ihe sile and h^s ihree associaled 
monitoring wells, CGGWOl , GGGW02, ^nd CGGW03 (Figure A-l-l ). The Coast Guard station 
IS no longer included in ihe Presidio-wide Groundwater Monitoring Program. Prior groundwater 
sampling of these wells did notdetecl any concentrations of TPHg, TPHd, TPHfo or metals 
above laboratory detection limits and sampling was subsequenlly discontinued in 1996. Coast 
Guai"d Slalion gioundwaler an^lylical results for TPH and lead are summ^nzed in T^ble A-I7-I 
m Apj'kendix A of Xhe Drafi Quarfcrty Groiirtdwalci Moniloitng Anitiiai Sitmmaiy Reporl, 
Foiif!bQuailcf2Q0i (Tre^dwell & Rollo, 2002d). 



A-l-l 
Fiisl Bitd Sc[:and QLiail[:i& 2007 October 2007 



A reduction in sampling frequency for all Building 900s Area wells to annual was pretTously 
approved by the stakeholders and sampling was only conducted at Die sile during the Flrsl 

Qu alter 2007. 

2.0 SITE DESCRIPTION AND GEOLOGY 

Unconsolidated deposits encountered during previous site investigalions in the Building 900s 
Area include three unils; fill material, estiiarine sand deposits wilh local mlerbedded fine-grained 
esluanne deposits, and Franciscan Complex bedrock. 

Prior to remedialion achvi ties, the Building 900s Area consisted mostly of arlificial fill wilh 
isolaled areas of debns fill. The artificial fill was a mixture of sand, sill, and c lav composed 
primanly of dredged sand from San Francisco Bay (used to fill hislonc wetlands benealh Crissy 
Field) and serpentinite and/or cherl gravel used as road base. The debris fill was composed of 
silt and sand mixed with construe lion debris, including concrete, wood, glass, brick fragments, 
and wire (Dames & Moore, \99~f). Fillmalerials range m ihickness from 1.5 to 7 feet. 

The hll materials are underlain by native estuarine sands interbedded with fine-grained estuarine 

deposits. The sand Ihickness exiends up to appro'iimalely 50 feel, and the inlerbedded, fine- 
grained sediments range in thickness from I inch to 2.5 feel. Shell fragmenls and layers of 
organic matenal (including peat) up lo0.9 feel thick are locally present. Al ihe localion of 
former weU 937GWOI, adjacent to ihe seiiienlinilecliff that borders Ihe site lo the west and 
southwest, silly clay with sand and gravel [wealhered ser]ie nil nile) exiends to at least 35 feet 
below giound surface (bgs). 

The laterally conlmuous, shallow, fine-grained estuarine deposils (also known as Bay Mudj, 
which separale shallow water-bearing sand units lo the southeast in ihe Building 637 Area 
(described in Api^endix A, o^ X\\e Scmt-Annitcii Gioundwaler Moniloi ing Re^xtrl, FirsI and 
Second Qniii-I^j i 2004,'YvQ^6v/cW Sl Rollo, 2004c), are nol preseni benealh the BuikJing 900s 
Area. Interbedded, fine-grained sedimenis aredisconlmuous and mostly occur locallv north of 
Building 937. 

The estuarine sediments are underlain by Franciscan Complex bedrock, predoniinanlly 
serpentinite. The massive serpenlinile outcrop exposed along Ihe western portion of ihe 
Building 900s Area forms acliff approximalely 60 feel above ground surface (Figure A-l-l). At 
the base of Ihe cliff, ihe seiiienli nile bedrock dips below ground surface and thedeplh to bedrock 
generally increases from the cliff to San Francisco Bay, wilh Ihe maximum encounlered depth at 
approximately 50 feel bgs. 

A single, heterogeneous, unconfined fwaler table) coaslal aquifer is present benealh the Building 
900s Area. The water lable benealh the Building 900s Area has, in the past, t>'pically ranged 
from 6 to 9 feet bgs. The thickness of the aquifer increases as the depth lo bedrock increases 
from the serpentinite cliff on the wesi side of Ihe sile loward San Francisco Bay (Figure A-l-l). 

A- 1-2 

Fiisl Bitd Sc[:and QLiail[:i& 2007 October 2007 



The Building 9C'0^ Area moni Tori ng wells ^re generally screened ine^tuarine s^nd deposits of Ihe 
aquifer, with some wells screened parlially in fine-grained lenses or in weathered serpentinite 
bedrock. Because ihe sile well^ are screened m a single water table aquifer wilhout discrele 
waler-beanng zones, ihe wells are separaled into Ihree gi'ouj'is based on relative screened 
elevalion rather than water-bearing zones. These t^reened inlerval^ are referred lo as the 
shallow, intermediate, and deep. 

Groundwater in the Crissy Field Groundwater Area (Figure I j generally flows north to northeast 

toward San Francisco Bay, wilh locally divergent flow directions { M on Igomeiy Watson, 1 999a j. 
In the norlhweslem porhon of Ihe Building 900s Area, Ihe histoncal coastal features influence 
the hydrogeolog>' in Ihe shallow inlerval by diverting gioundwaler flow [and contaminanl 

migrahon) northwest and norlh along Ihe hislonc lagoonal waler channel (Montgomery Walson, 
1997b), ralher Ihan northeast directly toward ihe bay. All three intervals have similar 
groundwater elevations. 

3.0 REMEDIAL ACTION PLAN 

In April 1998, the Depailnient of Toxic Substances Control (DTSCj approved the Crissy Field 
Remedial Action Plan iRAP). The Crissy Field RAP addressed multiple Cnssy Field area 
contamination sites, including the Building 900s Area. For the Building 900s Area, the Crissy 
Field RAP selected source soil removal and subsequent confirmation groundwater monitoring 
to ensure that contaminant concenh"alions do not exceed applicable standards. Approximately 
39,000 tons of contaminated soil and fill were excavated and removed (Anny and DTSC, 
1 99E). The Crissy Field RAP requires that groundwater monitoring be conducted for a 
minimum of five years following construction completion, and that, should contamination 
concentrations exceed applicable standards for two consecutive quailers, the data be reviewed 
with the stakeholders and an achon plan developed and implemented to address the 
ground waler con lamination. Seventeen additional monitoring wells were installed between 
19 and 29 June 200 1 to expand the monitonng well network for this area (Figure A-l-1). The 
Cnssy Fiekl RAP identifies the following giound water cleanup levels for this area; 

Cis-l,2-dichloroethene (cis-3,2-DCE) 140,000 micrograms per Liter (jig/LJ 

Trans-l,2dichloroethene(trans-l,2-DCE) 140,000 jig/L 

Tnchloroethene (TCE) 81 [[g/L 

Vinyl chloride 525 |jg/L 

In addition, five-year reviews of groundwater use m this area are required to ensure that no 
human use is occurring without appropriate treatment. The first five year review report for this 
area is scheduled to be completed m 2007. These reviews are to continue until the groundwater 
meets drinking waler standards oris no longer classified as a "pi^tential drinking water source/' 
InMay 2002, monitoring well 937GWI0E was installed at the Building 937 Area as requested by 
the DTSC, and on 14 May 2002, dry well 979GWI 1 I was replaced with monitoring well 
979GWI IIR. This completed the monitoring well network required by the Crissy Field RAP. 

A-l-3 

FiiEl Bitd Second Qiiantis Z007 Oclobcr2007 



4JI GROUNDWATER MONITORING 

The Building 9CHDs Area has 2S associated mom Ton ng wells (Figure A-l-1). Work at the ^ite is 
cuireiilly being performed in accordance ^^ilh the Ci'tsiy Fie U RAP ^ud Ihe F\eid Sisrupiing Pian 
(FSP) (Treadwell & Rollo, 2001 a j. Ground waler elevations were collecled from all Building 
900s Ai"ea well^ and the annual ground waler sampling was conducted in Die First Quarter 2007. 
No monitoring wells in ihe Building 900s Are^ were scheduled to be sampled during the Second 
Quarter 2007, in accordance wilh T^ble IB. 

4,1 G round >vat«r-Level Meflsureineiils and Interpretalion 

Building 900s Area monitoring wells are screened in Ihree different inlervals of ihe single 
aquifer. These screened intervals are referred to as shallow, inlermediate, and deep zones and 
are different aled by rel^hve screen deplhs. A comj'ilete list of site wells, their ^ssocialed waler- 
be^nng zones, and hislorical gi'ound waler elevations, are presented in Table A-l-4. All 
groundwater elevation measurements for the Firsi Quarler 2007 were manually collecled on 
26 February 2007. Groundwater elevations were not collected from Building 900s Area 
monitoring wells dunng Ihe Second Quarler 2007. Water level meters were calibrated on 26 
Februaiyand calibration logs can be found in Append! i'i B. Groundwater elevation field forms 
can be found in Appendix C. 

During the FirsI Quarler 2007, all sile wells weie gauged belween 2:02 PM and 2:52 PM on 
26 February 2007. Low tide was predicted to be at 2:02 PM on 26 February 2007. Observed 
lowtideon26February 2007 occuiTed at 2:00 PM, with a magnilude of 0.09 feel above PLLW. 

Tidal piedichons and observahons are taken from theNalional Oceanic and Almospheric 
Adminislralion's (NOAA)Cenler for Operational Oceanographic Products and Services websile. 
Predicted and observed lidal times and magnitudes during ihe First Quarter 2007 are presented in 
Table 2 A. 

4.L1 ShalloH Groundwaler 

During the FirsI Quarter 2007, shallow groundwater elevations at Ihe Building 900s Area ranged 
from 4.14 to 7.S9 feel above PLLW in momtoring wells 979GWI 13 and 937GWI2, 
respectively. The majonty of gioundwaler elevations measured dunng Ihe First Quarter 2007 
were within historical range (Table A-l^j. The First Quarter 2007 shallow groundwater flow 
direction in Ihe northern portion of the Building 900s Area was generally northwesterly along the 
historic lagoonal channel while Ihe groundwaler flow direction in the southern porhon of Ihe sile 
was northeasterly towards San Francisco Bay (Figure A-l-2). The average groundwater 
gradients for the shallow m oni ton ng wells in Ihe northern and soulheni portions of the site were 
estimated to be approximately 0.006 and 0.013 feel per foot, respectively. 



A-l^ 
Fiisl Bitd Sc[:and QLiail[:i& 2007 October 2007 



Shallow groundwater flow directions and gradients are generally consistent with Ihose 
previously reported for the Building 9CHDs Area. 

4.L2 Int«rmediale Groundwater 

During the First Quarter 2007, intermediate gjoiindwateieievatioiis at tlie Building 900s Area 
ranged from 3.54 to 6.10 feet ^bovePLLW in monilonngweils979GW] 10 ^nd 937GW105, 
lespectively. The First Qu^iter 2007 intermediate groundwater flow direction was northeasterly 
towards San Francisco Bay m the northern portion of tlie site and was northerly in the southern 
portion of the site (Figure A- 1 -3). T^e average groundwater gradients for the shallow 
monitoring wells in the northern and southern portions of the site were estimated to be 
approximately 0.002 and 0.012 feet per foot, respectively. 

Intermediate gl"ound^^ater flow directions ^nd gradients are generally consistent with those 
previously reported for the Building 900s Area. 

4.13 Deep Croiiiidwaler 

During the First Quarter 2007, deep groundwater elevations at the Building 900s Area ranged 

from 3.19 to 6.38 feet above PLLW in monitoring wells 979GWI 17 and 937GW3g, 
respectively. The deep groundwater flow direction was northerly (Figure A-l^j, with an 
average goundwaler gradient of approximately 0.006 feet per foot. 

Deep groundwater flow dii"ections and gradients are generally cc^asislent with those previoutnly 

reported at the Building 900s Area. 

4.L4 Vertical Gradients 

Building 900s Area vertical gradients are presented in Table A-1-5. Vertical groundwater 
gradients were calculated for three well clusters each having one shallow, intermediate, and deep 
well: 900WC-I, 900WC-2, and 900WC-3. Well clusters 900WC-1 aud 900WC-2 are located 
northeastof Building 937 (Figure A-l-l J. Well cluster 900WC -3 is located m the northern 
poilion of the site. A description of which wells are contained in each well cluster and a 
description of how the vertical gradients were calculated can be found in Table A- 1 -5. 

During First Quarter 2007 vertical gradients were observed as follows: 

• A downwai"d (positive) vertical gradient was observed between the 
shallow/intennediale interval within well clusters 900WC-I and 900WC-3, the 
shallow/deep intei-val within well clusters 900WC-1 and 900WC-2, and the 
intermediate/deep interval within well cluster 900 WC -2. 

• An upward (negativej vertical gradient was obsei"ved between the 

s ha I low/intennedi ate interval within well cluster 900WC-2, the shallow/deep interval 

A- 1-5 

Fiisl Bitd Sc[:and QLiail[:i& 2007 October 2007 



wilhin well cluster 900WC-3, and the inlermedi ate/deep interval within well clusters 
900WC-1 and 900WC-3. 

The vertical gradient obseived during the Flr^l Quarter 2007 are generally consistent with 
previous findings. The vertical gradi en is belween the sh a How /inlermedi ate and shallow/deep 
intervals are genei"allv down wai"d with ihe inlermedi ate/deep generally upwai"d. 

4.2 Monitoring M''el] Purging and Sampling 

All 28 of the Building 900s Area monitoring wells thai were proposed for sampling during Ihe 
Firsi Quarter 2007 were purged and sampled between 2 March and 8 March 2007, in accoidance 
with methods shown in Table I A and procedures descn bed in Ihe FSP{Treadwell & Rollo, 
2001a). No monitoring wells in theEnilding9O05 Area were scheduled to be sampled during the 
Second Quarter 2007, in accoidance with Table IE. 

Purge equipment and volumes, and sampling equipment for each monitoring well are described 
in Ihe purge records located at Ihe conclusion of this sechon. Purge water was stored for fulure 
disposal in one of two2»E00-gallon above-ground polyethylene slorage tanks located al Ihe 
Central Magazine. 

5.0 GROUNDWATER ANALYTICAL RESULTS 

Groundwater samples collecled from Ihe Building 900s Area moniloring wells during Ihe First 
Quarter 2007 sampling event were analyzed for VOCs,TPHg, TPHd, and TPHfo. 
Additionally, dissolved osygen was measured m monitoring wells prior to samplmg. The 
TPHfo slandard currenlly being used is aTPH molor oil slandard, as defined by Ihe Presidio 
QAPP, with a carbon range ofCj^ loCih. Section 5.4.3.1 m the main lexl discusses Ihe data 
compahbility issues associaled wilhTPH analyses. 

5.1 Dissolved Oxygen 

Dissolved oxygen concentrah on s are summarized in Table A-l-l. Dissolved oxygen 
c one en iralions ranged from 0.03 lo3.E0n"ig/L wilhin m oni ion ng wells 937GWI04 and 
937GWI03, respechvely. 

New low oxygen concenlrations of 0.03 and 0.09 mg/L were measured wilhin moniloring wells 
937GWI04and 979GWI09, respechvely, during ihe First Quarter 2007. Dissolved oxygen was 
mislakenly nol measured in moniloring well 950GWIOS dunngihe First Quarter 2007. 

Remaining concentrali on s of dissolved oxygen measured during Ihe First Quarler 2007 were 

generally wilhin Ihe histoncal range previously measured wilhin Building 900s Area wells. 



A- 1-6 

Fiisl Bitd Sc[:and QLiail[:i& 2007 October 2007 



Dissolved oxygen concenlr^ti on s ^^ere measured using either a down-hole or in-line dissolved 
oxygen merer during Ihe First Quailer 2CMD7. A discussion of dissolved oxygen measurement 
procedures jnd data comparobi lily can be found in Section 5.4.1 of the main reporl. 

5-2 VOCs Resulls 

Durmg the Flrsl Quarter 2007, VOCs weredetecled in shallow, inlermediate, and deep 

groundwater (Figures A-i-5 through A-]-7|. TheCrissy Field RAP specifies cleanup levels for 
cis-U2-DCE.Irans-].2-TX:E,TCE, and vinyl chlonde. Al leas! one of these VOC compounds 
wasdetecled m samples collected from l6of the2S moniloring wells sampled during Ihe First 
Quailer 2007. No Crissy Field RAP gi'oundwaler cleanup levels were exceeded during Ihe First 
Quarter 2007 (Table A-l-2). Significant detections oulside of hi stone al bounds are listed below. 

■ Cis-and trans-l,2-DCE were delected at the lowest concentrations within the lasts years 
in monitoring well 937GW102. 

■ Cis-1,2-DCE and vinyl chloride were detected for the first time within moniloring well 
937GWI04 al concentrations of 6.7 |.Lg^L and 2.0 Mg^U respectively. 

■ Cis-1,2-DCE and vinyl chloride were detected at new high concentrations of 12 and 
L4 Mg^U respechvely* within monitoring well 979GW1 10. 

■ TCE was detected for the first time within monitoring well 979GW] 14 at a concentration 
ofZO|ig/L. 

■ Benzene was delected for the first time within moniloring well 937GWI06 at a 
concentration of 0.2 |Jg/L, which is lower than Ihe 0.5 M&'l- detection limit. 

VOC concentrations at the Building 900s Area have remained relatively stable at low 
concentrations, within the monitoring wells sampled prior to the First Quarter 2002. 
Concenh"alions of VOCs in the monitoring wells that were added to the monitoring program 
beginning in the Fii"sl Quarter 2002 have been more varied, but have remained well below 
RAP-specified cleanup levels. 

In general, during natural biodeg]"adalion, TCE isdehalogenaled and converted into two isomers, 
cis-and trans-l ,2-DCE. The processes that convert TCE to eithercis- or trans- 1,2 -DCE are 
highly variable and depend on specific field conditions. Generally, during natural 
biodegi"adation, the cis-l ,2-DCE isomer is found at higher cone enh"ali on s than trans -1,2 -DCE. 
Moniloring wells with detections ofcis- or lrans-l,2-DCE during the First Quarter 2007 had 
higher concentrations of cis-l, 2 -DCE than trans-l,2-DCEexcept moniloring wells 937GWI0I 
(shallow) and 979GW1 1 1 R (intennediale). Cis- and frans-l ,2-DCE can be fijrther 
dehalogenated to form vinyl ch Ion de. In the majority of samples that contained cis-and trans- 
1,2-DCE, vinyl chloride was present al lower concentrations. The relative concentration rahos of 



A- 1-7 
Fiisl Bitd Sc[:and QLiail[:i& 2007 October 2007 



ci^-and lran^-1 ,2-DCE, and viny] chloride in the sampler continue to indicate that naUiral 
biodegradalion processes are occurring. 

5.3 TPH Results 

TPH were only delected within monitoring well 937GWI0S during the First Quariier 2007 
(TableA-1-3). 

TPHg and TPHd were delected withm 937GWI0S alconcenn-atlons of 72 and 65\ig/U 
respeclively. The detecledconcenlralion of TPHg wilhin 937GW108 during ihis quarter is Ihe 
lowest to dale and iheTPHd deleclion is wilhin Ihe range of previously detecled concenlrations 

in Ihis well. The Firsi Qiiarler 2007 TPHg and TPHd detections in 937GW10S are not 
considered significant. 

TPHg and TPHd are nol lisled m theCrissy Field RAP as contaminants of conceni and do nol 
have specified cleanup levels relative to the Building 900? Area. 

6,0 CONCLUSIONS AND RECOMMENDATIONS 

Groundwater elevations, gradients, and flow directions during First Quarter 2007 are consistent 
with historical values and inteipretations. VOC concentrations detecled during Ihe First Quarter 
2007 did nol exceed their respechve RAP-specified cleanup levels. The majority of VOC 
concentrahons detected duniig the First Quarter 2007 were within the range of previously 
detecled concentrations. The only monitoring well with significantly higher VOC concenlrations 
was intermediate well 979GW] 10, which had a higher concentration of cis-l, 2 -DC E detecled 
than in any previous monitoring event. Cis-I,2-DCE and vinyl chlonde were detecled for Ihe 
first time within m oni ton ng well 937GW104 and TCE was delected for Ihe first lime within 
monitoring well 937GWI 14. All VOC detections were significanriy less than RAP-specified 
cleanup levels. 

Therelafive concentration ratios of TCE, cis-l ,2-DCE, trans-l,2-DCE, and vinyl chloride within 
Building 900s groundwater samples continue to indicate that natural biodegradation processes 
are occurring. 'Rie rafiosof TCE, cis-l,2-DCE, trans-l,2-DCE, and vinyl chloride »] 11 conhnue 
to be monitored m future events. 

TPHg and TPHd were only detected in the shallow monitoring well 937GW108 during the First 
Quailer 2007. The delected TPH concentrahons within 937GWI0B were wilhin or below the 
range of historical concentrations. 

The current s am phng program at the Building 9COs Area will be reviewed as part of a five year 
review report for this area, which is scheduled to be completed in 2007. Changes to the 
monitoring pi"ogi"am at the Building 900s Area will be proposed in the five year review report. 



A-l-S 

Fiisl Bitd Sc[:and QLiail[:i& 2007 October 2007 



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n/e I ir LI 



ckafcaan? 



riblr l-l-> 

REnltHKLIK' lnil>Hi 
JlBlUL^ ''IN'^ I no 



IKirrnnl 
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rmsmii 



ckafcaan? 



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•"nani 


<D1 


tiDi 


NA 


Jl 


1 


Ji' 


1 \a 


< ID 


4D1 


4 t 


4D.1 


4D1 


4 1 


44 


401 


4D.^ 


4D^ 


4d) 


4U1 


4UI 


4D.1 


4UI 


ND 


••iiiimi 


<o.i 


iDi 


NA 


3? 


n 


N-' 


1 \a 


< ID 


4D1 


4 k 


4D.1 


4D1 


4 1 


44 


4D1 


4D.^ 


4D^ 


4DJ 


4D1 


4UI 


4DJ 


4UI 


ND 


••utimi 


<D1 


iDi 


N^ 


■It 


II 


V\ 


1 IC 


^ ID HI 


4D1 


4 L 


17 


4D1 


4 1 


44 


4dl 


4D.^ 


4D^ 


40) 


4D1 


4UI 


4D.1 


4UI 


ND 


4>t3|ili| 


<D1 


iDi 


N^ 


E4 


u 


JJ' 


1 \a 


4 ID 


4D1 


4 r 


4D.1 


4D1 


4 1 


44 


4dl 


4D.^ 


4D^ 


4d) 


4D1 


4UI 


4D.1 


4UI 


ND 


<4>1 


■ O'l 


N^ 


LJ 


t^i 


V 


1 \a 


4 ID 


4D1 


4 L 


4DJ 


4D1 


4 1 


44 


4dl 


4D.^ 


4D^ 


4d J 


4 111 


4UJ 


4DJ 


4UI 


ND 


IHjrL?DEl33B 
SUCWIOIICL 

1 JTCr* "MC L 


Diir-^7 


<4>J 


<lll 


N^ 


ill^ 


-111 


hi- 


1 \a 


4 JD 


UI J 


4 L 


4d J L3 


4dl 


4 1 


44 


4U1 


4D.^ 


^D^ 


^d) 


4DJ 


4U1 


4DJ 


4 1 


ND 


Di'iiiTn 


<DJ 


<(]} 


N^ 


iftj 


^Cl 


hJ.- 


1 \a 


4 JD 


4D1 


4 L 


4D.^ 


4d J 


4 1 


44 


4U1 


4D.^ 


4D^ 


4d) 


4DJ 


4UI 


4D.1 


4 1 


ND 


<O.S 


^dl 


N^ 


U.7 


<C1 


Hf. 


1 \a 


4 JD 


••1 1 


4 L 


4dl LU 


DS 


4 1 


44 


4U1 


4D.^ 


4D^ 


4d) 


4D.1 


4UI 


4D.1 


4 1 


ND 


DiiniOi 


<OS 


^dl 


N^ 


iftS 


4(1^ 


hi- 


1 IC 


4 JD 


OS 


4 1 


4D.^ 


IQ 


4 1 


44 


4U1 


'Ci 


4D^ 


4d) 


4DJ 


4UI 


4D.1 


II 


ND 


I2V9T]3 


<D1 


4D^ 


N^ 


^lU 


<D^ 


X' 


1 IC 


4 ID 


*t 


4 1 


4D.1 


19 


4 1 


44 


4dl 


'CLi 


4D^ 


4d) 


OIE 


4UI 


4D.1 


4UI 


ND 


irmtni 


<D1 


iDi 


N^ 


^lU 


4D^ 


X' 


1 IC 


4 ID 


4rF 


4 1 


4DJ 


JT 


4 1 


44 


4dl 


4D.^ 


4D^ 


4d) 


OB 


4UI 


4D.1 


4UI 


ND 


IZ«liIi3 


< 1 


1 t 


•: 1 


N^l 


U' 


IS 


1 ID 


4S H 


31 


4! 


4 JD 


Jl 


4 1 


1.9 


4 1 


4 1 


4 L 


4 E 


4 1 


4 1 


4 J 


4 1 


ND 


oansni 


<D1 


iDi 


N^ 


^lU 


4D^ 


X' 


1 IC 


4 ID 


74 


4 1 UI 


4D.1 


4J 1- 


4 k UI 


44 


4dl 


4D.^ 


4D^ 


1 1 


4D1 


4UI 


4DJ 


IS 


ND 


<D1 


iDi 


NA 


iftS 


4D^ 


H\ 


1 IC 


4 ID 


4b 


4 1 


4D.1 


il 


4 1 


44 


4dl 


4D.^ 


4D^ 


4d) 


r 1 


4UI 


4D.1 


tt- 


ND 


ovKini 


Dl 


iDi 


N^ 


^lU 


iDi 


H\ 


1 IC 


4 ID 


M 


4 r 


2.\t 


S 


4 1 


44 


4dl 


4D.^ 


4D^ 


4d) 


da 


4UI 


4D.1 


4UI 


ND 


••iipiini 


Dl 


iDi 


NA 


^lU 


iDi 


V\ 


4 Id 


4 ID 


fil 


4 1 


2.\t 


17 


4 1 


44 


4dl 


4D.^ 


4D^ 


4d) 


aa 


4UI 


4D.1 


atr 


ND 


ir/tani 


<D1 


tiDi 


N^ 


^lU 


lUi 


v\ 


4 Id 


4 ID 


li 


4 t 


2.1 


II 


4 1 


44 


4dl 


4dl 13 


4D^ 


4d) 


3 1 


4UI 


4D.1 


01 


ND 


mtani 


<D1 


tiDi 


N^ 


^lU 


iDi 


XI 


1 1d 


4 ID 


ti 


4 L 


l-I 


4.3 


4 1 


44 


401 


4dl UI 


4D^ 


4d) 


7.^ 


4UI 


4DJ 


EI 


ND 


ir/tani 


<D1 


iDi 


^dl 


^lU 


iDi 


O'H 


41 


4 ID 


If 


4 t 


41 


11 


401 


4D^ 


D.^7 


4D.^ 


4D^ 


4DJ 


4 


4UI 


4DJ 


lU 


ND 


•"n^ni 


<D1 


iDi 


N^ 


^lU 


iDi 


v\ 


4 Id 


V 1- 


T7 


4 1 


4D.1 


i 


4 1 


44 


DT 


4D.^ 


4D^ 


401 


b 


4UI 


4D.1 


II 


ND 


•tvaimi 


<D1 


iDi 


NA 


^lU 


iDi 


v\ 


4 ED UJ 


4 ID ur 


3D 


4 1 


4D.1 


n 


4 1 


44 


DS 


4D.^ 


4D^ 


401 


1 


4UI 


4D.1 


41 


ND 


Itiawedaitl 

SHChJ' lUDL L 

VHlChI' lUDC L 
■HJrDTiaoiIB 

■HJrDIIFEU IB 

SHChJ' lUDL L 

9SK>hl' lUDCL 

IHjrVM07L^ 
SnX] hJi lUDL L 

IHJn]3 IW??.^ 
91DCWI0IICL 

iHjr 1 ina 1 lA 


D11ir-TJ7 


< 1.3 


< 1 J 


N^ 


UD 


rt3 


Nf. 


4U 


4B 


4 1 3 


4 iJ 


4L3 


4 1 J 


471 


4 LD 


4 II 


4 1.3 


4 1 3 


4 11 


4 1.3 


4 1 1 


41 


4 21 


ND 


Dii«iTn 


4 1 


< 1 


N^ 


IW 


Bl 


Nf 


431 


4S 


Dl 1 


4! 


4 J 


4 1 


47 


4B 


4 1 


4 1 


4 L 


4 L 


4 1 


4 1 


3'' 


4 ■ 


ND 


DMBiTlfi 


<DJ 


<D1 


NA 


UD 


\P 


li- 


4 Id 


4 JD 


• •A 1 


4 1 


4D.1 


4dl 


4 1 


44 


4U1 


4D.^ 


4D^ 


4dl 


4D.1 


4UI 


41 


4 1 


ND 


DMBiTlfi 


<D1U 


^a jii 


EDO 


h)DC 


'to 


rDlU 


4 IdU 


4 IDU 


4 4>1U 


4 LU 


4lU 


4D JU 


4 1 U 


44 JU 


4U1U 


47U 


4D^U 


4D JU 


4D.1U 


4dlU 


^3 


4 1 U 


ND 




< 1 3 


< i] 


H\ 


UD 


U 


hi- 


4U 


43 


UI 1 

• •rl 1 


4 iJ 


4 1.3 


4 11 
111 


471 
4 7.1 


4 ED 
4 ED 


4 1 1 


4 1.3 


4 1 3 


4 11 


4 1.3 


4 1 1 


^ 1 


4 "1 


ND 


< 1 3 


1 1] 


H\ 


I7D 


IE 


Hf. 


4U 


43 


4 iJ 


4 1.3 


4 1 1 


4 1.3 


4 1 3 


4 11 


4 1.3 


4 1 1 


i! 


4 "1 


ND 


Dl'lliU^ 


<U.l U 


^D J i: 


H\ 


l» D 


47 D 


iDi V 


4 Id U 


4 ID U 


4U1 U 


4 1 11 


41 V 


4D1 U 


4 1 U 


44 J U 


4dl U 


47 U 


4D^ U 


4D^ 11 


4D.1 U 


4dl U 


if 


4 1 U 


ND 


Dliir-lll 


< 1 3 


< [J 


H\ 


3<0 


73 


Hf. 


4U 


4 11 Ul 


UIJ 


4 iJ 


4 1.3 


4 tl 


47^ 


4 E4» 


4 1 1 


4 1.3 


4 1 3 


4 EI 


4 1.3 


4 1 1 


BD 


4 1 3 


ND 


Diiir-^u 


i ] 


1 1 


H\ 


aiD 


d3 


Hf. 


4a> 


4 aj ui 


nij 


4! 


4 1 


4 1 


47 


411 


4 1 


' 1 


4 1 


4 1 


4 1 


4 1 


S 1 


4 1 


ND 


imn/Di 


Ilia 


1.9 


H\ 


270 


lie 


X' 


4 IT 


4 17 


UDJ 


4 IT 


4DE 


4D1I 


4 J.T 


4DT 


4dH 


4D1I 


4DB 


4dH 


4DS 


4UB 


m 


4UB 


ND 




IVD 


^Dfi 


H\ 


UD 


73 


X' 


4 13 


4 IJ 


o.ii 


4 1 3 


4DQ 


4D'| 


4 J. 3 


4^ 


4d'F 


4D.'| 


4 DC 


4db 


4DQ 


4UD 


II 


4UD 


ND 


<D1 


4D^ 


H\ 


L7D 


U 


X' 


4 Id 


4 ID 


•HI 


4 1 U 


4DJ 


4D1 


4 1 


44 


4dl 


4D.^ 


4D^ 


4dl 


4D1 


4UI 


M 


4UI 


ND 


oiia/ni 


<D1 


<D^ 


HA 


[7D 


il 


X' 


4 ID 


4 JD EJI 


4U1 


4 L 


4DJ 


4D1 


4 1 


44 


401 


4D.^ 


4D^ 


4dl 


4D1 


4UI 


II 


4UI 


ND 


• •ll^n}3 


<D1 


<D^ 


H\ 


L7D 


51 


XI 


4 Id 


4 ID 


4U1 


4 t 


4D.1 


4D1 


4 1 


44 


4dl 


4D.^ 


4D^ 


4dl 


4D1 


4UI 


LI 


4UI 


ND 


• •ll^n}3 


<1 


<^ 


JD3 


X' 


Hf. 


IS 


4lD UJ 


4 JCO u 


41 


4 Ld 


4id in 


41 


41 


4^ 


4 J 


41 


4^ 


4^ 


4l 


4UI 


CiT 


4l 


ND 


inivni 


< 1 


< r 


N^ 


3<0 


74 


X' 


4BI 


4a» 


4 J 


4! 


4 1 


4 r 


47 


4B 


4 1 


4 1 UI 


4 1 


4 1 


4 1 


4 1 


TH 


4 1 


ND 


•tjsini 


< 1 


1 r 


N^ 


UD 


as 


X' 


4KI 


4a» 


4 1 


4! 


4 1 


4 r 


47 


4B 


4 1 


4 1 


4 1 


4 1 


4 1 


4 1 


Tt 


4 1 


ND 


••ijsini 


<o.i 


4D^ 


HA 


UD 


7D 


X' 


4 Id 


4 JD Ejr 


4U1 


4 L 


4D.1 


4D1 


4 1 


44 


401 


4D.^ 


4D^ 


4dl 


4D1 


4UI 


S 1 


4UI 


ND 


•ijsini 


Ifi 


^D^ 


H\ 


LVD 


JT 


X' 


771 


4lD 


d '31 


4 L 


41 


4D1 


4 1 UI 


4 11 U 


4D1 


41 


4D^ 


4dl 


4D1 


4UI 


TH 


4 1 


ND 


•tvoimi 


< 1 


< t 


H\ 


aiD 


DO 


X' 


4KI 


431 UI 


4 J 


4! 


4 1 


4 1 


47 


4B 


4 1 


4 1 


14 


4 E 


4 1 


4 1 


TI 


4 1 


ND 


•tvoimi 


<07 


im 


H\ 


aiD 


a\ 


X' 


4 El UJ 


4 J4 UI 


4U7 


4 l-l 


-D.T 


4DT 


4 1^ 


4lT 


407 


4D.T 


4DT 


4d7 


4 m 


4U7 


C7 


4U7 


ND 


"I.'l4ill3 


93 


iii 


H\ 


an 


44 


X' 


4Zld 


<S0 Vl 


<2.i 


41 


4ll 


471 


41 


34 3 


4 7.J 


47) UI 

4D.^ 


47^ 


4 7.J 


4 11 


4 II 


411 


4l 


ND 


<4>1 


tiDi 


H\ 


HID 


41 


X' 


4 Id 


4 JD UI 


oil 


4 1 


4DJ 


4D1 


4 1 


44 


4dl 


4D^ 


lOi 


4D1 


4UI 


BI 


4UI 


ND 


••iiifai 


< 1 


1 L 


H\ 


am 


ID 


XI 


431 


4 JD UI 


4 1 


4! 


4 1 


4 1 


47 


4B 


4 1 


4 1 


4 L 


4 L 


4 1 


4 1 


31 


4 1 


ND 


oiiwni 

ll^3QiT]l 


<2 


li 


H\ 


an 


b 


4? 


4Kii» r 


47in 

4 J4 UI 


4? 


44 


431 


47 


44 


47U LU 


<2 

4d7 


47D 


47 


47 


4 ■ 

4 m 


4l 


C 1 


44 


ND 


<oi 


im 


H\ 


an 


1Q 


X' 


4 14 


U?J 


4 l-l 


4D.T 


4DT 


4 14 


4lT 


4D.T 


4DT 


4D7 


7.7 


EI 


4U7 


ND 


IJ^3Qi|]| 


<oi 


im 


H\ 


?u» 


11 


X' 


4 14 


4 J4 UI 


47 


4 l-L 


4D.T 


4DT 


4 1^ 


4lT 


4D7 


4D.T 


4DT 


407 


4 m 


as 


E4 


4U7 


ND 


u^Qbni 


-0.7 \ll 


im 


HA 


an 


ia 


X' 


4 14 


4 J4 UI 


UIJ 


4 14 LU 


4D.T 


4DT 


4 14 in 


4lT 


4D7 


4D.T 


4DT 


4D7 


4UT 


407 


Si 


4U7 


ND 



nmk>^«4nl4^Brai an? 



^r IDcEII 



ckafcaan? 



riblr l-l-> 

REnltHKLIK' lnil>Hi 
JlBlUL^ ''IN'^ I no 



IKirrnnl 
iBlfrhali 


SDFTipIr 


', Irl-IXhUO-- 

itkhyxHi- 

Einrni] 

clliBnr 


IJ- lie K 


iL-p-Li 


lnm-\-!- 

IICH 


LJ- 

llklibns 
hDifUL 


I-Hnbkonf 


Ld'tinf 


Hnmii-- 
ir<nHnr 

IJILlllBnL 


L urlxm 
JIfruinjf 


intoro- 

tanKnc 


irnihn-- 

■ EllUW 


DKIibn-- 

uirlliBnc 


Elh>l- 

ninicnL 


^ICIII 


n 1 


Sl^rrDf ' InlufH 


ICE 


Mm J 
Cblhrbc 


liilaJ ' ^llllinrc 


UbL^KiL 
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S^'fTfidhl 


s'l'^yiHi' 


^I'flflb' 




^Jia'lll. 
TIl^HlUJ-E 




S^l i'Jillll.' 
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S''E»illM 


S'liiJ'lll.' 




, S^l i'Jillll.' 
1 Si^Iiaillll 


El^HiO-E 


S'mill'l 


^iiiri'iH.' 


:i<\"it2"\PI , 


si'fyihi 


^l^HiO'l 


^l^HiTOIl. 
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El^HiOlil 






<>H^L> 


JMP^LI 


JMBLI 


iUPA» 


fl'&T-' 


luioi 


fl'J'J-' 


<|1J^L| 


l|l>^L| 


iUP^Ll 


IU>^> 


fMPAl 


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Clnnap l.otb' 








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5Z4 






IHJrLZJCDUB 




■-1'J 


<lll 
<U1 


N^ 


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<ll^ 


hJA 


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■- JD 
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<os 


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il'J 


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illl 
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iDJ 
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il'J 
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n-ll^ 


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lOi 


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iOl 


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Di'ir-oi 


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^DJ 


lOi 


Hf. 


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<os 


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iD.1 


<dl 


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lOi 


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ntr 


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NA 


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lOi 


Hf. 


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< ID 


<os 


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iD.1 


lOi 


1 1 


14 


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ntr 


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< 1 13 


iDJ 


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1 1 


14 


iDl 


iD.^ 


iDi 


lOi 


<os 


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iDJ 


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ND 


oajoni 


<D1 


<D^ 


HA 


^DJ 


iDi 


Ji' 


1 Id 


< ID 


<D.l 


1 L 


iDJ 


iDi 


1 1 


14 


iDl 


iD.^ 


iDi 


lOi 


<os 


DA 


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ND 


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<D1 


lUi 


NA 


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V\ 


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1 1 


14 


idl 


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lOi 


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<50 


<100 


{H/I0fl9 


<50 


<50 


<3C0 (U121 


l2n7^S 


<50 


<50 


<100 


IP/01J9S 


<50 lUlft) 


<50 


<100 


IB^fii^S 


<50 


<50 


<100 


0!f*5>9S 


<50 


<50 


<100 


niowl 


<50 


<50 


<100 


iBfll'^l 


<50 


<50 


<100 


OfVlOflT 


<50 


<50 


<100 


OIMIJ^T 


<50 


<50 


<J00 


1JMJJ^6 


<50 


<50 


<100 


G8M6fl6 


<50 


250 OlSl 


460 i;251 


ffi^OfflS 


<50 


<50 


<100 


01^1^6 


<50 


<50 


<J00IHU21) 


llH5fl5 


<50 


<50 


<J00 


07^*95 


<50 


<50 


<J00 


QWHfl5 


<50 


<50 


^A 


{BflBfl^ 


<50 


L40 OlSl 


XA 


IIjOI^4 


<50 


Jl 1125) 


XA 


03^0194 


<50 


110 OlSl 


NA 


IBM 0^4 


<50 


6? insi 


NA 


02^4^4 


<50 


12 1125) 


HA 


]]IO!>9i 


<50 


<50 


NA 


iBIOl'^i 


<50 


<50 


NA 



FiiS and Saond Quailer!. 2iX7 



Pi«?3ciri7 



Onolffr2007 



labLrA-IO 
K(sulL,4il TFH Ai]jljM.s 

Buildlii|-?(i(iEArt3 
PidikIlo of Sai Fjbk lscd, CalkEaniiB 



Wdl PJanr 


Sanpk 

Dare 


TPH U'.i;j'i»liii( 
iCarbcin han^ 


L"PH iii^EI hstL 

4 Caclxj a h Jii|^ 

C„-C.,) 


TPHflsKueUILI 
ICarbirn haul? 

c.,-c,j 




Anal^lKiiJ 
Ntlhxl' 


swsni5E/ 

SWSIIL5W 


SWafiliiBf 


SV'S0]53I 
SWS0I5M 






ivsi-y 


llig'Lj 


l|ig/Ll 


IJJGWIS 
DUPLfiiJ70l-lA 


Oilia/01 


<50 


■i'ill 


<3Q0 


Oili5>Q6 


<50 


<50 


<J00 


OiflilOS 


<50 


<50 


<J00 


OinSAM 


<50 


<50 


<J00 


|}/lll,^]3 


<50 


<J00 


<100 


1 OB/IBffi 


<50 


<50 


<100 


{)I^>D&03 


<50 


<50 


<na 


oino/03 


<50 


<50 


<J00 


nnsiai 


<5CI 


<50 


<I00 


IBMbflC 


<50 


<50 


^lOO 


1 OUWO! 


<50 


<50 


<100 


1 lamMf! 


<50 


<50 


<na 


nioiioi 


<50 


<50 


<J00 


iyiaiioi 


<50 


<i50' 


<100' 


ifiimfoi 


<50 


<i50' 


<100' 


ism/o\ 


<50 


<50 


<100 


iafjoiao 


<50 fLUO) 


<50 IU]?,U20,U?]) 


<100 fUI?,LI20.U2l) 


1 Di/2a«] 


<50 


<50 (UI21 


<100 


iPflPfl? 


<50 


<50 


<100 


Q&01'^9 


<50 


<50 


<100 


aiflO/99 


<50 


<50 


<J00 


ITKfl'^S 


<^0 


<50 


<J00 


1 ffijQI^S 


<^0 


<50 


<J00 


1 {b/l9^S 


<50 


<50 


<H)0 


IIZ/lti,i?S 


<50 


<50 


<100 


, llfTOflT 


<50 


230 insi 


<100 


1 0B/2lfl7 


<50 


150 tf.i2t 


<J00 


l&TPflT 


<50 


<50 


<J00 


M/aiflT 


< 50 (L"6J 


<50 


<100 


IJMBJ^e 


<50 


<50 


<J00 


iBlifi/96 


<50 


<50 


<J00 


aWlifflS 


<50 


<50 


<J00 


oj^jfle 


<50 


<50 


<J00 


HVI9fl5 


<50 


<50 


<100 


07/7 Ifl^ 


<50 


<50 


<100 


{WIS'95 


<50 


93 1125) 


NA 


ailOl/9i 


<50 


52 IJ25) 


NA 


lUOf^l 


<50 


<50 


WA 


at/oi'9a 


<50 


i50 OlSl 


XA 


"oins/^A'" 


<50 


<50 


WA 


<50 


<50 


WA 


]]IOi'^i 


<50 


55 1125) 


WA 


iSIOif^i 


<50 


<50 


NA 



FiiS and Saond Quailer!. 2iX7 



Pi«?4ciri7 



Onolffr2007 



labLrA-IO 
K(sulL,4il TFH AnjljM.s 

Buildlii|-?(i(iEArt3 
PidikIlo of Sai Fjbk lscd, CalkPaniiB 



Wdl PJanr 


Sanpk 

Dare 


TPH U'.i;j'i»liii( 
iCarbcin han^ 


L"PE{ ii'^EI hstL 

4 Caclxj a h Jii|^ 

C„-C.,) 


TPH-cKucKILI 
^Carbirn Hani? 

c.,-c„j 




Anal^lKiiJ 
Nblkxl' 


swsni5E/ 

SWSIIL5W 


SWgfil.'tB' 


SV'S0]53I 
SWSIII5M 






l|i^/Lh 


lligVLj 


i|i^/l.h 


<d«pf 
DUPLROfiCiMB 


Oillil/01 


<50 


< 5f\ b UJ 


■; ^m b Ul 


' 03/14^6 


<^0 


<50 


<100 


IH^I3fl5 


<5CI 


<50 


<100 


inn2jm 


<50 


<50 


<J00 


, IMI?^ 


<50 


<50 


<100 


1 atf\s/oi 


<50 


<50 


<100 


iy-ioifoi 


<5(l 


<50 


<100 


iji/ims 


<5(l 


<50 


<100 


l2K6Kf2 


<50 


<50 


<100 


atfWKf! 


<50 


<50 


<100 


o&awH 


<50 


<50 


<100 


oiHGiai 


<50 


<50 


<100 


imiioi 


<50 


<50 


<100 


iSIOMH 


<50 


<50' 


<J00' 


iSIOMH 


<50 


<50' 


<100' 


iBnsflii 


<50 


<50 


<100 


{eiu'cc 


NA 


2T0 


<100 


iHiti«] 


<^0 


IJCO (]?]J 


< 1500 iLQn 


QI^II/DO 


<5CI 


IJOD (J?1J 


<100 


<SK3im 


<50 


<50 


<100 


1 {HVDI^? 


<50 


<50 


<100 


1 {B/I5fl9 


<50i 


<50 


<na 


IZ/li'^S 


<50 


<50 


<100 


IBflHflS 


<50 fUlft) 


<50 


<100 


1 iSf2T9S 


<50 


<50 


<100 


1 02/74^3 


<50 


<50 


<100 


ll^flT 


<50 


<50 


<J00 


IBflfiflT 


<50 


<50 


<100 


OfiOl'?? 


<50 


<50 


<100 


1 {BflMflT 


< 50 (U6J 


<50 


<100 


1 1 l/CB'96 


<50 


<50 


<J00 


IB/TPffl6 


<50 


<50 


<100 


OJ/i5fl6 


<50 


<50 


<100 


1 01/23^6 


<50 


<50 


<100 


' llVISfl^ 


<50 


<50 


<100 


07^01^5 


<50 


<50 


<100 


1 IH/?7fl5 


<M0 


12 |J25,I6) 


WA 


1 07/13^^ 


<50 


JO IJ25) 


WA 


11/01^4 


<5(l 


L60 insi 


NA 


U7^9^U 


<50 


[tXl jj:5j 


NA 


ffi/0fifl4 


<50 


<50 


NA 


0?M0fl4 


<50 


<50 


WA 


Iin0fl3 


<50 


<50 


NA 


IB/I]6fl3 


<50 


<50 


NA 



FiiS and Saond Quailer!. 2iX7 



Pi«?5ciri7 



Onolffr2007 



labLrA-IO 
K(sulL,4il TFH Ai]jljM.s 

Buildlii|-?(i(iEArt3 
PidikIlo of Sai Fjbk lscd, CalkEaniiB 



Jg^rfcncd iiilcfiilj 


Sanpk 

Dare 


TPH U'.i;j'i»liii( 
iCarbcin han^ 


TFHraDksl 
(CBrbonRaicc 

C„-C.,) 


TPHasKucKILI 
ICarbirn Hani? 

c.,-c„j 




Anal^lKiiJ 
Nblkxl' 


swsni5E/ 

SWSIIL5W 


SWaOliiBf 
S^VHIJISM 


SV'S0]53I 
SWSIII5M 






l|i^/l.l 


lligVLj 


i|i^/l.h 


DUPie29fi2JA 
DUPl 17701 FA 


Oillil/01 


<50 


< SO b UJ 


■; iHI b Ul 


IHMIA)6 


<50 


<50 


<100 


OillSIOS 


<5CI 


<50 


<100 


OinOIOi 


<50 


<50 


<J00 


1 I2AI?^ 


<50 


<50 


<100 


1 atfyo/oi 


<50 


<50 


<100 


iy-ioifoi 


<5(l 


<50 


<100 


iji/ims 


<5(l 


<50 


<100 


1 IZAbW 


<50 


<50 


<100 


1 atfWKf! 


<50 


<50 


<100 


iSfllfOl 


<50 


<50 


<100 


Q&ovai 


<50 


<50 


<J00 


1 aiKBKf! 


<50 


<50 


<J00 


wniioi 


<50 


<50 


<100 


]i/21>0] 


<50 


<50 


<100 


iPM&m 


<50 


J40' VHWJ 


520 ' VL.M 


IbMiM] 


<50 


<50 


<100 


w/aivc 


NA 


<50 tiiSi 


<100 


oai&w 


<50 


54 am 


<100 


09/01 fl9 


<50 


<50 


<100 


oaoi^? 


<50 


<50 


<100 


OlTOflP 


<50 


<50 I US) 


<100 


1 iiim/^s 


<5(l 


■;5II 


<100 


wiiam 


<50 


<50 


<100 


iSliS'^S 


<50 


<50 


<100 


IBMlflS 


<50 


<50 


<100 


llMJflT 


<50 


<50 


<J00 


IH/13fl7 


<50 


<50 


<J00 


1 {B/27fl7 


<50 


<50 


<J00 


' IHflHflT 


< 50 (L"6J 


<50 


<J00 


Il/a4ffl6 


<50 


<50 


<J00 


{HnBJ?fi 


<50 


<50 


<J00 


OiW^fi 


1?0 IJ25) 


<50 


<J00 


01/17^6 


<50 


<50 


<100 


HiH6/95 


<50 


<50 


<J00 


ailiS/95 


<50 


<50 


<100 


ai/i5fl5 


<50 


<50 


WA 


0]/Jlfl5 


<50 


<50 


WA 


IIH5fl4 


<50 


<50 


NA 


i" {KI10/9A 


<50 


<50 lU?) 


NA 


iSHSI^J 


<50 


<50 


HA 


0!H5'9J 


<50 


51 025) 


HA 


11^12^3 


<50 


<50 


NA 


{BflBfl3 


<50 


<50 


NA 



FiiS and Saond Quailer!. 2iX7 



Pi«?6ciri7 



Onolffr2007 



labLrA-IO 
K(sulL,4il TFH AnjljM.s 

Buildlii|-?(i(iEArt3 
PidikIlo of Sai Fjbk lscd, CalkPaniiB 





Sanpk 

Dare 


TPH U'.i;j'i»liii( 
iCarbcin han^ 


L"PE{ ii'^EI hstL 

4 Caclxj a h Jii|^ 

C„-C.,) 


TPHwFndOl 
ICBrbonRaiip 

c.,-c,j 




Anal^lKiil 
Nblkxl' 


swsni5E/ 

SWSIIL5W 


SWgfil.'tB' 


s^^■50l5B; 

SWSIII5M 






l|i^/l.l 


lligVLj 


ll]-,1.l 


1JJGW57 
(skillo'l 


Oillil/01 


<50 


< 5f\ b UJ 


■; ^m >■ LiJ 


IHMJAte 


<50 


<50 


<100 


IHM&IB 


<5CI 


<50 


<J00 


mn^jm 


<50 


<50 


<100 


nioiioi 


<50 


<50 


<100 


isnsioi 


<50 


<50 


<100 


Q&Oifdi 


<5(l 


<50 


<100 


iamm 


<5(l 


<50 


<100 


iiiisroi 


<50 


<50 


<100 


iBfUKfl 


<50 


<50 


<100 


ismioi 


<50 


<50 


<100 


oiHGiai 


<50 


<50 


<100 


imiioi 


<50 


<50 


<100 


IB/UMI 


<50 


14n' VHJ^J 


<H)0' 


isiisro] 


<5CI 


<50 


<H)0 


tsiaina 


NA 


<50 


<100 


i&i9ji]n 


<50 


53 IU1?,U2I1 


<W0 lUI?,L"2l| 


oiniAC 


<50 


<50 CLI6f 


<100 fU6) 


oinjAio 


<50 


<50 


<100 


anai/99 


<50 


<50 


715 


OOffi^? 


<50 


<50 


<100 


OVIOflP 


<50 


<50 


<3C0 (UI2J 


12/07 J^S 


<5fi 


<50 


<100 


l?/U5flS 


<50 


<50 


<100 


IB/IBflS 


<50 


<50 


<100 


ffi^fiflS 


<50 


<50 


<100 


0?^fiflS 


<50 


<50 


<J00 


IZflBflT 


<50 


<50 


<J00 


1 1H/2B^7 


<50 


<^0 <U291 


<100 


' l&llflT 


<50 


<50 


<J00 


mnjj^T 


<50 


<50 


<J00 


llM5fl6 


<50 


<50 


<J00 


03^0^6 


<50 


5i 025t 


<H)0 


01/23^6 


<50 


<50 


<100 


01/31^6 


<^0 


<50 


420 (125, U? J 


l*Mfl5 


<50 


<50 


<100 


{n;z&i95 


<50 


<50 


<100 


IbAB^^ 


<50 


<50 


WA 


IBflPfl^ 


<50 


90 lJ25k 


NA 


1IV27J94 


<50 


51 insi 


NA 


1 {HAb^4 


<^0 


Ql ii25t 


HA 


1 1bjW^4 


<50 


<50 


NA 


07^17^4 


<50 


54 IJ25) 


NA 


|]^]&|?3 


<50 


<50 


NA 


C8nOffl3 


<50 


ICO JJ?5J 


NA 



FiiS and Saond Quailer!. 2iX7 



Pi^cTof 17 



Onolffr2007 



labLrA-IO 
K(sulL,4il TFH AnjljM.s 

Buildlii|-?(i(iEArt3 
PidikIlo of Sai Fjbk lscd, CalkPaniiB 



Wdl PJanr 

<9^rfcncd iiilcrTilJ 


Sanpk 

Dare 


TPH U'.i;j'i»liii( 
iCarbcin han^ 


L"PH iii^EI hstL 

4 Caclxj a h Jii|^ 

C„-C.,) 


TPHflsKueUILI 
ICarbirn haul? 

c.,-c,j 




Anal^lKiil 
Nblkxl' 


swsni5E/ 

SWSIIL5W 


SWafiliiBf 


s^^■5l)l5B; 

SWSIII5M 






l|i^/l.l 


llig'Lj 


lli^/Lh 


1J?GWi& 
(d«pf 


Oill/i/OI 


<50 


■i'ill 


<10l) 


mniAte 


<50 


<50 


<100 


IHM&IB 


<50 


<50 


<100 


inn?jm 


<50 


<50 


<J00 


nioiioi 


<50 


<50 


<100 


GSM3AU 


<50 


<50 


<100 


OfVin™ 


<5(l 


■iSII 


<100 


IHM9TJJ 


<5(l 


■iSII 


<100 


IZAbW 


<50 


<50 


<100 


OtfTSKf! 


<50 


<50 


<100 


ismioi 


<50 


<50 


<100 


oiHGiai 


<50 


<50 


<100 


imiioi 


<50 


<50 


<100 


IB/UMI 


<50 


<50' 


<H)0' 


isiisro] 


<5G 


<50 


<H)0 


I&19JIC 


<50 


<50 (UI2.U2I) 


<jm iui?,L"2ri 


OJ/JIAICi 


<50 


<so jurzi 


<100 


ffijTOflP 


<5G 


<50 


<100 


lllM2fl9 


<^0 


<50 


<100|U6) 


oinofl^ 


<50 


<50 


<100 


IMB^S 


<50 


<50 


<100 


ffijQI^g 


<5o rui8> 


<50 


<100 


(B^firaS 


<5fi 


■iJill 


<100 


0?/?&"S 


<50 


■iSII 


<100 


lIMBflT 


<50 


<50 


<100 


'sn.iBi 


<50 


<50 


<100 


G&lOflT 


<50 


<50 


<J00 


oinifflT 


<50 


<50 


<J00 


nnifls 


<50 


<50 


<J00 


IBMSfl6 


<50 


63 1125) 


<100 


ai/iBfl6 


<50 


<5n 


<100 


oiMTj^e 


<50 


<50 


<J00 


JIH6fl5 


<50 


<50 


<J00 


0JMJJ^5 


<50 


<50 


<100 


ai/?4fl5 


<50 


<50 


WA 


01/Jlfl5 


<50 


<50 


WA 


, IIH5fl4 


<50 


<50 


WA 


1 OBjW^J 


<50 


<50 lU?) 


WA 


IBnai94 


<50 


<50 


NA 


I»n5fl4 


<50 


fiS 1125) 


NA 


11^15^3 


<50 


<50 


WA 


IBflPfl3 


<^CI 


^iin 


XA 



FiiS and Saond Quails rb 2 CUT 



P^cSofl? 



Onolffr2007 



labLrA-IO 
K(sulL,4il TFH AnjljM.s 

Buildlii|-?(i(iEArt3 
PidikIlo of Sai Fjbk lscd, CalkPaniiB 



Wdl PJanr 


Sanpk 

Dare 


TPH U'.i;j'i»liii( 
iCarbcin han^ 


L"PH iii^EI hstL 

4 Caclxj a h Jii|^ 

C„-C.,) 


TPHflsKueUILI 
ICarbirn haul? 

c.,-c,j 




Anal^lKiiJ 
Nblkxl' 


SWSni5E' 
SWSIIL5W 


SWafiliiBf 


SV'S0]53I 
SWSIII5M 






l|i^/l.l 


llig'Lj 


lli^/Lh 


(d«pf 

DLTffilSniJBCL 

9JJG^vlw:L 


Oill/i/OI 


<50 


■i'ill 


<10l) 


mniAte 


<50 


<50 


<100 


mnjflB 


<50 


<50 


<100 


inn?jm 


<50 


<50 


<J00 


, l}jL|b^ 


<50 


<50 


<100 


OB/IBffi 


<50 


<50 


<100 


OUBm 


<5(l 


<50 


<100 


D3/2D,OJ 


<5(l 


<50 


<100 


I2AD02 


<50 


<50 


<100 


{H/2BW 


<50 


<50 


<100 


Ifi/JIAH 


<50 


<50 


<100 


oiHGiai 


<50 


<50 


<100 


]:f!inn 


<50 


<50 


<100 


isiaiioi 


<50 


<50' 


<fl)0' 


iSliSIO] 


<50 


<50 


<H)0 


(BMSJUl 


<50 


<50 


<a)o 


iSllS>0\ 


<50 


<50 


<500 


{HVIfiflO 


<50 


<^0 <U2E1 


<3ID (LI21J 


01 '13m 


<^0 


<50 


<100 


IPMBfl^ 


<50 


<50 


<100 


1 OODI^? 


<50 


<50 


<100 


1 D1W^9 


<50 


<50 


<3C0 (UI2J 


1?/IEJ^S 


66 (315 J 


<50 


<100 


CSMlflS 


<50 


<50 


<100 


IB/llflS 


<50 


<50 


<100 


IBMSJ^S 


<50 


<50 


<100 


l?/IHfl7 


<50 


<50 


<100 


iBrtS/97 


<50 


<«i <Lr29l 


<100 


1 0lVI6,i?7 


<50 


<50 


<J00 


' IH'iaflT 


<50 


<50 


<J00 


linSJ96 


<50 


<50 


<J00 


G8^1ffl6 


<50 


<50 


<J00 


ai/lJfl6 


<50 


<50 


<J00 


0]^fl6 


<50 


<50 


<100 


llV?4ffl5 


<50 


<50 


<J00 


0J'Jlfl5 


<50 


<50 


<100 


, IB/IHfl5 


<50 


<50 


WA 


1 ozni^^ 


<50 


120 OlSl 


WA 


iarz6fl4 


<50 


<50 


^"A 


G8n2fl4 


<50 


<50 


WA 


iBnifl4 


<50 


<50 


WA 


i»n6ffl4 


<50 


9i IJ25) 


WA 


IIM5^3 


<50 


<50 


XA 


IBM*?? 


<50 


69 IJ25) 


WA 



FiiS and Saond Quailer!. 2iX7 



Pi^c^of 17 



Onolffr2007 



labLrA-IO 
K(sulL,4il TFH Ai]jljM.s 

Buildlii|-?(i(iEArt3 
PidikIlo of Sai Fjbk lscd, CalkEaniiB 



Wdl PJanr 


Sanpk 

Dare 


TPH U'.i;j'i»liii( 
iCarbcin han^ 


L"PH ji^EI hstL 

4 Caclxj a h Jii|^ 

C„-C.,) 


TPHflsKueUILI 
ICarbirn haul? 

c.,-c,j 




Anal^lKiiJ 
Nblkxl' 


swsni5E/ 

SWSIIL5W 


SWafiliiBf 


s^^■5l)l5B; 

SWSIII5M 






l|i^/l.l 


llig'Lj 


l|ig/Ll 


1JJGW4: 
D re final El c J 

DUPQViUGLB 

DUP1I3OS022C 

DUPII2S0LIC 
9JJGWCCL 

DUPCfiOSOLIC 


Oill/i/OI 


<50 


■i'ill 


<100 


MMJJlte 


<50 


<50 


<J00 


Oil]Sn)5 


<50 


<50 


<J00 


oiinioi 


<50 


<50 


<J00 


1 izm?^ 


<50 


<50 


<100 


1 08/70,03 


<50 


<50 


<100 


1 OfVfBrtU 


<5(l 


<50 


<100 


oi/ims 


<5(l 


<50 


<100 


ITKGKfl 


<50 


<50 


<100 


OtfKKf! 


<50 


<50 


<100 


o&auiB 


<50 


<50 


<100 


o&aiflc 


<50 


<50 


<100 


G&aiflc 


<50 


S^j'mdpJ-m 


2SMi' WJ 


OJ/OfiflC 


<50 


<50 


<100 


IHM&1J2 


<50 


IIOVH 


340 


]]/2im 


<50 


140 YH 


490 


]]/2ifO\ 


<50 


TMYH 


470 


]]f!snn 


<50 


L50 nd[i 


5H} 


IB/ffirtll 


--■ifi 


59SfO'- VHJj; 


fi7H0 ' VL_\J 


09/C6AJI 


- ■i^J 


fiomo' vHjj; 


th7iU)' VL_NJ 


1 O^ltiOl 


<50 


<50 


<J00 


1 IBIllWi 


NA 


4.1 CC 


l,7CCi 


0*1 6AC 


35 


mom IJ2L) 


\2arj Li2i> 


OIJIO,||IO 


<50 


<S0 <Ut21 


<100 


0?AB^g 


<5o rui8> 


<50 


<J00 


O^^^S 


<50 


<50 


<100 


oi;?4fls 


<50 


<50 


<J00 


i 1 1/Z5fl7 


<50 


<50 


<J00 


0B/7&9T 


<50 


<50 


<100 


OUH'^T 


<50 


<50 


<100 


1 IBflO/97 


<50 


<50 IU1?,U20,U29) 


< 3C0 (LI29J 


nnifls 


<50 


<50 


<100 


, 03/1 4^96 


<50 


37 1125) 


<100 


1 1U/I7^6 


<50 


<50 


<J00 


OI^7fl6 


<50 


<50 


<J00 


10,^0fl5 


<50 


<50 


<100 


0J/?4ffl5 


<50 


<50 


<100 


IB/01fl5 


<50 


92 IJ25) 


WA 


0?n4fl5 


<50 


57 1125) 


NA 


IO^Jfl4 


<50 


<50 


NA 


1 OBjOI^J 


<50 


fiS IJ25) 


NA 


ll5flBJ^4 


<5fi 


■5 50 


NA 



FiiS and Saond Quailer!. 2iX7 



Pd^clOof n 



Onolffr2007 



labLrA-IO 
K(sulL,4il TFH Ai]jljM.s 

Buildlii|-?(i(iEArt3 
PidikIlo of Sai Fjbk lscd, CalkEaniiB 



Jg^rfcncd iiilcr'aK 


Sanpk 

Dare 


TPH U'.i;j'i»liii( 
iCarbcin han^ 


L"PH iii^EI hstL 

4 Caclxj a h Jii|^ 

C„-C.,) 


TPHflsKueUILI 
ICarbirn haul? 

c.,-c,j 




Anal^lKiiJ 
Ntlhxl' 


swsni5E/ 

SWSIILSM 


SWafiliiBf 


SV'S0]53I 
SWSIII5M 






l|i^/Lh 


llig'Lj 


l|ig/Ll 


yiTGWLOl 


IJi/IMJ? 


<50 


■i'ill 


<3Q0 


OiniAte 


<50 


<50 


<J00 


IHMSA6 


<50 


<50 


<J00 


MM SAM 


<50 


<50 


<J00 


, IMUAU 


<50 


<50 


<100 


1 08/17^ 


<50 


<50 


<100 


lemwu 


<5(l 


<50 


<100 


Oil]1Ai3 


<5(l 


<50 


<100 


niiofoi 


<50 


<50 


<100 


iBf!SnB 


<50 


<50 


<100 


li&m/ai 


<50 


<50 


<J00 


oiiiB/ai 


<50 


<50 


<100 


n^jAii 


<50 


<50 


<100 


jiin^foi 


<50 


6.1 ■ VHJj; 


^■HIIJ' 


917a W EC? 

'mlcnnalElcJ 


OiliSfO! 


<50 


<5II 


<1UIJ 


IHn?Jlte 


<50 


<50 


<100 


lUMS^ 


<50 


<50 


<100 


03/160^ 


<50 


<50 


<100 


IJ'IUAB 


<^0 


<50 


<100 


iBn?jii3 


<50 


<50 


<100 


1 OODI^ 


<50 


<50 


<100 


1 03/19^ 


<50 


<50 


<100 


1 ifMao: 


<50 


<50 


<100 


{B^fl2 


<50 


<50 


<100 


IB/JOAC 


<50 


<50 


<100 


m/OSAC 


<50 


<50 


<100 


ll/lSJUl 


<50 


<50 


<100 


iPA&m 


<50 


?10' VHWJ 


<100' 


917GW101 
IdKpf 

DLTi:il4IU2A 
9JTGWIII3CL 


OiliSIO! 


<50 


<50 


<100 


, {H/I3AI6 


<50 


<50 


<J00 


1 {B/IBffi 


<^0 


<50 


<H)0 


{HM&04 


<50 


<50 


<100 


i?/aifl3 


<50 


<50 


<100 


i?/ajjii3 


<50 


<50 


<J00 


i?/aiflu 


<50 


<4S 


<240 


G8M?AU 


<50 


<50 


<100 


1 {ooiros 


<50 


<50 


<100 


1 D3/I9ffi 


<50 


<50 


<100 


l?MIM2 


<50 


■:.50 


<100 


IB^AC 


<50 


<50 


<100 


ffi/jailB 


<50 


<50 


<100 


0J/IHAI2 


<50 


<50 


<100 


11^7flll 


<50 


<50 


<100 


IB/OSAII 


<50 


<50' 


<100' 



FiiS and Saond Quailer!. 2iX7 



Page II of ]7 



Onolffr2007 



labLrA-IO 
K(sulL,4il TFH Ai]jljM.s 

Buildlii|-?(i(iEArt3 
PidikIlo of Sai Fjbk lscd, CalkEaniiB 



Wdl PJanr 

<9^rfcncd iiilcrTilJ 


Sanpk 

Dare 


TPH U'.i;j'i»liii( 
iCarbcin han^ 


L"PH iii^EI hstL 

4 Caclxj a h Jii|^ 

C„-C.,) 


TPHflsKueUILI 
ICarbirn haul? 

c.,-c,j 




Anal^lKiiJ 
Ntlhxl' 


SWS015E/ 
SWSIIL5W 


SWafiliiBf 
S^VHOISM 


SV'S0]53I 
SWSIII5M 






Ili^/I-f 


llig'Lj 


l|igA.l 


(ski]la«1 


IJi/lfi^lJ? 


<50 


■i'ill 


<100 


OlMlAte 


<50 


<50 


<100 


01/3*16 


<5CI 


<50 


<100 


oin?jm 


<50 


<50 


<100 


, IMB^ 


<50 


<50 


<100 


1 atfi2/oi 


<50 


<50 


<100 


OfVOi™ 


<5'l 


<50 


<100 


OI/JJJIJJ 


<5<l 


<50 


<100 


1 12/1002 


<50 


<50 


<100 


1 {H/10,07 


<50 


<50 


<100 


IB/31A)2 


<50 


■^■Sll 


<100 


i 01/] 1^ 


<50 


<50 


<100 


1 I2j01^I 


<50 


<50 


<100 


ipmflii 


<50 


<50' 


^■HIIJ' 


917a WL(& 
'mlcnnalElcJ 

DUPiei5fGLA 
9JTGWIC6CL 

DUP(WBCG2A 


U1/Q5T)7 


<5C) 


<50 


<1UIJ 


01/1 lAte 


<50 


<50 


<100 


01/10fl» 


<50 


<50 


<100 


1 01/160^ 


<50 


<50 


<100 


1?™™ 


<^0 


<50 


<100 


05/liAI3 


<50 


<50 


<100 


G8/15fll3 


<50 


240 HV 


<100 


03/15AU 


<50 


<4S 


<240 


OfVOUJJ 


<5(l 


■;5II 


<100 


01/1 9T)J 


<5U 


<50 


<100 


1 12/1002 


<50 


<50 


<100 


o?n^w 


<50 


<50 


<100 


09/0^ AC 


<50 


<50 


<100 


09/0^ AC 


<50 


<50 


<100 


iS/ilKfl 


<50 


<50 


<100 


01/1 lAC 


<50 


<50 


<100 


1?A)1AII 


<50 


<50 


<100 


0QA)7A1I 


<50 


TT' VHJj; 


<100' 


917a W 106 

(skilki'l 


OlABAJT 


<50 


<5II 


<100 


01/1 lAte 


<50 


<50 


<100 


01/30AI5 


<50 


<50 


<100 


01/1 6AM 


<50 


<50 


<100 


1 l}/0?AI3 


<50 


<50 


<100 


1 atfis/oi 


<50 


noY 


<100 


OfVOWU 


<5(l 


63 V 


^■HX) 


01/1 5AU 


<50 


<50 UJ 


<2m UJ 


I2/I002 


<50 


<50 


<100 


WKBKf! 


<^0 


<50 


<100 


iEmioi 


<50 


<50 


<100 


01/1 lAC 


<50 


<50 


<100 


11/?9AI1 


<50 


<50 


<100 


16/1 lAJI 


<5fi 


:iii' VHfjj 


<100' 



FiiS and Saond Quailer!. 2iX7 



Page 12 of 17 



Onolffr2007 



labLrA-IO 
K(sulL,4il TFH AnjljM.s 

Buildlii|-?(i(iEArt3 
PidikIlo of Sai Fjbk lscd, CalkPaniiB 



Wdl PJanr 

<9^rfcncd iiilcrTilJ 


Sanpk 

Dare 


TPH U'.i;j'i»liii( 
iCarbcin han^ 


L"PH iii^EI hstL 

4 Caclxj a h Jii|^ 

C„-C.,) 


TPHnFndOl 
ICBrinnRanp 

c.,-c„j 




Anal^lKiil 
Nblkxl' 


SW5ni5E/ 
SWSIIL5W 


SWafiliiBf 
S^VHOISM 


SV'S0]53I 
SWS0I5M 






l|i^/Lh 


ilig'Lj 


i|i^/l.l 


D re final El c J 

DUPreiscGiA 

DUPi:RCetG2B 


Oill/i/OI 


<50 


■;50 


<hXJ 


IHM4flte 


<50 


<50 


<100 


IH/30flB 


<50 


<50 


<100 


IHM*m 


<50 


<50 


<100 


1 I2AI?^ 


<50 


<50 


<100 


1 OB/IBW 


<50 


<50 


<100 


(SMs™ 


<5(l 


<50 


<100 


If^JAJJ 


<5(l 


<50 


<100 


IHM3AI3 


<50 


<50 


<100 


1 inane 


ICOVH 


62 HY 


470 


IS/IBAC 


<50 


<50 


<100 


IB/IBAC 


<50 


<50 


<100 


I&/31AI2 


<50 


<50 


<100 


oimns 


<50 


<50 


<100 


]i/2''nn 


<50 


<50 


<100 


iSli]Ai\ 


<50 


6i' Y^yi 


<100' 


DUP1203MJB 
9JTCWICeCL 

DUPIH19032A 

DLT1?I(B22A 
9JTGWIieCL 


OiliSfO! 


T?HY 


fi5 Y 


<100 


mniAS 


140 HY 


55 LV 


<100 


oiiiins 


ISO HY 


IJO HLV 


940 


oimian 


620 HY 


LflDLY 


580 


nioiioi 


4&0HJ-H 


<50 


<100 


nioiioi 


I90H 


50 V 


<100 


]2mM>3 


?90 


ICCTiA-fil 


T50 


CSMiAJJ 


410 Y J* 


400 HLY 


£40 


G&IHAI3 


740 YH 


510 HLVZ 


760 


OIM^JIU 


570 


<50 


<100 


oin^AU 


tiOO 


150 YLH 


J9CL 


1 inane 


350 YH 


610 HLY 


imo 


uiionB 


540 HY 


i50V 


<100 


nnons 


£80 


<50 


BOO 


iSliSfOl 


770 YH 


<50 


<100 


06IO^U02 


LJmVH 


680 YLH 


1,901 


950GWL(» 
'iDlennalElcJ 

DUPIIJIfi(lS2A 
95(GWICeCL 

D\JP033\!61\ 
95()GWIieCL 

DUPUJ L6012B 

DUPIUISdJLB 
950aVi\ISCl. 


OilQUfO! 


<50 


<50 


<100 


OJMBflte 


<50 


<50 


<100 


Oiia>IQ6 


<50 


<50 


<100 


01/09 Jite 


<50 U 


120 


<J00 u 


0J/31A6 


<50 


<50 


<I00 


0J/31A6 


<50 


<50 


<100 


0J/31A6 


<50 U 


<50 U 


<J00 u 


OinSflJi 


<50 


<50 


<100 


OinSAM 


<50 


<50 


<100 


IIMIWU 


<50 


<50 


<100 


osniAU 


<50 


<50 


<100 


1 OOQ&O^ 


<50 


<50 


<100 


mnaw 


<50 


<50 UJ 


<J00 U] 


uinsjiu 


<50 


<50 


<100 


oinsflu 


<50 


<50 


<250 



FiiS and Saond Quailer!. 2iX7 



Page II of 17 



Onolffr2007 



labLrA-IO 
K(sulL,4il TFH Ai]jljM.s 

Buildlii|-?(i(iEArt3 
PidikIlo of Sai Fjbk lscd, CalkEaniiB 



Jg^rfcncd iiilcr'aK 


Sanpk 

Dare 


TPH U'.i;j'i»liii( 
iCarbcin han^ 


L"PH iii^EI hstL 

4 Caclxj a h Jii|^ 

C„-C.,) 


TPHflsKueUILI 
ICarbirn haul? 

c.,-c,j 




Anal^lKiiJ 
Ntlhxl' 


swsni5E/ 

SWSIIL5W 


SWafiliiBf 


SV'S0]53I 
SWSIII5M 






l|i^/l.l 


llig'Lj 


l|ig/Ll 


ysoGwuni 

'iDlcnnalEilcl 
DLTC629II22A 

DLT0i5O402LA 

DUPIUI4II22A 
9S(GWIieCL 

DUPIIJHiLLA 


]2I]]A>2 


<50 


■i'ill 


<3Q0 


iBf29Kf2 


<50 


<50 


<J00 


iSfllfOl 


<5CI 


<50 


<J00 


GS/19JII2 


<50 


<50 


<J00 


i&awc 


<50 


<50 


<100 


i&aiflc 


<50 


<50 


<100 


OfVfiWH 


<50 


<50 u; 


<100 


OJMJAC 


<50 


<50 


NA 


IH/14'112 


<50 


<50 


XA 


IHM4JII2 


<50 


<50 


WA 


ll/JOAII 


<50 


<50 


<na 


ii/inioi 


<50 


<50 


<100 


Cfl/(&OI 


<50 


<50' 


<100' 


yT9GWL(N 
(sluilLoi«j 

DLiPI2!CClZ?B 


U?™A)7 


<50 


<50 


<100 


UJMilte 


<50 


<50 


<J00 


OIMSJlB 


<50 


<50 


<100 


Oili6/m 


<50 


<50 


<100 


iTKem 


<50 


<50 


<100 


atno/oi 


<^0 


<50 


<100 


O&OMyi 


<50 


<50 


<J00 


03/19^ 


<50 


<50 


<100 


12/1007 


T9 YH 


<50 


<100 


1?MIM2 


<50 


<50 


<100 


G8^9J02 


<50 


<50 


<100 


G&awc 


<50 


<50 


<100 


IH/IBAC 


<50 


<50 


<100 


IJ/lSJUl 


<50 


<50 


<100 


IP/OJflll 


<50 


IfiO' VHW3 


<100' 


9T9GWt[0 

'lllCFHialEllCj 

DUP1I3 L9M2B 


M/IBAIT 


<50 


<50 


<100 


HIM 4^06 


<50 


<50 


<J00 


HIM 3^ 


<50 


<50 


<J00 


iBll6fai 


<50 


<50 


<100 


If/IUAU 


<50 


<50 


<100 


1 08/17^ 


<50 


<50 


<H)0 


' owb™ 


<50 


IGOHV 


540 


mn^jiu 


<50 


<50 


<100 


oin^AU 


<50 


<50 


<100 


1?M1AI2 


<50 


<50 


<100 


CS/^iiAH 


<5ti 


<50 


<100 


isnmji 


<5C) 


<50 


<100 


Oil]i>02 


<50 


<50 


NA 


]:f!snn 


<50 


<50 


<100 


jiiainn 


<50 


<50' 


<100' 



FiiS and Saond Quailer!. 2iX7 



Page 14 of n 



Onolffr2007 



labLrA-IO 
K(sulL,4il TFH AnjljM.s 

Buildlii|-?(i(iEArt3 
PidikIlo of Sai Fjbk lscd, CalkPaniiB 



Wdl PJanr 


Sanpk 

Dare 


TPH U'.i;j'i»liii( 
iCarbcin han^ 


L"PH iii^EI hstL 

4 Caclxj a h Jii|^ 

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OfVin™ 


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mnijiu 


<5<l 


<50 


<100 


II/JOAC 


<50 


<50 


<100 


G8/Jai|l2 


<50 


<50 


<100 


0*16 AC 


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<50 


<J00 


STW;WLL2 
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DUPieismiB 

9T«WII2CL 

DL1PI2ICCIZIA 
9T9GW]]2CL 


oiiiGia/ 


<50 


<50 


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IHM4J06 


<50 


<50 


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01/3*16 


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<50 


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inn?jm 


<50 


<50 


<100 


mn?AM 


<50 


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ijiinfm 


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niiP'Oi 


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<50 


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isnsioi 


<50 


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0*IHflU 


<50 


<50 


<J00 


OiliSfOi 


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nnoioi 


<50 


<50 


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<50 


<50 


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nmifoi 


<50 


<50 


<2M 


iB/io/ai 


<50 


<50 


<100 


l&IBflC 


<50 


<5U 


<100 


1 OlfliAfl 


<50 


<50 


<100 


1 nuB/oi 


<50 


<50 


<100 


fBiiiroi 


<50 


<50' 


<H)0' 


ST9GWLL1 
LsluJLoi«J 

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OilO^fO! 


<50 


<50 


<J00 


IHM4J06 


<50 


<50 


<J00 


1 D3/IBffi 


<50 


<50 YU 


<100 


1 {B/ltiAM 


<^0 


<50 


<J00 


i?/awu 


<50 


<50 


<100 


, {BllllOi 


<50 


SiHY 


<100 


1 OMDAQ 


<50 


<50 


<J00 


IHJ19™ 


<50 


7I0YLH 


760 


l^MOAC 


<50 


<50 


<100 


IB^JlE 


<50 


<50 


<J00 


ffi/jailB 


<50 


<50 


<100 


oiniAC 


<50 


<50 


<J00 


IUMJAI2 


<50 


<50 


<100 


1 II/790I 


<50 


<50 


<100 


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<50 


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<100' 



FiiS and Saond Quailer!. 2iX7 



Pii£cl5oF17 



Onolffr2007 



labLrA-IO 
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Buildlii|-?(i(iEArt3 
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Wdl PJanr 


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TFHraDksl 
(CBrbonRaicc 

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c.,-c,j 




Anal^lKiil 
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swsni5E/ 

SWSIIL5M 


SWafiliiBf 
S^VHOISM 


SV'S0]53I 
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l|i^/Lh 


ilig'Lj 


i|i^/l.l 


'iDlcnnalEilcJ 
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DLTIB3aOtD 


IJi/IMJ? 


<50 


■;5II 


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IHM4Jlte 


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<50 


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OiliSfOS 


<50 


<50 


<na 


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<50 


<50 


<100 


OJMSflJi 


<50 


<50 


<100 


nioiioi 


<50 


<50 


<100 


iSI]2fi.ii 


<5(l 


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OVIIWU 


<50 


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<50 


<50 


<100 


iSflSIOl 


<50 


■^511 


<100 


is/ioiai 


<50 


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<100 


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<50 


<50 


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<50 


<50 


<100 


]]fl'»0] 


<50 


<50 


<100 


j'iaifo\ 


<50 


no' VHfjj 


<100' 


9T9GWLL5 
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IXIPI2IIII2LA 

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979CWI I5CL 


01/0*07 


<50 


<50 


<100 


IHM&07 


<50 


<50 


<100 


01/0*07 


NA 


<50 


<100 


OJMJAte 


<50 


<50 


<100 


OJfMflB 


<50 


<50 


<100 


1 D3/I7^M 


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<50 


<50 


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<50 


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<300 


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<50 


<50 


<300 


11^9J01 


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<50 


<100 


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<50 


54' V.NI 


<100' 


9T9GWH6 
'iDlcnnalElcl 
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DUPIUI40SLA 

DUP1J3J L(B?B 
9T9GWII&:L 

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01/0*07 


<50 


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01/0*07 


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OJMiiy. 


<50 


■iSII 


<100 


01/31/05 


<50 


<50 


<100 


01/31/05 


<50 


<50 


<100 


03/31/05 


<50 U 


<50 U 


<300 L" 


03/1 *IM 


<50 


<50 


<100 


1 ITKB/Oi 


<50 


<50 


<100 


fBiam 


<50 


<50 


<na 


G&OU03 


<50 


<50 


<300 


G&OWU 


<50 


<50 


<300 


03/19/03 


<50 


<50 


<300 


03/19/03 


<50 


<50 


<100 



FiiS and Saond QuaHers 2iX7 



Pd^clfiof 17 



Onolffr2007 



labLrA-IO 
K(sulL,4il TFH Ai]jljM.s 

Buildlii|-?(i(iEArt3 
PidikIlo of Sai Fjbk lscd, CalkEaniiB 



VVdl P^anr 

jKFfcncd iiilcr'aK 


Sanpk 

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TPH U'.i;j'i»liii( 
iCarbcin han^ 


L"PH iii^EI hstL 

4 Caclxj a h Jii|^ 

C„-C.,) 


TPHflsKueUILI 
ICarbirn haul? 

c.,-c,j 




Anal^lKiil 
Ntlhxl' 


SW5ni5E/ 
SWSIIL5W 


SWafiliiBf 


SV'S0]53I 
SWSIII5M 






Ili^/I-f 


llig'Lj 


l|ig/Ll 


'ml cfDicdEilcJ 
DUPlfi(Bfi22C 

9t«wii&:l 

DUP03l4nZEA 

9t*jWii&:l 

DUPl 12901 lA 
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]2I]M>2 


<50 


■i'ill 


<3Q0 


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<50 


<50 


<J00 


iSliSKfl 


<50 


<50 


<J00 


ISHGiai 


<50 


<50 


<J00 


1 l)aD6,^]2 


<50 


<50 


<100 


1 aifii/ai 


<50 


<50 


<100 


i)?n4fli2 


<50 


<50 


<100 


USMiU? 


<5C) 


<50 


<100 


11^9J1JI 


<50 


<50 


<100 


I1/19JII1 


<50 


<50 


<100 


11^9Jlll 


<50 


<50 


<aio 


GS^9flll 


<50 


50' V.M 


<100' 


9T9GWItT 
(d«pf 


IH/IBAI7 


<50 


<50 


<100 


, a3H3/0& 


<50 


<50 


<J00 


1 {B/I7ffi 


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<50 


<J00 


IHn?flM 


<50 


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I2;IBW 


<50 


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atfiTOi 


<50 


<50 


<100 


avians 


<^0 


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<100 


oinsioi 


<50 


<50 


<J00 


1 l}/lll,^]2 


<50 


<50 


<100 


1 ati30/a! 


<50 


<50 


<100 


ismioi 


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<100 


IHnjJ02 


<50 


<50 


<100 


l]^9flll 


<50 


<50 


<100 


iSfl'iXH 


<'^fi 


<50' 


<100' 



1 -Th? idcru ifiol asiilyl k: jL no kodr&J arc lor aoal^'SK perfi}ini«l tcgin n I nf iDLkeSrroiid Quailcr2lini 

Th? aual^Hal itilI hirl' is^d d u nig pn^inu'v quailciH arc idcru illi:(l luihc rcvjvt;! i-c quaUcdy rqnn^ 

2 - TPH JuaL^L'v hi j< Bill run uijig i hi: 'iIk j gL'L 4. Ii:ai]i]p nahiJ J6J0A, jII kngli U hj' Ji ibiikci] ud Llii: 

ckiiD III CDlnly 
H - Hcj-L^r k>4ln:cdJbJll^ cumnbuiol lo I lie qajnlD:! ui 
L - Lif hlL'c hyd nicaitoD'v cnul ribul cd Id Llii: qu jru Uj k>i] 
V- Earn pJL' L'i^liLbils Fuel [Ellcm -i^bxh do.-'Bil rcscm bJL'lJDdaid 
NJ- The aBiiiv'^tv ludiii^lc'v I hi: pn^^'ii^L' nf aa anaJ^lc i h:l Ijahlvcu ''^DiJlivciv ulciLiri::d" dnd 

I hiz a'iMx;ulcd n u niL'iHal value r<:piDii:nL<v lI<v apjmi^LniJCiTiiBicV n lou. 
fedp- H >'d mcaibin r:[>Jd liI ikn-' bH m j^k LIjl' raicni oC i he d ics^J '^andanl 
pglL- nieir^iaiti per lUr 
NA- r*i jnaly7ed 
TPH -TciJjl pJnik'uni fcj'dii'niit'in' 

C L ivunb; dL'ni^L'^ Li qu jIiI y iTiW in] d u plKHc smple hi'dikSrV litihrnWnil blxn^lDiy 

TdblcT LDlkeniiii] iL'r>in idcnliflcTijII daplicJe mid <ip]i sjinpln and d^rcuICk i hen >« Db i h? wril FroDiiiliLck 
I hey i*f ic pilk^^lf d. 
Tabic ] I iDlliL'iTiJiii fL'pad idem LfLCk ^■ncm and liiHorical dJ a qualificiH. 



FiiS and Saond Quailei!. 2iX7 



Page IT of 17 



Onolffr2007 



Tahlr A-l J 

GrDundwalrc EIe^'uILo n Si n inac} 

hilLdlu^^OOsArcB 

PcL'^id ki of S!in Fnu^biio. €dl iforn m 



WrIIID 


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asiiiiab 


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4 il 


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l\ll^'Oi 


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b.a 


litH 


4.75 


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- 


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ntn 


5jg 


WW 


asiiisoi 


- 


53E 


litH 


5JT 


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aini'Oi 


- 


5A2 


ntn 


QC3 


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tzin'M 


- 


J.6E 


litH 


Q.3T 


WW 


OBIWI'M 


- 


ita 


ntn 


4.flT 


WW 


OilTVH 


- 


b.n 


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4^7 


WW 


ommw 


- 


Stfl 


ntn 


5.3Q 


WW 


lliOllOi 


- 


SH5 


litH 


5.30 


WW 


OBIHIOi 


Low 


6J7 


ntn 


4JB 


WW 


oiioiioi 


Low 


b.v\ 


litH 


4JS 


WW 


OHKIOi 


Low 


6.2fl 


ntn 


4.7Q 


WW 


t2/*HI02 


Low/ 


6.13 


litH 


4.e? 


WW 


asitti'Di 


Low 


tSl 


ntn 


4.3B 


WW 


asitssDi 


Low 


6.67 


litH 


4.3B 


WW 


aiivDi 


Low 


S.Q3 


ntn 


5.1? 


WW 


M/»^l 


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6.27 


litH 


4.7B 


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5.3? 


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6£l 


litH 


4.3B 


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asiii'oi 


Mjph 


6. JO 


ntn 


4.35 


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asiou'Di 


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6.JS 


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4.3D 


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asutis'Di 


MJi^h 


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4 50 


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HTGWOJ ' 


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— 


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asmw- 


- 


>l J^ 


H^W 


5.15 


WW 


a5i22iat- 


- 


1H7 


H^W 


5t\l 


WW 


a}»\t\'at- 


- 


7A1 


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l\l2?^'Di 


- 


fl.JB 


IJ.OI 


4M 


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as/2q^s 


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IKI 


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5. ID 


WW 


a5l2^'Di 


- 


a.JD 


I3.4M 


5. IB 


WW 


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- 


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13.41 


5^4 


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L2;i]^IU 


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13.41 


bttl 


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05/11 ^TU 


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5.23 


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fl.J7 


13.41 


4J7 


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qjl 


13.41 


4J3 


WW 


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B.Q5 


13.41 


4.flg 


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Low 


fl.JI 


13.41 


4.13 


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l.il 


13.41 


4JI 


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fl.l2 


13.41 


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4. ID 


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4Aq 


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Lhhw 


fl.Jt 


13.41 


4. IB 


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MJifh 


fl.Jl 


I3.4L 


4.23 


WW 



FiBl bhI icro ndQiBiKn ?007 



Pap ] of 15 



OtUb[c2DD7 



Tahlr A-l J 

GrDundwalrc EIe^'uILo n Si n inac} 

hilLdlu^^OOsArcB 

PcL'^id ki of S!in Fnu^biio. €dl iforn m 



WrIIID 


irjiL 


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MW 


aBUJW, 


- 


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K.H 


7E5 


MW 


asiiiiab 


- 


bAi 


ID.M 


3.71 


MW 


aiiWi'ob 


- 


LH 


■CM 


BOI 


MW 


l\llS'Oi 


- 


3AI 


ID.M 


b.Ji 


MW 


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lemmi 


- 


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7.71 


MW 


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- 


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1 iiioiiai 


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5.67 


MW 


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1.15 


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S.Jfl 


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4.95 


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asitssDi 


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5.39 


MW 


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S.Jfl 


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MW 


1\I26'01 


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J. lb 


■CM 


5. IB 


MW 


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S.HS 


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4jg 


MW 


OBIll/Ol 


Mjph 


S-Hfl 


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4J5 


MW 


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1.67 


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- 


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12.90 


5^3 


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iai2in6 


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7.2fl 


12.90 


561 


MW 


03ifl6W» 


- 


6A« 


12.90 


QE4 


MW 


M/a^S 


- 


7.77 


12.90 


5.13 


MW 


QBII^'Oi 


- 


7fl2 


12.90 


5.EB 


MW 


asiiisoi 


- 


7.10 


12.90 


5E(i 


MW 


ainisai 


- 


6.27 


12.90 


63 


MW 


i2ri]/iu 


- 


6.H 


12.90 


Q57 


MW 


oaviw 


- 


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12.90 


5JI 


MW 


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- 


7J7 


12.90 


5J3 


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OHOBW 


- 


6.03 


12.90 


5.9B 


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V2/*H'0i 


- 


1X1 


12.90 


5fl7 


MW 


CB/IL^l 


Low 


E.I6 


12.90 


4.74 


MW 


QQ/OIO)! 


Low 


b 2C 


12.90 


4.7D 


MW 


aina/oi 


Low 


EM 


12.90 


4.90 


MW 


V2/*HID2 


Low 


7.HS 


12.90 


5fl5 


MW 


OBItti'Dl 


Low 


E.IQ 


12.90 


4JI 


MW 


asitssDi 


Low 


E.U 


12.90 


4J5 


MW 


□ 341^2 


Low 


7.7E 


12.90 


5.1? 


MW 


ll/»^l 


Low 


7.QE 


12.90 


4.9? 


MW 


ll/»^l 


Mjph 


7.H1 


12.90 


5AE 


MW 


aBiiisoi 


Low 


E.U 


12.90 


4.3? 


MW 


0&27^l 


Miph 


E.SE 


12.90 


4.3? 


MW 


OHOB'Ol 


Low 


S6E 


12.90 


4.3? 


MW 


asimsDi 


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16L 


1290 


4 29 


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FiBl bhI icro ml QuKcn ?in7 



Pap ? oT 15 



Ot«ili[c2DQ7 



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PcL'^id ki of S!in Fnu^biio. €dl iforn m 



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- 


i-tl 


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s.n 


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5il 


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7.21 


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, OHOB'M 


- 


7.11 


II.6J 


4J3 


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1 lliOllOi 


- 


6.11 


ll.bl 


5J3 


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Low 


b.tb 


IL6J 


4.6B 


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O&OTIOi 


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bsi 


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4.EI 


MW 


aina/oi 


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b.ib 


IL6J 


5tS 


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bAi 


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ain^t'02 


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6.13 


II.6J 


SJl 


MW 


H/»^l 


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MW 


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ll.bl 


4.31 


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Mjph 


7J3 


ll.bl 


4.31 


MW 


asiwDi 


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IL.6J 


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7. IE 


IL.64 


4JQ 


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HTGWJJ 


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- 


bS[ 


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5.fl3 


MW 


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b.ti 


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- 


S.Q3 


IL7J 


bsi 


MW 


M/a^S 


- 


7.JS 


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MW 


QBII^'Oi 


- 


6.H7 


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MW 


asiiisoi 


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6.QS 


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5 79 


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MW 


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- 


6.21 


IL74 


013 


MW 


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7.JS 


12.74 


1 39 


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7.27 


12.74 


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MW 


OHOBW 


- 


6.H6 


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1.BB 


MW 


V2/*H'0i 


- 


7jq 


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MW 


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QQ/OIO)! 


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7.03 


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aa2 


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V2/*HID2 


Low 


7.JS 


I2.7J 


4.W 


MW 


OBItti'Dl 


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asitssDi 


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S.25 


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□ 341^2 


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5. ID 


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ll/»^l 


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7.J7 


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7.66 


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5AE 


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12.74 


4JD 


MW 


, D&27^l 


Miph 


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12.74 


4.31 


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E.54 


12.74 


4.30 


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a5/n>i^i 


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FiBl bhI icro ndQiBmn 20O! 



Page 3 oF 15 



OtUb[c2DQ7 



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hilLdlu^^OOsArcB 

PcL'^id ki of S!in Fnu^biio. €dl iforn m 



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7.lfl 


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7.21 


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4.7? 


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bjH 


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4.53 


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4.35 


MW 


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MW 


aiivoi 


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bsi 


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5tKl 


MW 


H/»^l 


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7*1 


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4.77 


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4 3Q 


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4 35 


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4^7 


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b.i7 


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4.fl5 


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bJJ 


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5AB 


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asiii'Oi 


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b.lE 


1 1.Sl 


5 34 


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6AE 


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5J4 


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- 


J.U 


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bbT 


MW 


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b.tb 


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4JQ 


MW 


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bsi 


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a&<i 


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6.J1 


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- 


CAl 


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5.5a 


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minioi 


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t.JS 


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4.77 


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bAi 


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C.4E 


1 1.Sl 


4il 


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12/01102 


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6*3 


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5jg 


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imi-n/Di 


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7.26 


1 1.Sl 


4.3Q 


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4.66 


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6J7 


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bAi 


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4.99 


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7ffll 


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FiBl bhI icro ml l>Bi«n 200! 



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Tahlr A-l J 

GrDundwalrc EIe^'uILo n Si n inac} 

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6.67 


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5.01 


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FiBl bhI icro ndQumn 20O! 



Pap 5 oF 15 



Ot«]b[r2DQT 



Tablr A-l J 

GrDundwalrc ElE^alLo n £■ n laarj 

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3.75 


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ILI7 


3.23 


MW 


l\l1(i'0l 


Low 


b U 


ILI7 


3.67 


MW 


ll/»^l 


Mjph 


qt7 


ILI7 


?JD 


MW 


OBIll'Ol 


Low 


}|f^L 


ILI7 


3JQ 


MW 


QBIII'DI 


MJi^h 


1 -u 


ILI7 


3 63 


MW 



NoLei 

I- Alldcph Id ivjIcj iiicjiiie mem unc ua3\<agc aflhiuc mcaiij rcBC nil iecdhIciI latk. Titld 

1- Tdp alcasnig [Icialu^n iiappciKJBJlc •h\c ii? djmi^cJ [j^jbj^ 

1- Thp ikph lL> 11 j|[j(7 bX l[(i) ^ j.n ■(j.nLircd hhd J lunc 1002 iBuiin^ h.jm|iljiig 

4- Thp 4kph lo iialcjt^ ISI led) w j* BCd'niEil j4 ippcnuBJlcl} llh 3D \Zv1 ••a l>l Mjrub 2Q(i3 iBuiiiif h.jmpljB£. 

MW- MDnkiMinf mill 

— = Gioumlii j|[j kvd mciiunDiciili '•en vil tiltilcil \rm i iiiblKkikjIc bc^ jbdib£ v-Uk Fouil b U<-i^ n^ ^ ^1^ ^ 

NM - Not iiicj^uieJ 

|[[| PLLW- l[[l jbovc Frti kIlci Li>\-<r Ll>^ Walcri c fIkjI ib4uiD 



FiBl bhI icro ml QuKcn 20O! 



P»B^ l5oll5 



Ot«ili[c2DQ7 



Tabk A-1-% 
Sdididjcj dI VrrllcalCnillrnlsalH'rll CliScrE 

Bmldlii^^lhOsArra 
Prr&id in [tC S Ji Fi!in{ LMO, CdLilorn III 



Well 

CluHlizr 

(WC) 


Well ID 


G lanndu'ilci 
Zone 


Datf 


Groundwiler 
EJfviliDn 
{feci PLLWJ 


GiDund 

Surfice 
Elevalion 

^fee^ 
PLLW> 


De[ilh lo 

ScTreii 
lA idpalul 
ifcel b^^l 


Mid[iDi[il 

Elevalion ' 

iFeel PLLWJ 


SHbIIdu /InlcmtedlBle 


1 nie rmed iale^DcEp 


ShBUDn/Deep 


Difference in 
G roundly ale r 

El evil inn 
(feci PLLWl 


Difference In 

Screen MIdpalnl 

Elevalicm 

Ifeel PLLWJ 


Vcnicii 
GcadlenI 
(feel/fool J 


DiCfercnce in 
G ro u ndu' ale r 

E lev B Hon 
f£cel PLLW) 


Difference in 

Screen MIdpoinl 

Elevilicm 

(feel PLLWl 


Vcnical 

Gradienl 
{feeUfOnO 


DiCCerence in 
G rci u ndv/ aler 

Elevalion 
f£cel PLLWJ 


Difference in 

Screen Midpoinl 

E Levi lion 

(feci PLLWl 


Vcilical 

Gradient 
{feeUfOoll 


ViTsl I^UBi-Irr 2007 | 


yuuwc-i 


■^iTGWOfi 


Sbidllov^ 


02':6rll7 


5.67 


10.95 


10.8 


IS 


-0 32 


-13.14 


0.024 


0.030 


-L0 590 


-0.003 


-0.290 


-23 730 


0.012 


9?7GW42 


L n IcimciLl] ale 


02/26/U7 


5.35 


11.04 


24.0 


-L2 96 




















937GW32R 


Deep 


02/26/07 


5.38 


10.95 


34.5 


-23 55 




















90C'WC-2 


937GWI0I 


ShBllour 


02/26/07 


6.18 


11. SI 


10.0 


i SI 


017 


-15.12 


-O.tll 


-0 220 


-15 130 


tJI5 


-0.050 


-30 250 


t.OOl 


937GWI02 


InlemifdiBlc 


02/26^17 


6.35 


11.69 


25.0 


-U3 




















937GWI03 


Deep 


02/26^17 


6.13 


11.56 


40.0 


-2S44 




















900WC-3 


979GWIL5 


Sbiallour 
1 


02/26/07 


S.02 


12.56 


10.0 


2 56 


-0 07 


-15.00 


O.OCiS 


IJJ30 


-14 970 


-0.0Q9 


0.960 


-29 970 


-0.032 


979GWIL6 


L n leimeiLl] air 


02/26/07 


7.95 


12.56 


25.0 


-L2 44 




















979GWIL7 


Deep 


02/26^17 


S.98 


12.59 


40.0 


-27 41 




















ThlnTQuarlcrZOM | 


'JUOWC-I 


'inGW06 


SbialJour 


0e/J4rti6 


5.41 


10.93 


10.8 


IS 


01 


-U.14 


-O.ttI 


OJIBO 


-L0 590 


-O.OOS 


0.090 


-23 730 


-0.004 


937GW42 


InleimrdiBlf 


0e/J4/06 


5.42 


11.04 


24.0 


-12 96 




















937GW32R 


Deep 


08/14/06 


5.50 


10.95 


34.5 


-2J55 




















900WC-2 


9i7GWI0L 


Sbiallow 


08/14/116 


5.46 


11.51 


10.0 


1 SI 


03 


-15.12 


-0.01/2 


Oil 20 


-15 130 


-0.001 


0.050 


-30 250 


-0.002 


9i7GWI02 


1 n leimeiLl] ale 


08/14/116 


5.49 


11.69 


25.0 


-L3 3 




















9i7GWI0J 


Deep 


08/1 4/U6 


5.51 


11.56 


40.0 


-2S44 




















900 WC- J 


979GWIL5 


Sbiallour 


08/14/116 


4.19 


12.56 


10.0 


2 56 


00 


- 1 5.00 


0.000 


-1 a50 


-14 970 


(t.124 


-1.850 


-29 970 


(I.0D2 


979GWIL6 


InleimediBlr 


08/14/06 


4.19 


12.56 


25.0 


-12 44 




















^7'>GWIL7 


Deep 


08/14/06 


2.34 


12.59 


40.0 


-27 41 




















SccDiid l^uarler 2006 | 


900WC-I 


937GW06 


StlBlloUr 


05/22/06 


5.86 


10.98 


10.8 


OIS 


-0 19 


-U.14 


0.014 


-0 050 


-L0 590 


tJ05 


-0.240 


-23 730 


tJI« 


937GW42 


fnlennedialr 


05/22/06 


5.67 


11.04 


24.0 


-L2 96 




















937GW32R 


Deep 


05/22/06 


5.62 


10.95 


34.5 


-23 55 




















900'WC-2 


937GWI0L 


Stial]ou< 


05/22/06 


6.58 


11.31 


10.0 


1 SI 


02 


-15.12 


-O.ttI 


-0 210 


- I 5 1 30 


t.OI4 


-0.190 


-30 250 


«J«« 


9?7GWI02 


InleimediBlr 


05/22/06 


6.60 


11.69 


25.0 


-13 3 




















9i7GWI03 


Deep 


05/22AI6 


6.39 


11.56 


40.0 


-2S44 




















900WC-3 


979GWIL5 


StlBlloUr 


05/22/06 


7.99 


12.56 


10.0 


2 56 


-0 05 


-15.00 


O.OtJ 


3. [30 


-14 970 


-0.109 


3.080 


-29 970 


-0.103 


979GWIL6 


InleimediBlr 


05/22/06 


7.94 


12.56 


25.0 


-12 44 




















979GWIL7 


Deep 


05/22/06 


11.07 


12.59 


40.0 


-27 41 




















Fti?ilQuBrlrr2006 | 


900WC-I 


937GW06 


Shallour 


03/06/06 
03/06/06 


6.52 


10.95 


10.8 


OIS 


-0 SO 


-U.14 


0.061 


0.430 


-10 590 


-0.041 


-0.370 


-23 730 


0.010 


937GW42 


InleimediBle 


5.72 


11.114 


24.0 


-12 96 




















937GW32R 


Deep 


03/06/06 


6.15 


10.95 


34.5 


-23 55 




















900WC-2 


937GWI0L 


ShBllour 


03/06/06 


6.48 


11.31 


10.0 


1 SI 


-0 22 


-15.12 


0.019 


-0 200 


-15 130 


t.OI3 


-0.420 


-30 250 


tJI4 


937GWI02 


Inleimedjalr 


03/06/06 


6.26 


11.69 


25.0 


-t33 




















937GWI03 


Deep 


03/06/06 


6.06 


11.56 


40.0 


-2S44 




















900WC-3 


?7?GWIL5 


Stiallour 


03/06/06 


4.81 


12.56 


10.0 


2 56 


-0 02 


-15.00 


O.OtI 


-0 5B0 


-14 970 


tJ39 


-0.600 


-29 970 


t.oio 


979GWIL6 


InleimediBlc 


03/06/06 


4.79 


12.56 


25.0 


-L2 44 




















?7?GWII7 


Deep 


03/06/06 


4.21 


12.59 


40.0 


-27 41 





















Fim nsd Second QwicD ?DD7 



Pajr I <il7 



Dt«ilKi?007 



Tabk A-1-% 
Sdididjcj dI VrrllcalCnillrnlsalH'rll CliScrE 

Bmldlii^^lhOsArra 
Prr&idinDCSji Fi!in{ LMO, Cdlilorn III 



WclL 

CluHlcr 

(WC) 


Well ID 


G laiiiulu'ilci 
Zone 


Datr 


Groundwiler 
EJrviliDn 
{feci PLLWJ 


GiDund 

Surfice 
Elevalion 

(£ecl 
PLLW> 


De[ilh Id 

Sciren 
lA idpalul 
tftcl b^^l 


3 1 rccn 

Mid [ID ml 

ElevallDn ' 

iFeel PLLWJ 


SHbIIdu /InlcmtedlBle 


1 nie rmed iale^DcEp 


ShBUon/Deep 


Difference in 
G niundi^ ale r 

E\e\ titan 
(feci PLLWl 


Difference In 

Screen Mldpalnl 

Elevalicm 

Ifeel PLLWJ 


Vcnicii 
GcadlenI 
(feel/fDDlJ 


Difference in 
G ro u ndu' ale r 

ElevBliDn 
(feel PLLW) 


Difference in 

Screen MIdpoinl 

Elevilicin 

(feel PLLWl 


Venical 

Gradienl 
{feeUfOcHj 


DiCCerence in 
Groundwjler 

Elevalion 
(feel PLLWJ 


Difference in 

Screen Midpninl 

E lev H lion 

ffeei PLLWl 


Vemcal 

Gradirnl 
{feeUfWll 


Fourlb Quarter 2CiCi5 | 


yuuwc-i 


■^iTGWOfi 


Sbidllov^ 


1 1/2MI5 


4 75 


10.95 


10.8 


IS 


-0 31 


-13.14 


0.014 


o.iro 


-L0 590 


-0.010 


-0.200 


-23 730 


a.oo»i 


9?7GW42 


1 n lenfied] air 


1I/25/U5 


4.44 


11.04 


24.0 


-L2 96 




















9J7GW32R 


Deep 


]II2S>05 


4.55 


10.95 


34.5 


-23 55 




















90C'WC-2 


937GWI0I 


StlBlloUr 


ll/25rti5 


4.79 


11.51 


10.0 


i 31 


-0 19 


-15.12 


0.01 J 


OJIEO 


-15 130 


-0.005 


-0.1 10 


-30 250 


t.0«4 


937GWI02 


InleimrdiBlc 


ll/25rti5 


4.60 


11.69 


25.0 


-U3 




















937GWI03 


Deep 


11/25/05 


4.6e 


11.56 


40.0 


-23 44 




















900WC-3 


979GWIL5 


Sbiallour 


1 ll2Sm5 


4.01 


12.56 


10.0 


2 56 


-0 05 


-15.00 


0.003 


-O04O 


-14 970 


0.003 


-0.090 


-29 970 


coo 3 


979GWIL6 


1 n leimciLl] air 


1I/25/U5 


3.96 


12.56 


25.0 


-L2 44 




















979GWIL7 


Deep 


11/23/05 


3.92 


12.59 


40.0 


-27 41 




















ThlriTQuHrlcrlOOS 


4U0WC-I 


'Ji7GW06 


Sbiallour 


0a/29H\5 


5.49 


10.95 


10.8 


D 13 


07 


-13.14 


-O.ftfrS 


-0 LOO 


-10 590 


(i.OOIf 


-0.030 


-23 730 


(1.041 


937GW42 


InleimrdiBlr 


0&I29I05 


5.56 


11.04 


24.0 


-L2 96 




















937GW32R 


Deep 


0SI29I05 


5.46 


10.95 


34.5 


-23 55 




















90QWC-2 


937GWI0L 


StlBl]OU< 


0&l29nJ5 


5.53 


11.31 


10.0 


1 31 


04 


-15.12 


-0.4tJ 


0JI60 


-15 130 


-«ja4 


0.100 


-30 250 


-0.003 


937GWI02 


InleimediBlc 


0&I29I05 


5.57 


11.69 


25.0 


-133 




















937G*I03 


Deep 


0&I29I05 


5.63 


11.56 


40.0 


-23 44 




















90QWC-3 


979GWII5 


SbiBllour 


0&l29nJ5 


4.30 


12.56 


10.0 


2 56 


00 


-15.00 


O.OH 


-0 450 


-L4 970 


t.030 


-0.450 


-29 970 


tJI5 


?7?GWIL6 


InleimrdiBlc 


0&I29I05 


4.30 


12.56 


25.0 


-12 44 




















979GWIL7 


Deep 


0SI29n:t5 


3.85 


12 59 


40.0 


-27 41 




















Second QuarlEr 2005 


900WC-I 


937GWU6 


StlBl]DU< 


05/23/05 


5.47 


10.93 


10.8 


13 


05 


-13.14 


-O.HI 


-0 230 


-L0 590 


t.OU 


-0.180 


-23 730 


|i.00» 


937GW42 


InleimrdiBlr 


05/23/05 


5.52 


11.04 


24.0 


-L2 96 




















937GW32R 


Deep 


05/23/05 


5.29 


10.95 


34.5 


-23 55 




















900WC-2 


937GWI0L 


Stiallour 


05/23/05 


5.47 


11.51 


10.0 


1 31 


-0 03 


-15.12 


0.019 


0J)90 


-15 130 


-a .406 


0.010 


-30 250 


t.OOO 


937GWI02 


InleimrdiBlr 


05/23/05 


5.39 


11.69 


25.0 


-E3 3 




















937GWI03 


Deep 


05/23^15 


5.48 


11.56 


40.0 


-23 44 




















900 WC- J 


979GWIL5 
?7?GWIL6 


Sbiallour 
InleimrdiBlr 


05l2->m5 


4.29 


12.56 


10.0 


2 56 


00 


- 1 5.00 


O.ODCi 


-0"(Ki 


-L4 970 


(1.047 


-0.700 


-29 970 


(1.023 


05/23/05 


4.29 


12.56 


25.0 


-12 44 




















979GWIL7 


Deep 


05/23^15 


3.59 


12.59 


40.0 


-27 41 




















FtrAl QuBi-Irr 2005 | 


900WC-I 


937GW06 


Shal1ou< 


03/J4/D5 


6.03 


10.95 


10.8 


13 


-0 19 


-13.14 


0.014 


0.220 


-10 590 


-OJll 


0.030 


-23 730 


-0.001 


937GW42 


InleimrdiBlr 


03/14^15 


5.84 


11.04 


24.0 


-L2 96 




















937GW32R 


Deep 


03/14/05 


6.06 


10.95 


34.5 


-23 55 




















900'WC-2 


937GWI0L 


Shal1ou< 


03/14^15 


6.05 


11.51 


10.0 


1 31 


-013 


-15.12 


0.0 IE 


0J>70 


-1 5 1 30 


-0.005 


-0.1 10 


-30 250 


t.0«4 


937GWI02 


InleimrdiBlr 


03/14^15 


5.87 


11.69 


25.0 


-13 3 




















937GWI03 


Deep 


03/14/05 


5.94 


11.56 


40.0 


-23 44 




















900WC-3 


979GWIL5 


ShBllour 


03/]4rti5 


4.50 


12.56 


10.0 


2 56 


-0 05 


-15.00 


o.ots 


-0120 


-14 970 


t.008 


-0.170 


-29 970 


tJ«« 


979GWIL6 


InleimediBlr 


03/14^15 


4 45 

1 


12.56 


25.0 


-12 44 




















'I7'IGV\IL7 


Deep 


03/1 4/U5 


4 1 ■ 


12.59 


40.0 


-:74l 













Fim n hI Scccnil Qw irn ?DD7 



Pajir?<]l7 



Dt«ilKi?007 



Tabk A-1-% 
Sdididjcj dI VrrllcalCnillrnlsalH'rll CliScrE 

Bmldlii^^lhOsArra 
Prr&idinDCSji Fi!in{ LMO, Cdlilorn III 



WclL 

CluHlcr 

(WC) 


Well ID 


G laiiiulu'ilci 
Zone 


Datf 


Groundwiler 
EJfviliDn 
{feci PLLWJ 


GiDund 

Surfice 
Elevalion 

(£ecl 
PLLW> 


De[ilh Id 

Sciren 
lA idpaiul 


3 1 rccn 

Midpoinl 

Elevalion ' 

iFeel PLLWJ 


SHbIIdu /InlcmtedlBle 


1 nie rmed iale^DcEp 


ShBllon/Deep 


Difference in 
G niundi^ ale r 

E\ey titan 
(feci PLLWl 


Difference in 

Screen Midpainl 

Elevalicm 

Ifeel PLLWJ 


Vcnicii 
GradienI 
Ifeel/foolJ 


Difference in 
G ro u ndu' ale r 

E leva Hon 
f£erl PLLW) 


Difference in 

Screen Midpoinl 

Elevilion 

(feel PLLWl 


Venical 

GradLenI 
{fceUfOcfO 


DiCCerence in 
Groundv/aler 

Elevalion 
f£ecl PLLW^ 


Difference in 

Screen Midpoinl 

E lev H lion 

ffeel PLLWl 


Venical 

Gradirnl 
{freUfWll 


Fourlb Quarter 2CiCi4 


91K)WC-I 


■JiTGWOfi 


Sbiallow 


1 2/1 MH 


ri.3J 


\0.fi 


lU.U 


IS 


03 


-13.14 


-0.0(1 a 


ly L4U 


-10 590 


-0.013 


0.22J 


-23 730 


-0.009 


9J7GW42 
9nGW32R 


1 n Icmif d] air 


12/13/04 


6.45 


11.04 


24.0 


-L2 96 




















Deep 


12/]3rti4 


6.59 


10.95 


34.5 


-23 55 




















900WC-2 


9J7GWI0L 


Shallour 


12/13/04 


6.46 


11.31 


10.0 


[ 31 


03 


-15.12 


-0>tl 


0JI70 


-15 130 


-ajflf 


0.100 


-30 250 


-0.003 


9J7GWI02 


InleimrdiBlf 


12/13/04 


6.49 


11.69 


25.0 


-E3 3 




















9J7GWI03 


Deep 


J2/13rti4 


6.56 


11.56 


40.0 


-23 44 




















900WC-3 


?7?GWIL5 


Sriallour 


12/13flJ4 


4.72 


12.56 


10.0 


2 56 


oo: 


-15.00 


-O.MI 


-0 540 


-14 970 


t.03« 


-0.520 


-29 970 


tjtn 


?7?GWIL6 


InleimrdiBlr 


12/13flJ4 


4.74 


12.56 


25.0 


-L?44 




















979GWIL7 


Deep 


12/13^14 


4.20 


12.59 


40.0 


-27 41 




















ThlcilQuarlcr»t4 


9(H)WC-I 


9J7GW06 


SbiBllour 


Oe/O^flM 


4.97 


10.93 


lO.S 


13 


-0 02 


-13.14 


O.OtI 


0JI70 


-L0 590 


-tJ07 


0.050 


-23 730 


-0.002 


9J7GW42 


InleimrdiBlc 


Oe/09/04 


4.95 


11.04 


24.0 


-l:96 




















9J7GW32R 


Deep 


08/09/04 


5 "2 


10.95 


34.5 


-23 55 




















900WC-2 


9i7GWI0L 


Stial]ou< 


oe/09/114 


MH 


11. &1 


10.0 


1 31 


03 


-15.12 


-0.ft»9 


0060 


- L 5 1 30 


-0.004 


0.140 


-30 250 


-O.OOf 


937GWI02 


InleimrdiBlf 


oe/o?/04 


5.12 


11.69 


25.0 


-13 3 




















937GWI03 


Deep 


Q8/09/04 


5.1 S 


11.56 


40.0 


-23 44 




















90OWC-3 


97KiW 1 E 5 


ShBlJour 


08/09/04 


3.96 


12.56 


10.0 


2 56 


001 


-15.00 


-O.ttI 


-0 430 


-L4 970 


tStl9 


-0.420 


-29 970 


tJI4 


?7?GWIL6 


InleimrdiBlr 


oe/09/04 


3.97 


12.56 


25.0 


-17 44 




















979GW 1 1 7 


Deep 


oe/09/04 


3.54 


12.59 


40.0 


-27 41 




















^A:['DiiilQuBittrZ004 | 


900WC-I 


937GW06 


Sbiallow 


05/24/114 


4 '7 


10.95 


lO.H 


fi 13 


-0 13 


-13.14 


IMhlCi 


0.030 


-10 590 


-0.003 


-If.lU-l 


-23 730 


(1.004 


937GW42 


InleimrdiBlr 


05/24/04 


4.74 


13.04 


24.0 


-L?96 




















937GW32R 


Deep 


05/24/04 


4.77 


10.95 


34.5 


-23 55 




















900WC-2 


937GWI0I 


Shallow 


05/24/04 


4.98 


11.31 


10.0 


[ 31 


-0 10 


-15.12 


0.»7 


0JJ50 


-15 130 


-tJ<3 


-0.050 


-30 250 


t.OOl 


937GWI02 


Inleimedjalc 


05/24/04 


4.ee 


11.69 


25.0 


-L3 3 




















937GWI03 


Deep 


05/24/04 


4.93 


11.56 


40.0 


-23 44 




















900 WC- J 


979GWII5 


Stiallow 


05/24/04 


4.00 


12.56 


10.0 


2 56 


-0 05 


-15.00 


0.»J 


-1 t90 


-14 970 


•.079 


-1.240 


-29 970 


t.04l 


979GWIL6 


Inleimedialr 


05/24/04 


3.95 


12.56 


25.0 


-L2 44 




















979GWIL7 


Deep 


05/24/04 


2.76 


12.59 


40.0 


-27 41 






















Fim n hI Second Qw irn ?DD7 



Pajr J0I7 



Dt«ilKi?007 



Tabk A-1-% 
Sdididjcj dI VrrllcalCnillrnlsalH'rll CliScrE 

Bmldlii^^lhOsArra 
Prr&idinDCSji Fi!in{ LMO, Cdlilorn III 



WclL 

CluHlizr 

(WC) 


Well ID 


G laiiiulu'ilci 
Zone 


Datf 


Groundwiler 
EJfviliDn 
{feci PLLW) 


GiDund 

Surfice 
Elevalion 

(£ecl 
PLLW> 


De[ilh Id 

Sciren 
lA idpaiul 


3 1 rccn 

Mid[iDi[il 

Elevalion ' 

iFeel PLLWJ 


ShallDU /Intcmtedlale 


1 nie rmed iate^DcEp 


Shallon/Deep 


Difference in 
G niundi^ ale r 

EleviliDn 
(feci PLLWl 


Difference in 

Screen Midpainl 

Elevalicm 

Ifeel PLLWl 


Vcnicii 
GcadienI 
|feel/fool| 


Difference in 
G ro u ndu' ale r 

ElevBliDn 
f£eel PLLW) 


Difference in 

Screen Midpoinl 

Elevilicin 

Cfeel PLLWl 


Venical 

GradLenI 
{fceUfOcfO 


DiCCerence in 
Groundwjler 

Elevalion 
f£ecl PLLW^ 


Difference in 

Screen Midpoinl 

E lev H lion 

ffeel PLLWl 


Venical 

Gradienl 
{fceUfOoll 


ViTsl I^UBi-Irr 2004 


91K)WC-I 


■JiTGWOfi 


Sbiallow 


IJ3rt)5rll4 


5.36 


10.1*5 


10.8 


f\ IS 


-f\ 14 


-13 14 


0.01 1 


0.260 


-10 590 


-0.0 J£ 


0.120 


-23 730 


-0.005 


9J7GW42 


1 n Icmif d] air 


03105104 


5.22 


11.04 


24.0 


-L2 96 




















9J7GW32H 


Deep 


03/03/04 


5.48 


10.95 


34.5 


-23 55 




















900WC-2 


9J7GWI0I 


Shallour 


03/05/04 


5.46 


11.31 


10.0 


[ SI 


-0 03 


-15.12 


O.OIE 


OJMO 


-15 130 


-tJ«3 


0.010 


-30 250 


t.eeo 


9J7GWI02 


InleimrdiBlr 


03/05^14 


5.43 


11.69 


25.0 


-[3 3 




















9J7GWI03 


Deep 


03/0 SflH 


5.47 


11.56 


40.0 


-2S44 




















900WC-3 


?7?GWIL5 


sriBilour 


03/05/04 


4.02 


12.56 


10.0 


2 56 


-oo: 


-15.00 


0.01 1 


-1 4S0 


-14 970 


t.099 


-1.500 


-29 970 


t.090 


?7?GWIL6 


InlemifdiBlr 


03/05^14 


4.00 


12.56 


25.0 


-L?44 




















979GWIL7 


Deep 


03/05^14 


2.52 


12.59 


40.0 


-27 41 




















Fonrtb Quarter 1003 


91K)WC-I 


'li7GW06 


Sbiallour 


12/OlflJ? 


5.20 


10.93 


10.8 


IS 


-0 33 


-13.14 


0.019 


0.160 


-L0 590 


-<JI5 


-0.170 


-23 730 


t.007 


9J7GW42 


InleimrdiBlr 


12/OlrtU 


4.87 


11.04 


24.0 


-l:96 




















9?7GW32R 


Deep 


12/01/n5 


5.03 


10.95 


34.5 


-23 55 




















90C*C-2 


9i7GWI0L 


Shal]ou< 


12/01/Ui 


5.16 


11.51 


10.0 


1 SI 


-0 06 


-15.1? 


0.004 


Oil 20 


- I 5 1 30 


-0.001 


-O.O40 


-30 250 


(1.00 1 


937GWI02 


InleimrdiBlf 


12/01/03 


5.10 


11.69 


25.0 


-E3 3 




















937GWI03 


Deep 


12/01/n5 


5.12 


11.56 


40.0 


-2S44 




















90OWC-3 


97KiW 1 E 5 


ShBlJour 


12/IJ1/U3 


4.60 


12.56 


10.0 


2 56 


-0 01 


-15.00 


O.OtI 


-2 470 


-L4 970 


t.ias 


-2.480 


-29 970 


ft.OSS 


?7?GWIL6 


InleimrdiBlr 


12/01/03 


4.59 


12.56 


25.0 


-L7 44 




















979G'W 1 L " 


Deep 


12/01/0? 


2.12 


12.59 


40.0 


-27 41 




















Third Quarter Ztt3, Ld A lldr | 


900WC-I 


9?7GW06 
937GW42 


Sbiallow 
InleimrdiBlr 


08/11/113 


4.58 


10 '15 


10.8 


fi IS 


-0 31 


-13.14 


0.024 


iHi~i| 


-10 590 


-0.007 


-0.240 


-23 730 


(1.410 


Oe/11/03 


4.27 


11.04 


24.0 


-L?96 




















937GW32R 


Deep 


oe/11/03 


4.34 


10.95 


34.5 


-23 55 




















900WC-2 


937GWI0I 


StiBlloW 


oe/]]rtu 


4.62 


11.31 


10.0 


[ SI 


-0 73 


-15.12 


0.019 


0JI20 


-13 130 


-tJti 


-0.210 


-30 230 


t.0«7 


937GWI02 


Inleimedjalc 


03/11^1 


4.39 


11.69 


25.0 


-L3 3 




















937GWI03 


Deep 


oe/n/03 


4.41 


11.56 


40.0 


-2S44 




















900 WC- J 


979GWIL5 


Stiallow 


oe/iirtu 


3.98 


12.56 


10.0 


2 56 


-0 04 


-15.00 


O.OIJ 


-0410 


-L4 970 


t.027 


-0.450 


-29 970 


t.OIS 


979GWIL6 


InleimediBlr 


oe/ii/D? 


3.94 


12.56 


25.0 


-L2 44 




















979GWIL7 


Deep 


08/1 i/n J 


3.53 


12.59 


40.0 


-27 41 






















Fim n hI Second Qw irn ?DD7 



Pajir4<]l7 



Dt«ilKi?007 



Tabk A-1-% 
Sdididjcj dI VrrllcalCnillrnlsalH'rll CliScrE 

Bmldlii^^lhOsArra 
Prr&idinDCSji Fi!in{ LMO, Cdlilorn III 



WclL 

CluHlcr 

(WC) 


Well ID 


G laiiiulu'ilci 
Zone 


Datf 


Groundwiler 
EJfviliDn 
{feci PLLWJ 


GiDund 

Surfice 
Elevalion 

(£ecl 
PLLW> 


De[ilh Id 

Sciren 
lA idpaiul 


3 1 rccn 

Mid[iDi[il 

Elevalion ' 

iFeel PLLWJ 


SHbIIdu /InlcmtedlBle 


1 nie rmed iale^DcEp 


ShBllon/Deep 


Difference in 
G niundi^ ale r 

EleviliDn 
(feci PLLWl 


Difference in 

Screen Midpainl 

Elevalicm 

Ifeel PLLWl 


Vcnicil 
GcadienI 
|feel/fool| 


Difference in 
G ro u ndu' ale r 

ElevBliDn 
ffeel PLLW) 


Difference in 

Screen Midpoinl 

Elevilicin 

(feel PLLWl 


Venical 

GradLenI 
{fceUfOcfO 


DiCCerence in 
G rci u ndv/ aler 

ElevBliDn 
ffeel PLLW^ 


Difference in 

Screen Midpoinl 

E Levi lion 

(feci PLLWl 


Vcmcal 

Gradienl 
{fceUfOoll 


SccDiid l^uarlrr 2003,I.Dn Tide 


yuowc-i 


■JiTGWOfi 


Sbiallov^ 


ll6/02rtU 


4.55 


\0.fi 


10.8 


IS 


-0 04 


-13.14 


0.003 


-0 220 


-10 590 


0.0 Zl 


-lf.260 


-23 730 


0.011 


9J7GW42 


1 n Icmif d] ale 


4.51 


11.04 


24.0 


-L2 96 




















9J7GW32H 


Deep 


06/02rtU 


4.29 


10.95 


34.5 


-23 55 




















900WC-2 


937GWI0I 


Shallour 


06/02/03 


4.60 


11.31 


10.0 


[ SI 


-0 23 


-15.12 


0.019 


0JI30 


-13 130 


-tJ«2 


-0.190 


-30 250 


t.ooa 


937GWI02 


InlcimediBlf 


06/02/03 


4.38 


11.69 


25.0 


-E3 3 




















937GWI03 


Deep 


06/02/03 


4.41 


11.56 


40.0 


-2S44 




















900WC-3 


?7?GWIL5 


sriBilour 


06/02/03 


3.77 


12.56 


10.0 


2 56 


-0 03 


-15.00 


O.OIE 


-2 300 


-14 970 


t.l54 


-2.330 


-29 970 


t.078 


?7?GWIL6 


InlcimediBlr 


06/02/03 


3.74 


12.56 


25.0 


-L?44 




















979GWIL7 


Deep 


06/02^13 


1.44 


12.59 


40.0 


-27 41 




















FtrAlQuBrlrr20<3,Law Tkh 


91K)WC-I 


937GW06 


Sbiallour 


03/10flJ3 


4.76 


10.93 


10.8 


IS 


11 


-13.14 


-O.ttB 


-0 130 


-L0 590 


t.011 


-0.020 


-23 730 


t.OOl 


937GW42 


InlcimediBlr 


03/10/03 


4.87 


11.04 


24.0 


-l:96 




















9?7GW32R 


Deep 


03/1 0/n 3 


4.74 


10.95 


34.5 


-23 55 




















900WC-2 


9i7GWIliL 


Shal]ou< 


03/1 0/U 3 


4.72 


11. &1 


10.0 


1 SI 


-0 06 


-15.12 


0.004 


Oil SO 


- L 5 1 30 


-O.OOf 1 


0.020 


-30 250 


-0.001 


937GWI02 


InleimediBlf 


03/10/03 


4.66 


11.69 


25.0 


-13 3 




















937GWI03 


Deep 


03/1 0/n 3 


4.74 


11.56 


40.0 


-2S44 




















90OWC-3 


97KiW 1 E 5 


ShalJour 


03/10/113 


4.29 


12.56 


10.0 


2 56 


00 


-15.00 


O.OH 


-1 310 


-L4 970 


tMU 


-1.310 


-29 970 


t.044 


?7?GWIL6 


InleimediBlr 


03/10/03 


4.29 


12.56 


25.0 


-12 44 




















'J71GVVIL"' 


Deep 


03/1 5/fl3 


2.98 


12.59 


40.0 


-27 41 




















FDiirlliQuBrl<:r2CiCi2, LoA lldr | 


900WC-I 


9?7GW06 


StialJour 


12/02^12 


4.92 


10.95 


10.8 


{lis 


-0 36 


-13.14 


0.017 


-O06O 


-L0 590 


t.ooa 


-0.420 


-23 730 


t.OI8 


937GW42 


InleimediBlr 


12/02/02 


4.56 


13.04 


24.0 


-L2 96 




















937GW32R 


Deep 


12/02/02 


4.5 


10.95 


34.5 


-23 55 




















900WC-2 


9i7GWI0L 


Sbiallow 


1 2/02/112 


4.43 


11.51 


10.0 


1 SI 


-0 34 


-15.12 


0.022 


OdJ'i 


-[5 1 30 


-0.001 


-0.320 


-30 250 


0.0 II 


9J7GWI02 


Inleimediale 


12/02^12 


4.59 


11.69 


25.0 


-13 3 




















9?7GWI03 


Deep 


12/02^12 


4.61 


11.56 


40.0 


-2S44 




















90OWC-3 


?7?GWIL5 


ShBllou< 


12/02/02 


4.33 


12.56 


10.0 


2 56 


-0 04 


-15.00 


o.ots 


-1 2B0 


-14 970 


t.OH 


-1.320 


-29 970 


tJ44 


?7?GWIL6 


InleimediBlr 


12/02/02 


4.29 


12.56 


25.0 


-12 44 




















979GWIL7 


Deep 


J 2/02/02 


3.01 


12.59 


40.0 


-27 41 





















Fim nsd Second QwicD ?DD7 



PaarSon 



Dt«ilKi?007 



Tabk A-1-% 
Sdididjcj dI VrrllcalCnillrnlsalH'rll CliScrE 

Bmldlii^^lhOsArra 
Prr&id in [tC S Ji Fi!in{ LMO, CdLilorn III 



Well 

CluHlizr 

(WC) 


Well ID 


G lanndu'ilci 
Zone 


Datf 


Groundwiler 
EJfvilLDn 
{feci PLLWJ 


GiDund 

Surfice 
Elevalion 

(£ecl 
PLLW> 


De[ilh lo 

ScTreii 
lA idpalul 
f£ccl b^^l 


3 1 rccn 

MidpoinL 

Elevalion ' 

iFeel PLLWJ 


SHbIIdu /InlcrmedlBle 


1 nie rmed iale^DcEp 


ShBllon/Deep 


Difference in 
G niundi^ ale r 

E\ey titan 
(feci PLLWl 


Difference in 

Screen Midpainl 

Elevalicm 

Ifeel PLLWl 


Vcnicil 
GcadienI 
(feel/fool 1 


Difference in 
G ro u ndu' ale r 

E lev B Hon 
f£eel PLLW) 


Difference in 

Screen Midpoinl 

Elevilicin 

Cfeel PLLWl 


Venical 

GradLenI 
{fceUfOcHj 


DiCCerence in 
Grdundwjler 

Elevalion 
(£eel PLLWJ 


Difference in 

Screen Midpoinl 

E leva lion 

ffeel PLLWl 


Venical 

Gradienl 
{fceUfOolJ 


Third Qudrkr 2CICIZ, Ld^ lldr | 


91K)WC-I 


■JiTGWOfi 


SbiHllour 


UH/ZbrU: 


4.38 


10.95 


10.8 


IS 


-0 03 


-13.14 


O.OtI 


-0 120 


-10 590 


t.OII 


-0.150 


-23 730 


t.ooa 


9J7GW42 


InlcmifdiBlr 


Oe/26/02 


4.35 


11.04 


24.0 


-L2 96 




















9J7GW32R 


Deep 


0&I26I02 


4.23 


10.95 


34.5 


-23 55 




















900WC-2 


9?7GWI0L 


Shallow 


08/2firti2 


4.35 


11.51 


10.0 


1 51 


-013 


-15.12 


O.OOP 


OJMO 


-15 130 


-0.003 


-0.090 


-30 250 


0.003 


'*i7GWI02 


L n Icmif d] Ble 


08/26/02 


4.22 


11.69 


25.0 


-133 




















9J7GWI03 


Deep 


Oe/26/02 


4.26 


11.56 


40.0 


-25 44 




















900WC-3 


979GWIL5 


StlBlloW 


Oe/26/02 


3.65 


12.56 


10.0 


2 56 


-oo: 


-15.00 


0.»l 


-1 290 


-14 970 


t.09t 


-1.310 


-29 970 


t.«44 


979GWIL6 


InleimediBlf 


0e/26rti2 


3.63 


12.56 


25.0 


-L2 44 




















979GWIL7 


Deep 


Oe/26/02 


2.34 


12.59 


40.0 


-27 41 




















Sc»BdQuarlrr2002,I.DH lUe 


900*C-I 


9i7GW0(i 


Sbiallow 


05/25^12 


4.38 


10.93 


10.8 


15 


-0 26 


-13.14 


0.0» 


OJIIO 


-10 590 


-«J«1 


-0.250 


-23 730 


0.0 II 


9J7GW42 


InlemifdiBlf 


05/25/02 


4.12 


11.04 


24.0 


-L?96 




















9?7GW.12R 


Deep 


05/2 5/n2 


4.13 


10.95 


34.5 


-23 55 




















90QWC-2 


9i7GWIUL 


Sbiallow 


05/25^12 


4.38 


11.51 


10.0 


1 51 


-0 20 


-15.12 


0.013 


0.0 30 


- 1 5 1 30 


-0.002 


-0.170 


-30 250 


o.ooa 


9J7GWI02 


InlemifdiBlr 


05/25^12 


4.18 


11.69 


25.0 


-13 3 




















9?7GWI0J 


Deep 


05/25/112 


4.21 


11.56 


40.0 


-25 44 




















900WC-3 


?7?GWIL5 


SbiBllow 


05/25/112 


3.81 


12.56 


10.0 


2 56 


-Q03 


-15.00 


O.OBI 


-0 550 


-14 970 


0.037 


-0.580 


-29 970 


t.019 


979GWIL6 


InleimediBlr 


05/25^12 


3.78 


12.56 


25.0 


-L2 44 




















979GWIL7 


Deep 


05/23/02 


3.23 


12.59 


40.0 


-27 41 





















Fim n hI Second Qw irn ?DD7 



Pajirri<]l7 



Dt«ilKi?007 



Tabk A-1-% 
Sdididjcj dI VrrllcalCnillrnlsalH'rll CliScrE 

Bmldlii^^lhOsArra 
Prr&id in [tC S Ji Fi!in{ LMO, CdLilorn III 



Well 

CluHlizr 

(WC) 


Well ID 


G lanndu'ilci 
Zone 


DBtf 


Groundwiler 
EJfvilLDn 
{feci PLLWJ 


GiDund 

Surfice 
ElevBlion 

(£ecl 
PLLW> 


De[ilh lo 

ScTreii 
lA idpaiul 


3 1 rccn 

MidpoinL 

Elevalion ' 

iFeel PLLWJ 


SHbIIdu /InlcmtedlBle 


1 nie rmed iale^DcEp 


ShBllon/Deep 


Difference in 
G niundi^ ale r 

E\ey titan 
(feci PLLWl 


Difference in 

Screen Midpainl 

Elevalicm 

Ifeel PLLWJ 


Vcnicil 
GcadienI 
(feel/fool J 


Difference in 
G ro u ndu' ale r 

E lev B Hon 
ffeel PLLW) 


Difference in 

Screen Midpoinl 

Elevilicin 

Cfeel PLLWl 


Venical 

Gradienl 
{fceUfOcHj 


DiCCerence in 
Grdundwjler 

Elevalinn 
ffeel PLLWJ 


Difference in 

Screen Midpninl 

E leva lion 

ffeel PLLWl 


Vemcal 

Gradienl 
{fceUfOolJ 


FtrKi I^UBi-Irr 2002h l.un Tide | 


91K)WC-I 


■JiTGWOfi 


SbiHllour 


IJ.1/U4AI: 


5.12 


10.95 


lO.S 


IS 


-0 19 


-U.14 


0.014 


-0 020 


-10 590 


t.OOl 


-0.210 


-23 730 


t.009 


9J7GW42 


InlcmifdiBlr 


03/04/02 


4.93 


11.04 


24.0 


-L?96 




















9J7GW32R 


Deep 


03/04^12 


4.91 


10.95 


34.5 


-23 55 




















900WC-2 


9?7GWI0L 


Sbiallow 


03/04^12 


5.00 


11. SI 


10.0 


1 SI 


-0 II 


-15.12 


0.007 


OJIBO 


-15 130 


-0.005 


-0.030 


-30 250 


0.001 


9i7GWI02 


L n Icmif d] Ble 


03/04/02 


4.89 


11.69 


25.0 


-133 




















9J7GWI03 


Deep 


03/04^12 


4.97 


11.56 


40.0 


-2S44 




















900WC-3 


?7?GWIL5 


StlBll0U< 


03/04/02 


4.61 


12.56 


10.0 


2 56 


-0 01 


-15.00 


0.01 1 


-1 370 


-14 970 


t.091 


-I.3B0 


-29 970 


t.04« 


979GWIL6 


InleimediBlf 


03/04^12 


4.60 


12.56 


25.0 


-L2 44 




















979GWIL7 


Deep 


03/04/02 


3.23 


12.59 


40.0 


-27 41 





















hcl FLL A - frcl jbovc PiuiliIid Ij^w/ti LHh\- A'aLc r i c a lca] djlum 

b^s- lielo^' ground sirliice 

I - G icni dJi^ :iJ L'r clev jJ lODik jre prmeDled in Table A- 1-4. 

2 -Tke screen muljuml elev ji iod<v jre cdic u Lucd bv 'lulHniLiLD^ I he dcf^k lollic nci'ef d Diid[uinl Eium I h e ° nil n J sn d'dce ele-aion fMoiiiEODiL'iy Wjisnn, 19''9ik 
3- Veilicj] g nid leiil^ jre e jIci l:iJ eJ by dividiif i lie veil icjI Jific ivdcl' in ^1"° d^'* ^1 i-'r elev Jl loaik heli^ eea I ''d jdjdic dI hi'e I I:^ <c reeaeJ m diCfereiiE vcnicdl loc j icms i^ il hii I ke -ivmcr- 
bcanng zone b> Ike I'eniciil diTfcreiee be! ipecac lie Diidpi>inl e lei'!U lois of llie I i^o ^^ ell «: i^eai^ IT jble ^|. Tke vjlne for I h e 'ill jlli>'« er >« ell issilKriclcJ fn^mlkiil i>f i lie d eeper i^ ell 
\ riiivilive vjlue I nd Lc Jl eiv J d4i'« D 4'!inl ve n icdl ^ nd ic nl 'ihile j legiilive n idi ber mdicdl es iin api«did venical gntdienc For i he fiuii Dd'« Jler jnd h reei Diidjviil ele-ainns. ilie 
dbi>liil e d ifCereac e beLwecn I he elevjIiDO'kiiid depllis Jivculciljled 



Fim nsd Second QwicD ?DD7 



Pjflc7Dl7 



Dt«ilKi?007 



San Fratictico Bay 




^5D 



150 Foal 



LEGEND 

fr 937GWQB 3luUt™<iTDiiiiil*jilcrMoinlojing Well 

■$■ &37GW43 InlcDiKdiiilcOjiiiiirnl'raKrMDiiilijrnig Wcl 

A &3TGW1D3 Ucqi Groimdwaia- ^tDnllo^i^E *cll 

^ CGGWQI AdiJiraiiaiiidyAroialuUtiwGmiiiJidwaLcr Well 



I'opo E^jphif Coifltmr 
^^:ollSlllr InLcmil 111 til 



U£ 



Uli I Id lui^ ^md Numbo' 



HnJJiTonal DflIuiii'NAD27, CASlBKPIfiPHiCH'uidLuV-iZftiLi.i, fm 
Van^l DiHun jlopop apli>l Norti Aimi^ii Vf ilk^al Damm, NAVD ■"■ 



BUILDING 900? AREA 
SITE PLAN 



'n«adwell&Rolk> 




Presidio Trust 

34 Graham Slreel 

P Bi» 29052 

San Francisco, CA 

94129-0052 

415/551-5300 

lax 415/561-5315 

OclobBr2007 

FIGURE A-1-1 



150 F&fll 



San Francisco Bo]' 



Tapajpuph [[ ll'4niliiiir 
{CdJilQur hlciViil lOflj 

Ekiiildiiif and Nuiuba' 




LEGEND 

% 537GWDE SluilLii*-Gr[iLiiid*3l^TMiniftiJingWdL 
5 67 F'riiniflii' ?00 V Or4iii|idwjlcr [JcvJian 

V CGGWQ1 AdiiUcnlSliidyArciSliaLLiiwGiDinidwiilcrWcLL 

NM NiiL Moiiurcil Well ^pjinivcd fiir rcmnvjiL fium 

The p-nundw^La- miiniluniip prii|f rjin pnnr In ihc 
SL-tmdlJiunia-JOW 

■^537GW^^ hlcnnrduilc GninndftJiLiJ Muni Lnmi]! WriL 
A937GV%'1D3 Deqi GmUJidwarra-MciiiilcinnG Well 



AppniianiJilc [JiTHrliuTi a f 
duinii]*jiLi.T h'lii* 

Gmini dwnlcr Cunlaiir 
{ConlDLir EnlcjViiL 05 fll 



NuHs 

GibiindwfiH:! ilik'^icuL iOa tollicHd on lb FibnLir> 2007- 

MohHcuijie iiilli in BOLD ivacus^d m pouni^iala naOounng 

Pcvaion cpf ivcll U7GW07 is ^tprcainmE hIih D dmiflff Id Icpp 
inp 

t{Mi?o]Hfll DbIhhlNADIT, CASlBlL PIhil CowdnaKi , Zan J , fed 
VnaTnal Dfllums'teioLiiiJwBUilPnadioLoma Lou Wain <fl PLLW) 
4lD|ȣ]qilL>^\unhAniaifditVLilfAl LUIinLN^VDflH 



BUILDING 9 DOS AREA 

Z6 FEBRUARY ZDD7 

GROUNDWATER ELEVATION MAP 

SHALLOW ZONE 



TVeadwell&Rolk> 



Presidio Trust 

34 Graham Slresl 

P Bd:< 29D52 

San Francisco, CA 

94129-0052 

41 &56 1-5300 

fa:< 415i'561-5315 

□clDbBr2007 

FIGURE A-1-2 



Siin Frtmcisco Bn\' 



LEGEND 

■^ 937GW^2 In LimiL'd iLiLi: 1 JTiiujid'^ Jlt Mum Lutiji]: WcL 
^2f FcbniJiii' ?00 V Gruundwulcr EIIcvlHiiiii 

fr 937GWD6 MifllbwCrnuiidwjncr Minilujing'\cLL 

A 937GW1D3 Dap GiuimdwfllcrMuniliiniiEU'cLL 



AppnuinuLc [>ira.liiiTi uf 
GiDim liw^L;:! I' liiw 

Giuimd^iilcr CunlDiir 
iCanlcmr hlcjViiL 5 01 



Topagnijili IE Cnnltmr 




15D FmI 



Oioitndiislu [li^Don nfem collcclrd on 26 F4:bnia> 20D7. 

N4biiilojin£ ivcl Is in BOLD ivoc used di grcpitndiislu conlbunng 

ItenToiLlfl] Euiiim KAD27, CASSIA PlziHCoafHtDLBl:s,ZHn!4 J, &:{! 
Vandal DfiHims: jfjoimdi^'alal Pjh-i nf lo Lcutr Lcii' WbIlj <fl PLLW;i 
Jlor'iSlflpli>lNtt-fli AiinaKaiiVfrliifll rJamiii, N'AVDH 



BUILDING 9 DOS AREA 

26 FEBRUARY ZDD7 

GROUNDWATER ELEVATION MAP 

INTERMEDIATE ZONE 



Treadwell&Rollo 



Presidio Trust 

34 Graham Slreel 

P Bd:< 29D52 

San Francisco, CA 

94129-0052 

4'f 5/56 -I -5300 

fa]< 4-|5'561-5315 

OclDbBr2007 

FIGURE A-1-3 



Siin Frunceco Bm' 




150 



15D FddI 



LEGEND 

A &3TGW1D3 iJccp Grnundw^lia- NliiniftiJing Well 

5 43 E''chriiiui' 3JU6 Grn imdwiilcr ELi:^Bliun 

\ 937GWM ShnllawGiDimdw^lcrMiniLTurpa^'^ll 

^ &a?GW32 lnlc|incdLLilcGiuinidv.fllcrMiniiliinng Well 



Apjirux inuLi: OircLliim u f 
Ijmujid JiiL;:r I'luw 

Griiund *jilij Cnnlour 
iCanliiurlnlcusL 5 ill 

TapDEiaphiL Cnnlii lit 
iCunliiur [incr,'Lil fO ill 



9^ 



EkliiLdqij; iiiid NLiiiib4:r 



Kelts' 

GroiDbdw^Ej { k^'^ibJk dOB collidtdHnk 26 E-fbnioy 2007 

blnnbrUmikg iiflU in BOLD IVH31 ustd ui fjoundmla Goiiloiinu£. 

ItejiaatQ] D£IiiiilNAD27, CA5MI: Hmr CDddnfil:^ , Zcnc 3, IJirl 
VnaTnal Dfiliims' (EH^kdi^fiHil Piradio Lnum LnJwWaHjJfL PLLWj 
<lopop^th>lNojlliAiiu]ihBiiVfn^fll Daluii, NAVDflH 



BUILDING 900s AREA 

Z6 FEBRUARY Z0D7 

GROUNDWATER ELEVATION MAP 

DEEP ZONE 



TVeadwell&Rollo 




Presidio Trust 

34 Graham SIreel 

P Bd:< 29D52 

San Francisco, CA 

94129-0052 

41 5i'56 1-5300 

fa:< 415i'561-5315 

OclDbBr2007 

FIGURE A- 1-4 



979GW113 


qi-ZDD7 




TCE 


<0 5 




Ers 1,2- DCE 


OH J^ 




Irani, 1,2- DCE 


<{i5 




Vinyl ChlardB 


':{i5 





979GW1I 
TCE 

ci!,1,?-IX;E 
Iranb1,2-DCE 
Vinyl CIikindB 



qi-2DD7 
'0 5 
<{! 5 
<{i5 
<□ 5 



,Sin Fninciifo 8a\' 



LEGEND 
i GGGWCI 




150 Fflfll 



Shflllaw Grn [md *alcr Mun i lining WcU 

AJ|jiccin Sh^iLliiw rnn [nid*alcr Sliidy Area 
Mini ilinui]! WcU 



9S7GW^^ tnlcnncjiLLilc Grniniiiw flier Mini I Imuig WcLL 
A 937GW1[H' [lMiiGiuinij]wflteMtiiiiliinii|i WcLL 



Topagiaphii. Cnnltmr 
|CcniBiiirliiliM\TiL 10(11 



Builiiiig fliid Numbn 



Nnlis 

UuiJiing 9ll0s Arcfl mun ilining wi^Lls wim: only ichrd ul cd U 
be iiinip led iiurnig Uii: f'jW Q iiiuler ?00'/ pfliMJiid-oiLe Lii 
Die priipoij^d pUn . 

GiuiniiiwflliJ iMiiLcnlrflliini dfllii in |i^L - miiju^ rams per Lilfr 

CLEANUP LEVIJ.5 

TC£-TriclilDniel]ii.'ni:-SI |ig/L 
CIS \J-tX:fi-iL\£ l,?-[JicliLiiTuel]iene- I40,00U |ig/L 
Irani l,?-E>Cf -Irjni I,? Uii-hLiniielhine- 140,000 |l|^L 
VinyLCIiLtinde-53i |i]^L 

DU-SLindDupLii^e 

CL -QuflLil^'amlriilUiipLitJe 

Hnnzimul t>aliun. NAl>?7, CA Slnle PbmeCiiindinJeg, 
Znni: X frcl 

VcjIiijL Dfllum {liipagraphi'l NinUi Amenr,jn Vejlir,LiL 
Dfllrni, NAVtHilS 



BUILDING 900s AREA 

ZDD7 CHEMICAL CONCENTRATION MAP 

TCE, DCE, AND VINYL CHLORIDE IN 

SHALLOW GROUNDWATER 



Ti^adwell&Rollo 



Presidio Trust 

34 Graham Slreel 

P Bi» 29052 

San Francisco, CA 

94129-DD52 

415/551 -53D0 

fax 415/561-5315 

OclobBr20l)7 

FIGURE A-1-5 




L. 



Batlory 






97aGwn4 qi-?DD7 

TCE 2 

cib IJ-DCE 2 4 

Irani: r2-DCE < 05 

Vinyl Clilof da < 05 



37gGWVI11R 

TCE 

cis r?-DCE 

Bans 1,2- DCE 

WnylChkpidB 



5t] FriBicttco Bay 



979G Willi 


01 -2DD7 


Q1-2DD7-IIJ 




TCE 


'05 


'05 




CI? 1,2- DCE 


37 


3fl J-^ 




Irani: 1,2-IX;E 


22 


34 J- 




Vmyl ChlardB 


'05 


'0 5 





\STaGW111H 

.^575GW112 



D7BGWI1D 


□1-2DD7 




TCE 


'05 




t* 1,2-DCE 


12 




liani, 1,2-IX;E 


'05 




\i^n^ ChJo-ilB 


14 






95DGW1Dt 

TCE 

CM 1,2-DCE 

lians 1,2-DCE 

Vinyl Clilcp Ida 



ttn 



l» 



Tja 



TW 



\ 



-^ 



izra 




5a7GW1!!EW 




337CnV1l77 Q1'Z«7 

TCE <a5 

d5 1,2-DCE 4 1 

Iian5l,2-DCE 34 

Vaiyl CJdaide <Q^ 



H 



150 



150 Feel 



L£GE?fD 

■tfr 937GW4i blanicdiiilcGrnLiiid*3lia-Miniftinng'\i:L 

4 937GWOB ShalLDwGnniiidwdlcrMaiiLlnnn|!U'cll 
A937GWID:' tfrqillmiindwiila-McinLlurPE Well 



lDpiipji]ili [[ Cujilour 
{Cmliiur bliMVflL ■ lU ft) 

BuJidinB jdilI NunibiT 



NdIk 

b m Ld m^ 4lXls Aicji TnaiiiBiniig w:Lls wuc on Ly icbcd iilfid In 
bi: L.iiiT|iLcd dunnglhc Fiiil Qu-ulcr ?00 7 in fl4:iMrdHn:t In 
Ihc priipi^i:d p liin 

Gmundw^Uj uniL43ilr3liiin d jLi in |i]^L - micrapjiiii pu Lilcr 

CLfANLTP LEVELS 

TCt- Trill Liir4tlliciic-Kt |i|^L 
ci£ IJ-EX'E-cis l,?-LHcliLiiriiclliciic-UO,000|iBT. 
Trans I,?-LICE-Iran£l,? th[lilunicllii.'nc-L4'J,000|iB;L 
Vinyl ClilcHidc-S35|i^L 

DU-BLind thipLii^li: 

kcln'lii Tabic 1 1 for diiU qualiricn 

UtiJiziinUl t>aLiini NAI137, CASliUPIiincCunidindli:^, 
Zim^ X ii:cl 

Vcrliui t>aliini {liipupr-ipbyl Nailb AniHitiin VnUcWl 
t>iiliini, NAVtHilB 



BUILDING 900s AREA 

ZDD7 CHEMICAL CONCENTRATION MAP 

TCE, DCE, AND VINYL CHLORIDE IN 

INTERMEDIATE GROUNDWATER 



Ti^adwell&Rollo 



Presidio Trust 

34 Graham Slreel 

P Bi» 29052 

San Francisco, CA 

94129-0052 

415/551-5300 

fax 415/561-5315 

OclobBr2007 

FIGURE A-1-6 



San FriBicttco Bay 



UmLdiii^ ^Did Nuiuba' 




N 



150 FmI 



LEGEND 

A93TGW1Q3 Dfcp GraimdwjilcrMuiiilnniig'^cIl 

4 B3TQWM ShflLlDwGrcniJidwjilcrMiiiiilnTiiiFA^'cLI 

&37GW43 blDnicdiiilcGrnLiiid*3lia- MnmBinnB Well 



lopagTiipliic CimlDur 
{CcBilmir EnlHVflL ■ W ft) 



Nulci 

BuiLdiii]: 900i AiTfl iiniiiiT4irPE "'^'1' "''^ "■ 1^ "^"^ "'""" 
bi: ajnrp 1^ iiujing iJic FiTEl OimrliJ ?007 in imaidiincc In 
The prupitrd pLin 



Gmlmd^^fllfi toncHjIr^lnni li JLj in |i|"'L - miuugmnii piT LiIlt 

CLEANUP LEVELS 

ICE-TnchLamcUicnc-Kl iig/L 
[IS l,?-L>Ct-ci? l,?-[>LcliLtiiucl]icnc- r40,000 iig'L 
buns l,?-[MX-biins I,? LHch Liir4icl]iiaic - 140,0011 iig/L 
Vinyl ChLnridc- 535 |i^L 

HnrizimU D^lum. NAU?7, CA SUIcPLQncCiiiiriiiniili:^, 
?jinE .1, icci 

VcrticflL Djliun. {mjiuprapbyl Nurlh Amcnmi VcibujiL 
EJnlum, NAVt>BS 



BUILDING 9[}0s AREA 

2DD7 CHEMICAL CONCENTRATION MAP 

TCE, DCE, AND VINYL CHLORIDE 

IN DEEP GROUNDWATER 



TVeadwell&Rollo 



Presidio Trust 

34 Graham SIreel 

P Bo:. 290 52 

^m\ Francisco, CA 

94-129-0052 

4-1 5/561 -5300 

fa:. 415/561-53-T5 

□clober 2007 

FIGURE A-1-7 



rirst Quarter 2007 



SUdMraa 
PTCffl'S N[nnb|f 
Racordod By 



MONfTOniNG WELL SAMPLING LOG (Normal, Low Row, and Low Yfetd) 



w 



^i'^i 



S^mplffi) by 









^/-r/-^ 



Wr±L PURGJNG 



tgURGE VOLUMg 



Well (E^ing diBmslsr 

[] J-nch ^ ■l-lpcri Qoiher 

Won Talaf EJppm [TD, rt baltw TOC) ; H^U 
Dflpth Id WfllH- (W«^ (t. bslon Tac) ; f^'^i' 

DEpiri Id fr«t ph jsa (FP, ft. befun tdc) r 

r^fUbar a' bni^DlE >Dlunas t4 As jniiDBcT 

fFUffG£ V"pLr{M5 cm-EumioM_ ^ 



PURCEMETJlPg I 



Llr:|Uid In a I faaiaadUino'a Bo\'\ig [qa'b'iio} 



Bcjrrl>7lv S^B Ceqt^ Size 
S £ 

ID i 

t? 1 



LValarVuPuiTfHTt 



Qhtormal ppum|i <, Type 



PUMP IWTAIIE 



'lorCC 



flf pl" (It) 



IciEIirr 



IVeEbf i^utuiiin LanglH 
TolHl PurijB TTum _ ? ~L r-- - 
FsinatOB Ran 



narfrVDlumerrt 
Purge 



nJa'foB 



^W/- 

''*,/' 



CAICL.'LATGr PI.IGE 'CLUA-IP 



iii:3 



acTuaLP'jReE vchlime 



[GnOllNrJ1VA3'EH PAAAMEIEH MEASUflEMET^TS 



rvng .J^ltfy" .Cf^*';, ^1.^1 t^co 




Tme 



J^=H. 



rf 01 



l(u-( 



Kl'I 



il iiJ 



liiZ. 



IJHI9 V 



pf" 



il 






Vtr 



16- 



2J, 



2^ 



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2=. 



h-N 



3j^ 






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I1.A 



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<^^'t ^^ 



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DRP 



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Ci^iJTiiEr^i 



o/ii^- tur 



'tU"| 



Hi 



il 



dr^-if- 



Oruu.<>i 



or^'-^- 'n 



ComiriBiW^ 



PiDa? hHtHBinngHyiMMai 



Ts6h»f Btli^^ 




WELL SAMPUnU 



□AlinlreiH SanqWd 



[_SAMPLtWG METhaP I 

Pnrglng 

EqLii|»nL«nE Rimp'Tfpa .„,^^^^^^^^^^^^ 

SampiB rinorrt; Ym.'^ i^iiarea aicBtff ijifliysr:; 



-ifn^-y 



/ilil. 



eaiisr-iVpfl 



diiiL 



oiriH 



£iiiil4? Nd. 


aZEail""r '^Vnliirni 


LiiLjLiaKHv 


CDCi* 


??ninEnl& | 


^^^ tu,u( 


1 ill jl^_ L± X 


^^^ 


XI-iH 







^ ^ 1 ** n p^ n^* 


1 


-^ 


1 








s 



OUALITV COhTHOL 3AHPLE3 



Diia>idr Son^lB 1^. 




DupllEBia Sjmpif 



Blank gainqtni 



PifJeafg 3aiT[|ile ^0 



llreaaweHlJ^nonGi 



Jj^ 



riip_ 



F5ll]BBIf 



^dli^ 



Ha. 



Dlhi-r: j 



J , 



MONrrORING WELL SAMPLING LOG (Norma/, Low Flow, and Low YieSd) 

Wb I Area ^JtSi:*'^ Waif Na ^toi^A-.l^'^ 

Pni|?cl Numti gj 7^^^ WaJI Typs j^rvBrncor pEdratifaT rfprliffr 

SsmffedV t.Lo^V^lV 



PeCDtiladSy ^.i/C-t ^-V'W 



Dala ?klo3^ 



WHLL PURGING 



PURGE VOLUME 



PURGE METHOD | 



Weil csEkig dTamsl? 

@ ?-nch n J-lrcli [jOBiflr 

WbJI Toiai Dffp[h (TD, n. iralow rOCJ : l^!v^ 
Deprh In iiValPf [WU ft. bdo« TOej : ^.0~^ 
CwpiCi ret hH ph j» [FP, n. bvhnf TOC) ; 

Mimbn =f bnrp^rE vdIiutik [a to DLirin 
[]a ft NdI ApnlTiablH [jc»l>a 

IFUHGE VOLUME CALCULATION 



UqlridlPdlFDDtfaBllDnDl, 


i 3viin^ [gillonal 


Hurfliflln 


SUb 


CasmgSiza 


Walat VolLiniH.'R 


9 




? 


03 


m 




4. 


JBB 


IJ 




' 


3.73 J 



B^boH'^IfliT'aHagpm? [jOUiar 



■M- 



P\}UV INTA(C£ 



MmrLDfi 



DBri[n{)i] 



nQapQDHiini rfrp\n[nj 

Dlhr^r 



UVdm-CnPsninEa^r] 

Tola "iJfHB Tirti 

FtHchHrpa Rsft 



■^lalHP Vc*ini&Tl 



No. VJ.& 



FUr^eHala £^'^ 



■^fB, 



Ji 



CALCULATED F\]HGE VOLUME 



^^51 



qaa 



iGHOUrjPyjtTEP FARAWETEB HEASUJiEME'riTS' 






ACRJAL PURGE VCLUME 




CflrraTMutt 



Pur^ tiBlEr sUpagEttiEpaaal 



QDiuftvieeI ans^a 



RjUllierH'^V'f CT^M-f^ 



w^L sampling; 



Da^iiB Saiiqitnl '^ g \c'}' ' ^M^ 



I aAMPLING UEIHOD 



PUi^ig 
EqLi^riHnl 

Sample PlIflrEfl 






BnlBr^ Typa 



C4iv 



SAMPLING PRO QRAM 



SUnjlle Nd. 



CanlaifiPf FValurnB 



fiiy 4tV.<'Jgt_ ^-ij 



T-jbi^raHHy 



IJZ. 



COCJ 



Conmena 



L^ 



L ta^.f ;>j 



DtlAUTV CDftTPiPL 5*UPl.Ea 



□upllpatg Sarrplat 




alSBiRUNa. 



PWlHciI* SJmpla Nc 






Trp 



T^E_ 



RS2B1L 



rf3<«ar 



Thii: 



Bljp* SfltnplP^ 



Samciff NU 



MONITORING WELL SAMPLING LOG (Normal, Low Flow, and Low Yield) 

PrattclNcimbtfj- tk^\ WaMTypg gri^nilor QBdracrrun npthpr 

^ . SimpladOy V^/ Daf? "? /j Yh^ "> 



RacorOea 3/ 



_(? 



fpiji 



WELL PURGING 



PURGE VOLUME 



n 



PURGE METHOD 



Well caiinq dlHireier 
O 3-inch [] J rficn Qmicf 

Wsn TaFal Deplfi (TO. It. bcblv TOCJ ■ iV't "1 

Dapthw water (Wi„ rt, below TDCJ i X ^i> 

Dapiri lo ITPB phBH [FP, rtr bdloti TOCl ; 

rjAjinCSr □' bDr?fiDlB 'rpfLinBi la Da jiuni^ 
J^ [] NDi fltflllsabe QOlhsf 



LJqirfrf Fn d I Fi7g[ Svcliiin af d Qniaia 'aHlanal 



^trariDle 3lr» i:.aing 9» 
a J 

10 ( 

1? A 






0f«rTTal Hf ump \ Type 



rillr-ti' 



PUMP rUTAJlE 



ngarlsA 



DepirL (ff) 



PMRQE VOLUME CALCUUXTIOH 

fn[rri:raiuiiinLaigii] 
Talal Purga TTnro ^^^^^^^___ 



^^ 



r> 



^ ' 'iBaraDflam PeMh (11} f * 

0'^"'^ 



-Valer waunilir 



Nu.U^S 



PujgcH 



.<P 2j£; 



4r^ 



■^_ 



TSttHIflJEDPURGfiVGLDUE 



ACTUAL 



FALPUFS 



Wis 



EVUtUWE 



fGflOUWU'-VflrEJIPflfljaWETEJ 
runs f '4r@ '>'' 


1 UEj^SUREME 


HT3 

THipp 1 DO 
l^f> -F 1 iimn.i 


"1 MoSHfTypoW'^ Zf^" - 
So, ^X^AJ ORP Tuitiidlrv 


ddirmnid 


' 




■v"T — 

.'111 IJl 




'1 




'^ 




■ 


f 


^itti biu. 


''^^ 


. LJ T ^y[u>,f 








. 


<5'f / — 


-i^b 


i-L-^ 


i.-i 


rj^ 




51 


DAv;l Oo 


■ 


\ 








I 








1 
















' 














/ 












1 




' 1 
















/ 1 










- 




1 






j 








/ 














1 
















i 






1 


1 








1 






1 1 






Coifirrenrs Pitfg( *valf r Elor^p/dliraMl ^^0Pj|| 1 llllHli i^"N'~- Y| 


:ilhief X^U^A^ 




WELL SAMPLmS | 




J SAMPLltJB METHDD \ 


Dalp/I*nB SanpfEEf lif'"^^ 1 tSi!> I 




Pinqliq ^ 

EqiilpriEnC PUmp'tnn "* 




- IV ^IlB-T^ Cf"'^ [Jllipr 




J:ljit.^uti- 




FilleiBd Sairpta ^ 


mal^iB! 


— -^ 








~ 




1 




1 SAIKPUhC PROGRAM 1 


B 




ShiieIbNo^ f n-oialier ^Ynlrirn- 1 


IjbctaUirv 1 


□™. 1 








4'^T (.l-^T- tr-lo^- ,*^^ i 


-^f 


T-H^ 




1 




^^.L ^"^ 1 


-€+1 




























1 QUAUTV CnNTRCLSAFLlPLES I 




Blank ^'mpH? | 




i:]iK|lml Samulv No. 1 IJujiTcit* Srnila Md. 




Tim 1 S.-ir'nIi? na. 




n 


Tiro 1 






Rfn^^c 






llreadwell&ltolla 


Tjjini(er 






en^wEL-imnraf jm) Gop«ciMi'mI CanH,! 


l£AiV 






H^ar. 


- — 





MONITORING WELL SAMPLING LOG (Normal. Low Row, and Low Y^eid) 



Pfolacr Wum(]af_ 
Reo:<iJciJ By 



mX . ?^ 



im. 



WeJ[ No, 



^^^^« 



P^ 



Smnc^ffd by 



fgMiyiiiir []t>iraciicfi riaugr 
^^ Dare 3A/^7 



WELL PURGING 



PURGE i^'OLUM^ 



PUr^L^E lU^HOD 



Well r^ng dTBrrdbi 

Wan Tolaf DepTh |TD, JL bsloi^ TDC) : . /j_ 

□Bpiri To Irn pliaw (FP, a. bElDi« TOC} :Jr 

MliiriCDE o' taCffJvTB VDlUriHslD ba □[iPjod 

JPJflflE VOLUME CALCUUVTION 



LJquld h d I Fo^ SnaUsn al a BuJng [galnn'^p 



BotsIidIs S\ib 'as4ig SJza 
Q ? 

JO 4 

I? 4 



Walar VilLinB.'Ft 
1.53 

a.2s 



LjLmy Pa'" fl F3»ilcr M/pr 
ytaiUHd linan S gpm) [jafjier 




PUMP INTAICE 






io 



Water toMnnl-flnglfi 
TdIhI Purga TTma 1u f- l ''|^. 

RflOiir^a Raw Jl j«ej 



Wdiar vcaudv^ 



Ma. 'I-M 



FulgjjRalB 



&.1 



V^ 



m 



gaU 

UAQIUIATEDPIJTOE VOLUME 



:^^ 



I SflOUMDWATER PflftAUETER WEASUPgMEJ.TS 



ACTUAL ^UFiag.WXUME 




Qmrmana 



WELL SAMPLING 



r Sj^JjIPUMS rLiEfriOp _ _ I Dwtiri*5*flfl^ 3/g/f"? / ^ZjT 



PurtlnQ 

Equlpmlllt . -. ,- . 

^mple FliEarBil V»i^ 
SUTPUNQ PHDGPAH 



Fiff«rbl Sumple 4i^l^ 



Btfar-T^H 



onar 



I 




aariDlc hu. 



^•^'^6u> T5 






LADralory 



L t ^ iViL^fCf- Lr^-t 



^tl- 



GlUG I* 



:5^ 



CDmrnQflL? 



QUALITT COHTfrOL SAUP^I 



ftirfealq Sariiptg^ 



Bbnk S^iTiDif 



Cfinnaf Saii^ 



WD, 



fmpllcBiB SarrqjB f^L 



llreadwelKJjaino 



3aen[:h No. 



iVfp 



RfPffOlB 



TJiinaler 



3fhflr 



Sir? .'Area 
Proi-i:! NiJJTiDer 



MONJTpBfNG WELL SAMPLfN'G LOG (Normal, Law Plow, and Low Yield) 



^m 



.M. 



^jmfrlfld by 



Will Wo. 



s 



Mj-imr 



IJc'Tri:-^'! 



a 



□Ui?' 




JizZ 



t^-^ 



VVELL PURGING 



ipuq jE V jlu^^e 



PIJRGC MEiirOD 



1 



Wall :esii^ oTsriHlcf 
□ 3-i,ich g| J-jii:H Qoifisr 

Well TafjJ Diplh (TC, TL helcm; TOC) : Qe'^C 

Oepth lo Watir (WL, f[, QhJoih TDC) ; LjI^ t* 

Der"lllorraBprTHBe(FP, ff^beTowTOC): 

^n]mbB^ at bamlnM loiiurnB? Id Db otira^tl 
Os Q P*ir appijibia []Oi(H# 



Liquid fn 


a 1 F\ 


iiTl ?sc liun of 


1 Buring (^ilgo^l 


SnrBhTlP 


^a 


Cd?" J Si^ 


rtffrflfVnlum&Fj 


B 




z 


a.i 


10 




d 


I.BS 


IZ 




L 


,.Z2 






'[/HP INTAJCE 




J^epin (ir^ 
ir aDilnm Oetifi ;:!| 



_K. 



Tom Pijtqa ITma 






PurqtfldiQ 



Nd. 'I^ll 



iGffPtJHDVrjTEH pandMEr&H 1«£ASUHE«EWTS 



\ apJ" 



^M-^ ^1^ 



^5^ 

■ rr 



GAE CLJLA-I:r FLRGE VOLUME 



IMb .0 IJfe 



AtPJALiiUnGc VXLME 



3 



H-lH. TypB _YSi/lt^ci, /fY'^n /i^^^i 



•^ffr 



ITmp 



LilBrsiir 



\ ^^ 



a 



J-iOS I 



f^lC 






pH JJUBI 



Ur / ziQ.r 




JU_ 



2:^ 






to 

fjnipU_ 



M. 



:: 






JL^ 



^ 



T-6J2 



^T^g'^^ 



I6flfl 



1-1 ^3 






^TKHh 



^ 



n 



XI 



/£ 



CunrnEnia 



F/K.k .^A. 



I' 



TBL 



■fi^ 



^ 



■lJL 



^ 



i^iininvrlt 



^Pur^ fiireritangnisOutf [^DrjmnHd cnslB 



JOlfwr 



?-fc^ TftA 



BtlAPUKG UEIHOD 



PutQJig 

EqLilpninl 

Sampis Fll|fl<?d; 






DahfflTrnBBsm 



pfEd 



WfEU- SAMPLIHO 



F<J|a[inJ Svipiv 4ial^'E 



Bailnr-T^B 



^■V-^i^ 



Olhsr 



SAMPUNQ PROOnAM 



^tT&u)\m 



CanI Jiner JJV[Jinie 









cad 



H 



Caminms 



□ UALITY CONTROL SAUPLHS 



Dtg^aW Sarnflrt 




Ql^rk ^rqMt 






Sivnoia Ng. 



rrlp 



FUn^itfl 



iroiatt 



Olhffr 



MONITORING WELL SAMPLING LOG [NarmaJ, Low Flo^y, snd Low YieJd) 



RsccrdBd 5y 



gf^ ^c^G 



It 



^3 



:2L 



Samcl^^br 






m 



CtJ 



Dare 3/z /t 7 



WELL PURGINO 



PURGE VOLUME 



WbFI Tufai DepCli [TO, rLbafcuVTOP' H-'J^ 

Dapth io TVaier {vvu ri, oSoiu TOc) : £.f ^ 
DapIlT io (TPe pliase (Fp, ft, bdoW TOC> ■ 

Nurrcsr or bur^jiTjrB ''□lunHi q og pur^td 
IS^ □ WoL applkiablfl QOlhr-r 

fpypFTpnJKSTciAtcuiJTioM 

W3(er ColEimi LangrJi 



EJqula in 4' foGtSHrjiHiaf i SDndg ^gjllihtsr 



3or°liaH 5:^0 


Ca^rg 


Sits 


Wal' 


frValum^r' 


B 


2 






0.9 


10 


1 






rs9 


la 


^ 






s.si 



I PLTITG^ WETHOO | 

PLDi« Fia* [Jflflil-r \ J"|-pe 

JS^IumiBi QPump^Typ? 

LjMoalPiad 'men 5 ^n] flGmsr 

?[rpjPlNTAr<e J .. f 



'1^ 



U 




Ci]iT=Tisn(s 



Pulifi J/lh-f flD^Of/alEPDHl 



^Dmnynpil otislle 



IMlfL 



g^iu. ^^^ 



WELL SAMPLING 



I _ SArAPI-JriQ JJETHOT 



DdremriB SarrpJpd 'hflh'^ ' >^aO 



purgbq 
Equlptnent 



Y?E^^ F^lter^d SurrpfB Anal/siB: 



^BallBr- T^'pa Vn'Sj^jt * 



E 



oil or 



GAUPUMS PROGRA^jI 



ISjirQle Na 



Cnnlfllnsf l/Vnlume 



^^-3i^^^ . < 



I 6 t\(L V^i ijO^. 




CDC ' 



_lLLi 



CommmlB 



^ yiL ^Wrf 



OUALETY [^QNT^OL SAMPLES 



rjLpiri.jM sjmprgB 



BbhS^ SanpKB 



Crqpjl BamPlP Up. 



_g?jp|li;dlg gjnpla Ha. 






Trte 



adniU^I^O- 



rrlp 



lliiiV 



Traralar 



:inipii 



MONITORING WELL SAMPL/P^G LOG (Normal, Low Flow, and Low Yiefd) 



pg^D/Q'^d 3y 



-Eik 



jjcnli-aciiCTr 



ONur 



ijmtJed 3V 



D3'S J^/XA? 



WE'LL PURGJHG 



PEfRG£ VOlli.WP 



Weif rajBig dTBrrarpr 

WerfTalalDefl[h(TD, il. bproivTOC^ ft-'jfl 
□apThSa'A'aterlWUft belDHiTOC): ^ ^a 
Daptfi io frte ptiaSH jFP, ft Frtlaiv TOCJ j 



PURGE WETHQD 



=1 



LiquiQ rn a 


1 Fnot Sfftlfan ifF. 


■ Sonng (gsnani) 


d^QllOlQ ^\!3 


Cildig 5lr? 


•I^Osr Vflunia.'Fl 


9 




a 


OJ 


rtf 




i 


i.sa 


12 




4 


2-?S 



OrJnrnnl [[1pi;np ^ T-iis 

PUMP IHT/irCE 



.D^usff^^J 




NHfSvDiTi OBuii-trr; 



J PURGE tfOLLTME CALr^ULATJOr^ 

^'^r^r G:;lijnir lengrD 
Tatel Purga Tnno 
etclaripp Rsta 






NO Vo3 



^LOAjIIED PUlTGg tfOLUMS 



j'lrj^nua 



Lgfl_o_urJij>vATEn p^^bj^eteb measubejjentb 



'■§?' 






ACTUAL PURQe VCLLr-IE 



rr^. Wf/j^J, /^^'^/0/Ut«<^ 



Tma 



/ 



Qniliint 



P^- 



it 



o 



Jtlfr 



L 



m. 



Hi' 



TaUp 



DO 



(f 



vT 



77W 



T^M" 



::^ 



7_L 



^H-f [ — • 



i^ 



IM'^ 



JHiff 



HEiiL 



Sp. com 



^?T 



jca 






TurMirv 
FNTUl 



&^Z. 



snu 




QJrrnian[i 



Puiija v/alBr ^r^aUbingal 



QonirrnnEJ analH f ^CfJ^gr Q^flkr- frt-*^ 



WELL SAMPUNG 



I _ SflatPllNG iMETTiOD 



DaTaT^nB SAHipItd 



^UJSLlj}^ 



Equrpmcn[ 



Sompli FfliBrHd; Vps.(^? Fllieieff S^rrpre Anal^a; 



^'i&^^k 



OflW 



SAhlPUHG PROGRAIH 



Ganitlir rf^, 



— a37^A^n 



Canr3ln^> |Vg|;,pi^ _ I Ljlwralorv 



cocir 



6 'fCL V^i Mg^fJ <-^r 



IToruranb 



TiET 



i^rj. A»u-. 



QUALITY CQ^rrHOUSJlUI'lES 



E>uplJ j4(a Samulpi 



Oighal SamfJff Nil 



i 



Du?y:!ilH Sairmlp No 



tireaim«i3J«j|io 



Blank Samp^a 



JJIS 



Sarrols '*>. 



Tng. 



'ra^^ 



JIMi-r^ 



MONfTOniNG W£LL SAMPLING LOG (Normal, Low Flow, and Low Yfsid) 

Sile.'fl™ ^^'^'^l //^^J '''5^1 No. " q j'> f^^i^ gS' 

PrarM NumDsf ^ tf 7> Will Typ5 



RecnnjBd By 



£dmplsd Liy 



I^MDiMflf [jE:ilracni:ii Qohra- 



WiiLL PURGfNG 



PtJflGE VOLUfcTE 



WflJI TtFlaP Daplh ITF^, rt bElsM TOC) : 4^16 

□aplh [g WalBT (WL. (L JieFaiT TtJt:) : U ij t 
DBpEli'j] IrPB phasB (FT, ft. beFmf TQCf : 

fpupQE VDUCTMe caLcif m noH 



LlqUpdinJl FogE Svcriacl al d 


BDfflig 4g.dJDi1sJ 1 


Bnrslvil" 9Izb 


CjVug Sizfl 


WhI' 


*rValumerf' 


B 


a 




□ 9 


ID 


4 




l£9 


IZ 


1 




S£3 



nalfrGalunnLn^ 
Taral PurgB TlmB /S" 
RKhargn RhIb 



'Wawr '/.fliFTwrti 



FUm-lTafB 



, irs'zl 



[VIOirNDV/ATEP PAHflUCTBI UaSUREniEHtS 




klBlSt 



Typa ^^^ flK , ^^ IJU^. 



Timfl / Li'Brsa' 


pH 1 Tamp 

1 ^* 'F 


1 j:io 

1 'm^) 




l-nVh 


rurWfflv 
I^JTU| 


CDmnanB 


,i^zJ, i.,h,i 


I 


1 i 


J ft 








(ifl 1 


J^JT / 1 t 


Jli.i^ 


IJ"! 




US'; -,i 




s 


Wl>2'fl.*S 


r,>W. , it 


\C i 


iT ^ 




1 '?ij- 




'n 


.irv^-i.ii 


[Ol.'^ / 3 (r- 


\on 


n.J^ 




i?T? 




'^ 


(jTi^v j-,tj^ 1 


i^]t ^ -iC 


^c.S 


i^r 




rj4t 




-l 


6^1.. J- 6^ 1 


\.ois , rt- 


1^-6 


jH.y 




n'l^ 




-? nA-^S^-i'7 II 


Lt^Me 1 






(,^ J 






■ 


1 














1 
1 


! 


1 










- 


' 


I 












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i 
















1 












1 


s 


i 








1 


1 


1 






1 


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1 


! 






i 




9 


CcFivntiil? 


PunjE WBtDr^loqualTLECiasal lOTTllTliril 1 ImI* 


t* "VlSniar ^^kr^ 


W^LL SAMPLlr^U 


1 SAUPLINQ MEIHDD | Carsflirta S4npred 
EuEiDinHril ' PUIEO^tiDfl 


Sflfcr-TiTia Ci'^^L.kU- Oftar 




SBmplfl RliFiBil: Yssl^S\ FiRaiTd Sdtngte Analuifr: 








\_> 






SAMPUHG PHDGEIAH 1 




Sdrnpii Hq. 




LdDfcalnrv 


CCC 1 1 CanmanQ 




4tTi-'-U 


/^-^Hw-^i „^^ 


r,^^ 


'^M^ 


+ 


'^ > L >Kt,. 


-"c^-f- 


1 








, 

1 








1 




QUALiTVcrjriTPaL5/^g4P(.EB r 






Bfeifc5ainnk-i 


D^^b^t99v^B^ei 








nranal Samole No. 1 DuplliiJla SarW? 


No. 




TvBB 


Sarrcl" Nd. 






rrto 




1 


Fl&iqlC 




Tn^cMiweit^mDOMA 






TlMBfaf 






imrE 


— ^T.'ii--rji? 


OfhETi 


^-rn 



MONrrORING WELL SAMPLING LOG (Normal, Low Bow, and Low YIeJrf) 

PcoiBcL Numbaf 
Pecprdcd 3/ 






Well Type 



iiP 



SamflEdby 



Lr. 



Dare 



□EliErr 



^/rA' ^ 






WELL PURGING 



piJRGE UOLCWE 



PURGE w^mao 



1 



Q J-Ttli ^5- ■l-lncn QOilrer 

WbJI Tola! npplh jTD- 1. tilo* TOC) r /W'l| 

Dgp[h(nWa[Er(WL,ILtn?FoirTi:)C): l'*/l> 
Dpprir lo free phau (FP, ft. b«loiT TOO? ; 

NutibBr ar burpliDlB vn^ntu !□ bo pvrjsl 
[J3 ^gWol ipolcriilH yOhETT 

fPUftae VDLURai~CflLCUlATioN ~ 



LliiL*! IP a 


1 1 FodE Sflcllan ol 4 


Somg (gailora) 


Bdrnrgld Ks 


Ca^m Sii? 


vvaiarvoiLirTiffrFr 


a 




I 


i].9 


ro 




t 


I^B 


13 




A 


Z32 



QLqui Fit," 
QNnrn-jr 

j||'lBd(iiianSgp>n^ 



[_[Pi[pi|l\TvDe 



d. 



Hi. 



PUMP (NTAKE 



iS ilnrirroD 
I ■*HrBollDin 



DQpUiQQ 
Deplh (Pr> 



VlAHrCafumnLanQili 



WaHi-VDllJpis'll 



Mo/*.»s 



PurQaRala 



.r^^K^. 



1 


pals 


C.*Li:Ul_ArE:UPLPIJie'^LUI.1E 1 


n 


gaa 1 


ACtUjy.PLlPliefJLuMe \ 



ISBpUHDVyA'FEnPAiaieljfcHM&AaUHtHbMH 



uavrr^? 



^A?jM^Wi.,Li Zff,^ M) /J' 




nreaifwewsdflHio 



MONJTOniNG WELL SAIWPLfNG LOG (Normal, Low Flow, and Low Yfsid) 






iH3 



nr 



Sa-npfedby 









3 /.r.^j'l 



Jpu 



WULL PURGING 



pUfiGE UQLUUE 



IjVff I ^u^ dbmrla 

□ i-«ri ■gf jnfnrri Qcm-wr 

WfliI rnF^r Deprh ETf^t rt bHiDLU TDC) : iV'l'l 
DaplhlalVa[sr[WL,ri,li?raTrTDcj: ^ <(i 

Dspf li ai ^E pI'SES fFP, a. beFmv TQC) : 

NurrCarDr \HtrBt\o\o 'olEiinn Id b9 plibdeJ 
^3 - □ NdI AoinfUdblg □Clli»r' 



ILPquld fn a I foot aaeiien a' i 


1 Q«lng [gjlton^r 


BoiBriDla SizB Cadng Srza 


Walsr UiAimeyPl 


a 1 


□J 


IG 1 


irBa 


1 12 4 


J.J3 



J PUliSE meTKop" 

rjLnaiFIn'* 






Jprnul 






PUMP IWTAKE 



^ 



hgiFQD 



^BDlli (ll» 



BNBarftmori QBpfli{;i| 7^ ' 



PUPQEVOLUHB 



CALCUIA 



TIOH 



1.1-T- 



WfltrCoiHTinTn^ii 
TaQi Purga Tkna J | *^ *> 



ftaKrVDiumafri 



Wn. Va& 



pum'Pjn 



i.-;^ 



ifM- 



"055- 



CAi-aOteD PUFreE vo-umT 



7T* 



ACTUflJ. PbUQS VT3I.LIWE 



lOTOUHEWATEP PABAME7EH MEflaUREMElfTS 



Ifelar TypB ^^C V^^'' A;-^" ^f^ ^^^^_^_ 




I gAwnjHo MeiHod 



EDLibnHnI PWII1D-T"t» HailBr-Trpa (k'*\/^ 


Olhar _ 




SarrplB i^lsred: Yflarfl^ RltrniiJ SlkisIb ^iMlV^i^: 








\^ 








SA^^PUfKi pRoaRAAi r 




SeiiidIb hJo. 




1 LBln*BlDrv 


coc* 


Caimnanla 


. 




U/-Hl^-x'- ^•'-S 


, H*-- 


XF^W 




tj )n&'^^x^ 


f t J t- flT^^I . 


;>T 










1 
















QUALrrr cotn hul samples i 




atov SamniBB 1 


Duci|i:bI« SdiiiDlBE 








nlnhaJ Smdt Nd. 


1 [>lidTc]Ib SbfiiljU Nd. 


1 


T.'na , 


^m|!*-r^O. 




-—[ 


IflD 






.... 


niniolB 




weadweH^/HDim 


MBnSlffJ 




erii*Eiiimanrar arO &n»-'rtr''ci' iTflnjti 


iTBir 








^Hicr 


1 



MONITORING WELL SAMPLING LOG (Normal, Low Row. and Low Yield) 

Prn\sf.l Ni]mfier_ ^-V^i ;_ Wrt Typi ^WwiMr QErtrK4iijn noiliBr, 



PeiBnJed ?y 



2a. 



^amplEdby 



Dare 



^]^ 



WELL PURGING 



PU;j1^E VOMTIU^ 



PURGE WETKOD 



Wall at\r\q ttien^or 

3^ j-niich [J fl-rritn Qainar 

Wffn ToFal DBplh n'l', rr. bolaiT TDC; : <^'-7ff 
Dep[liniWarar{WL,lLbaJaffroc^' ^.7h) 
□aplh Ed nga pf'BfiE (FP, ». belaW TOC) r 

Niphsr tf borsriDle 'juIcitib& la be Anosd 
1^ Q hJDl /<4vliEJbla [JQUnr 

fPUHSfi VOLUME Ca.LCiiUlT\<!ilI 

Walar GDlurni Lai^li 
TaBi Pimp TTriiB I? Vv>.'i^. 



LBlUidinar FddE SacCfon of i Soiinp Igirjoira) 



fl 2 

IE 4 



■ as 

2JE 



[^Nom-jl QpunpVTVDff 

[jMudll'led Ijruc S gprnr Qoihcj 



PUUP INTAKE 



IriDorK^ 



DapllitPn 



jNHrBmtaiTi DopOi [H} j 



o-.? 



lAlBjEr 'JcflJiT-ail 



:i 



m.'tifi 



t^. >a g^i' 



cAiiuurEDFunQeraLUfciE 



PlMQtRBU 



ii^S 



CL 



■ F 



-"iTTc 



gsta 



ACtUflLPUflGE iiatUMg 



GROUHDWATEH PAHA METER UlErtS UREWENTS 



i.lelflr Trp^ _^l_f^/lt"L / ^^fy-f^ 



Tine f UlffSdr 
QbHi^s 


PH 


f^n 


j:io 


Sp.CDND 


ORP 


1 TiDbidir^' 


r^^ GnrnriBnlE 


mtf / ri.tJ 


*,0J 


K.-/ 




foot 




1^-1 




i^rs r y. ot 


^l/i 


1^7 1 - 


PI 


-^ 


^ 


't-e^ 


fiT.t , ttfg 


T.l-^ 


r<(! 


— 


M 


. — 


\H 


^1^/ 1 


n^? ! T-i- '<^ ' 


7J'J 


/5'^5 


— 


^yi 


J . - 1 


fo 


S-^ ^ 


— ■ ■■ ■ ~\ 






''•sf f >l^ 






. 



















































































- 
























































- 














■I 










CnmnHnls ' Purtf naler ^□[bj^i&DibbF riDninpiHl nmi 


\e QoUipr ?-^ 7*«^ 


WELLSAMPUNG il 


1 SAniPLlNB METHOD I nnfTWia SamalBd 'i/i//>'} 
EaiiPDiinnl PurPB-Ttoa '' 'V^' - rilj EaTrnt-Twa 


i i3^cj 


CUlBT 




SBuiplH Eliaia± Vcs J® Fff«rvd Sairpl? Analvslo; 








^^ 






1 SAIdPUNG PnOUHAU J 




SdlTVll hS, 




Uibn^alorv 


COCiT 


CanmanlB 




^T^pU- 11^^ 


b /kj. i*tf 


£^r 


^l4^ 






1 Ll/PAf^it^ 








- 












^__ 








QUALITT COfJl RUL SAIAPl-ES I 




Hbnh SanUf B 


DudIIeiLp SamahB 








nnOnaJSantftHn 


DuDllCdiB SdniDir rj". 


' 


TlfllB 


Stimuli? I'io 








r«r 








"™^ 




Treadweii'^jmun 


U ■ .. -JL^ 


Tncis^iT 






nVBJ'J' 






?|hrr 


■-■ ■ ■ T^™--.^ J 



MONITORfNG WELL SAMPLING LOG (Normal, Low Row, and Low Yield) 

^f SampJedb^' 'V 



PecordBd B/ 



yWoiiSjr QEdraillijn HoiP^ 

Date IftfO^ 



F 



WELL PURGfNG 



PURGE VOLLfBilE 



PURGE WETHDD 



WffilTaiaF [>c[i[h(TD, JI.JiBlinTTDC): J^^^ 

D^plEl rn WglH (WL, ft. bBlsi* TOCl : 4 i^J 

□bjiIIi sd IrtG phasB (FP, It beJan TOC) : 

WUrtar dF bmWiole ■^oltimis In ba nurwd 
3 Q Nnf flfflllcalifl yOflw 



LrqUDl in a 1 Feel 9tfatlan of 


■ aoEjq igjiions} 


BdicMs 5^9 CBEing Sza 


WaEBrViiPumv.'pr 


» 2 


□ J 


ID 4 


I.3B 


T3 1 


a.?3 



QJLokFIih [jHaitr \ Typr 



y' ^'^^ 



GVidf 



PUWP INTAHE 



rrrjarVD 



□eiirhpl] 



n 



laarBomm D^cflli [ffj Z'*^ ' 



ClDiCr 



PUHGE VOLUME CALCUMTIOH 



■la-o.- 



fi/i 



Waler [;cmnifi If nglH 
tnlW Purga Tmw I S >i^^.^ 
Rei^flarpH Ran 






1 



fft. '^JiS 



-t^ 



i^ 



"3flI5 



CALCtAATED PURGE '.■iJlLUME 



ACVIJflL: 



.li. 



pais 



P'JRGc VOLUME 



JGHPUNDWATER PaBAUETEB tlfiASUREMErnS 




VITELL SAMPUNG 



IfSflMPLINa METHOD ~~ 

Purging 

EquFpuHiri Pump-T'lpH 

Samplj Tilloieif: ffi-ylvCsf 



I CWamrPHaainplpd 

FnrafGiJ S^mulff Andyn: 



I/IZZ5Ej^^ 



__ BbUbt - F/pa 



OHlBT 



&AMPEJNG PROCRArj 



Sanig 



cMq, 



4^T U-vtP.2. 



_CpnlaingrJlWr<L 



LpbfaHgiy 



J^jLl^ 



/ic>> 



^4^ 



COCil 



'Li^'\ 



Comir^pa 



1 



|_ OUALirr GDHTBOL SAMPLED 



J 



DupCeaW Samprnt 



Blank ^anulps 



Q[|i;injp Sariplc Np, 



II^D^^friClD 



Nih 






hi** 



Jffl! 



rrp 



Hmaiff 



trarsfrf 



Simula ^d. 



\\-\L'^il^'\Ai\^iV^C^^}^'^ 



Diri*r: 



:: 



MON[T0RJNG WELL SAMPLING LOG (Norma/, Low Flow, and Low Yield) 

^__^ SamplGd by 



Reconf 3d By 



Rfl 



V'air Jypa 



[^rtfljniWr [jElJratlFcn Qoiliirf 



^BA. PURGING 



JPUJIGE yOL[]flfl£ 



PURGE WETHoa 



Q J-nch {] J-iiicfl □Olhar 

Wsfj TulsJ CCQTJi (TI7, ft bPiaw ICC) r 1*i-J(i^ 
D&ptlitoWaierfWLlLberowTDC): S" ^^ 
DEprTi ro fr** plrd&B (R>i Jt. ^bEuw TQC) : 

PJrimtarnfbnidilW uoJurns In bo nngEd 

^9t?T CDlLfllHI Ijngm 

Taral Puros ThnB 2^^ -^^ 



LRiind irr h 


T Foer S?cb:rn nf a Bdcrng ^^jlpun^^ 1 


HcrleWfl SiB 


losing 


SZB 


W3ri-rVor[jr;iV.'F| 


4 




I 




0^ 


ID 
13 




1 




l£S 




4 




3J? 



QLoh Rg- []HJjlrr VT,pe 

PUMPlNTAJtE I 



%_ir!"iA' 




^rBolDiPTi DfliAh (H} 



t*Z' 



6.^ 



3 



WbIet UalumHIl 

Pu:BP RbIb H Sf^f^ 



\<io- VjIj 



ftJ5 '^ '.^ 



iLMMi. ^■'ZCi PURGE VCtUME 






MI& 



ACTIML PURGE VDLUME 



fGP0UNDW4TER PflflflMETEB «ErtSUR£HENTS 



UilBim JvpB_hv.^ VJiri- fk^i. 1^_^ .'^^' ^^ 




IjVELL SAPylPLING 



-If^V^ B&^ 



EqiiEpniflnE Pfiipp-tjips ^ 1/ ^^^ I K* T 

9aniplH I^EqiqiR 'in,'4^ i^\\MKd Ssinn\a Piafys^: 



Sallflr ■ T^liH 



(J[lw 



EAAIPUMG PHOGRAlM 






JarrialOerMtfftoiB. 



i_LiliL 



l-flticralnry 



-eft- 



CDG i 



COmnianU 



aUALlTVCiJfJTPrOLSA«PUE3 



Djufcalfl SJmplai 



Slank ^arml^ 



^ Cri3llll3Mipfc 



NO, 



r>«c*iai flwwft Hg. 



imeaiiweiKfJWUo 



TvM 



Tnu 



TrdnaUr 



3Wicr 



Samolp ^D. 



MONITORING WELL SAMPLING LOG (Normal, Low Flow, and Low YteJd) 

WelF Tyce 



Profflfl Numb fff .Z^? 



B 



MDnlDT 



necDrOffdBy ftl,i-^^V\ , 



&aFnj;le[r by 



[jEflratlFiiii flpUiPr 



WEiLL punoma 



PETRGGVOLUUE 



PITHGfe METHOD 



j^ ?-rn«h B-jp J'fncH Q^S-lkw 

wall Tolfll Depfh (TD, fT. butim TOC) r^? ^' ) (^ 

Dwnlna lATaisr (Wi„ ft befow TOq : ffSi^ 
Daplfi tn IFPB phBffB [FP, ft. bcEow TOCJ : 

Nlrmbat of bnisliarB valumES In ta pum?d 
J3a . [] rJnl ADpnicBQle []OlliBr 

iPtiflflE VOLUME CdLCUtATlPfJ 



Lpqiiid Jn«r ^jQl9«clianar 


1 BDElng igaifust 


□□rvlol? SzB edging Eize 


'HatarVa\u\p&fl 


9 ^ 


ua 


10 * 


I6B 


f 15 4 


2.a 



KNoTTial @Eiiinp\Typa 

yMgdu'lid [mart 5 goml [JotfiHr 



PUMP INTAKE 



Jrinjrljp 



Jlher P4 



.11 



■33Tfly 



TdIS Rii^ T*ii8 ^ 




3ar 



-2_ 



Pto. Vi? 



Pui^Aalt 






^f^ 


-aal5 1 


CAIXiULftlED-l 




ri/7 


Ul*N 1 


ACIlWL, PUHG5 '/OLk.ME | 



CflUUNDlVATeH PARAMETER MEASUHEMENTS 



] 



t>0 



"fl-r Ty^ J^j^o^ L U. tW-fNV*-lff/Ma^ ^T-^_ 



Thtb 



3j5 



UlEfB pr 



pH 



^^>^^^^' 



7-^ 



la 



^0 



JU^ 



,^^£1 



ES 



-J 



J^nnp 



1:15 



:l± 



f6.S 






■<i'^— - 



-2.^ 



JLlt. 



l2Ji. 



!itl 



SPrClJnLJ 

.InfSlcnl 



^CP\^^ 



f^fj 



M>S 



^ 



L^jai 



Jllgr- 



OHP 



Tur&iily 

_j>mJi. 



iLi. 



^ 






i^mTBiianlE 



^ 



li^ TWi^ 



1 HO 



°^^ "^f 



Ji:lL 



Catimenlt 



.Jf 



, Pvga ndRf SloragfAnlur^l [] DnunnHd an^e 



ffiDjtii^diltt^Mi. 



WELL SAMPLIfJG 



PuQiiq 

Sarifb nirse^ Wei(^ Pllr^iHd B^Fm>l? Afulyid: 

f BflMPUNSPPOGRMI 1 



Balla-T^pa 



QBmr 






CiinbUpl Hjy^jl JHB 






■f'»M\\i^^VKC\ 



UlKirAiary 






CnrnrranQ 



QUALITY COHTROL SAMPLES 



□ linhEjlB SanplB 



04^1 



dul SarriDlB Nd. 



Di]p|[ca_ra Sarula Ffl)^ 



tmeadwell^JiKiHo 




SHeMnw 



MONiTORIWG WELL SAMPLING LOG (Normal. Low Flow, and Low Yield) 



PfOfia NumP gc 2^*^ 
Recorded S>- .f^t^JWu^K 



l^^iDir 



3afnpJBdby 






PURGE VOLETIHF 



Q^ ?"Tch Q a-*cn QOilrer 

VUsriTaTaJ Depth |TD,]l.bEFinvrDC}; {^^^l 
Deptl* Id Water {WU n. BsJow TOC) :^,jjj $ 
□epiri ID iTHit pirua {FP, K. bela^i TOC) ; 

jPTJiTGE VOLUME CALCUlATIOrJ " 

^--^^ 

l^dFn-CflibninLBnjir] 
TattI PurOB TUIIB 
RoCliBnjB tMa 




Purging ^ 

EquTpntnf ftimp'TjTM ^ ' E^^* ^c 

SamfM F^irc4?i]: Yw '(^ FlIHnd SmIDIi; fUrdyEls: 



ip^ 



biliT-T^'lit 



DiB«r 




Ljb[faLary 



^ 



CQC 



jnii. 



CnriBnimia 



f■»1^^g»Hl\ Jau_Htrl 



□UflLITY CONTPOL SAMPLE 



DiiaiCcBiB Sjinprgt 



0^ 



n* S*mjile Na, 



Di]|illcJ<a BJinuii? No. 



ireadweiKsJfioao 




.J™ 



Q^ 



(fel^fB 



r-anaipr 



□ifvar 



aianh SBmnrDt 



^^^l^lff "hj. 



MONITORING WELL SAMPLING LOG (Normal, Low Flow, and Low Yield) 

Sae .' Area fgg^ ^ Wan Wc. qiTfjUli% 

Recnrdsd By r^i'isl\ 




ireEKiweiK^Jfioiio 



MONITORING WELL SAMPLING LOG (Normal, Low Bow, and Low Yield) 

PtctecI WtimbBr 5:,B^3 ^ \fipif y^pg 

1^ 



RtCOrdad 5y 



M. 



Sumrfpfl b^ 






D5l9 



PUPGE VOLEJfWH 



^ a-incll Q i-nlO' Qn-dor 

WoU TofjF Dcplh (TD, l[. JieJan TOCJ a* it? 
DEpih In Waier{WU ft- baioiv TOc) r ^"2(5? 

urnps Id ba aui^ 






I P t/Ft G E VQ LLIME CJUJUlATlOM 

Uk'drn-CartmnLa'glli 
TMaf P-jnw TTmB 



flBd^ijHnHB fl*^ PutaatlB 


^Jf^- 




iGRDUNDW;iTEfl PAH;i;j1£TE^ r'T^ASUA^J^EHTS 


1 




CDmrr?nls 



PurgE v^dl^r KlaragaliJiEC^aBl 



fJCj^inm?d antile 



te2-£-id^Ja±i:l 



WELL 5AWPUNG 



f _SAMPLJ»GMETHDO j 



fivgrig 

eqirJpnenI 
SEiT-Eir> FiiLstGir: 



Prjrrp-tlfiB 



F'Uvml Sample Analv^it 



T5^ 



Baior-TypB 



C4isr 



GAUPUNG PHOQRUl 



SjnQlfl MB, 



,^i^^m. 



£lfi 



■^UK 



yi^y 






COCil 



-Idl 



^imnanU 



quflurr coHTFiOL SAUPtra 



Oi]pllcg[B BampJE 



Blank Sdrvlns 



Dupleala oanple Nd 






rrw 



^>2el£. 



tranarer 



C^cr 



SlTT-ljIl? ^0. 



Tiz:? 



^ 



Rgcnrded 9y 



I^ONrrORING WELL SAMPLING LOG (Normal, Low Flow, and Low YJe(d) 



fv/^ 



SampJgd by 



WELL PURGING 



^fMlinirar [] Eflr JiiliUn flo^^er 



PUflGE VOLUME 



PirRGE METHOD 



3 



W8rjTiiTBiDppO.{TD,n.bHri™rQC>; r 4'*"1 
DBp[h W Wala jWL, n. C»9lo« TOC) r S t ^ 
Usplh Id Itbb ph j» (F^P, R. bslavf TOC] ; 

umCfir a' bnmiDlE >DlLinfli Q Qs DUrOvLJ 



LlqukE in a 1 FdoI ?nUiiii or i Bnikig {galfnod 



B 
10 

12 



( 

4 



Walo-Valurnffft 
as 

I6S 



Lj^^^lllT^ad Imaii 5 gpmf JJorJiar 



J^±tLL. 



PUMP INTAKE 





l^flpin (rr^ 



Boimri DEi:lfi 1ll| j3 ' 



PHAGE VOLUME CALCUlAirorJ 

~ H l-t. 

'A'^EffrlZkiliininLaiqUi 
Tula Piijgs TTms " *^^ 



1^ 



1 



k-;arflTVDllFnff'll 



^ Vaa 



-z 



^^ 



-U gaE 



LAL UL.Li I -G ri^T7C V^LUTflE 



PurpoFTEls 



J^i 



jGHOUWDW^TgPFAFtil^jlETERWFAaUREMEHrS 



Zi. 



J£3. 



flLTTLlAt PURGE I'lJLUME 



J.lsrof TvDJ Jf*J J. 1^1'^- ^'F^" ^ If'f 



h'Sr 




Sqirclt Mn- 



^l^ < ^ ' ^iu^r 



_[:pn;^M9TW DlLjri;B_ 



h^^'^"-'- 



LatftidPJr 



<^ 



COCi* 



:TiU 



CgmrnaD^ 



f-i.lL- 



Jb^h^ 



DUALITY CONTPDL SAWPLES 



□lAfciW ^ampfgi 



pLpilcJlg aainpJe No. 



ireaciweilQaraDQ 



rilg 



Blank Samplai 



Tvct 



fraaH 



TraiisFar 



^Shor 



amidfl 



HOr 



SnutJ^ren 






MONfTORING WELL SAMPLING LOG (Norniaj, Low Row, and Low Yield) 



Da:^ 



^1^^ 



WHLL PURGfNG 



PUnSE VOlUtli^ 



Wei ujing dlam^roT 
2_^ J-incn [] d-rrh Qo*er 

[ WpU Total DapOi (TD, J|. beTott TOC) J m"5g' 
□epHi to IVaUr (WL. tt, balim TOC); ^^ , ^' 
Deptli [D frae pliBHE jFP, ft bpJow TDC) j ^ 
^TumbBf =1 Uotehok vuJLhiHe Id ba puroad ' 

jPUUGE VDLJME C;i^CULaT"|6w ~ 



LIqLi'd fr* B I Fq« Seonan of j aaimg (^Fiana 



Barvlola S?B Chilli gSli? 




I PUPCE WETHQD 
PUWP INTAKE 



0eurro '< T',i« 



^^?*Jlw^ 



hToarlrt 



DacKi (lt> 






Tflfal PurpB Tmw 

RKhBrpp AbH 



-EA 



iVara-VDiunit'ir 



Pnr^Rala 



1 



Wo. '^al^ 



Sin: 



nar^ 



CALCIA.*TEG FijritiE ■.■L:i,|f^Jc 



:els: 



ACTTJALPUFiae /OLUWE 



iGRQUrjD/UTERPJflAWETEff^qert^UREMEHTS 



JlaroFrypa 



M^>H^»L^t[U^*^4w^Y<. 






■L?(^ 




CEjjnmafla 



PLifri& 'J.^lFf aWrgggJJscaaal []Dii]minn< gftwia ^Tliar jv^sjfc. TifH It 





WELL SAMFLFN(3 






1 SAOIPLIMG METHOD I DalBrnnia Sar^ad 

Purging 1 , 


_&fcr-T^B 


^ fk^^^^ 


OlhBT 






SampM^noKt tKl^y FlltarBd SdFTpla j^arfH^ 








1 SAhlPUNQ PHOanAM | 






J SanoWNn, 1 rr-inln-r *VarLmB 


EaliciBlorv 1 f CDCi 


Csjnrmna 




'«W*k*LiA 


l^^U.Wk.^rfWf 


^rfT 


^t^^ 






■Wfturw 


4«4fl*iy**.Mf\ 


^ "T ■ 
































1 aUAUIYCanTROLSAWPLEa 1 








Bbiik SaiT^El 




OjuBrdl S4Fnpli I'JD. 


□vdTaan Slmafa 


flUr 




T^i 


aarrrpla Nd. 








- 


r™ 










FTUBBIB 


■ 


iiTBaifweiiSJftHio 






i'r^ralar 




EriLHiinni^nl JnQ G'la/ic'vlcBi iTcrut 


iftrU 




1 


DlhBT 


1 

■._*-L^. . =^ 



IWONITOFIING WELL SAMPLiNG LOG (Nori^a/, Low Row, and Low Yfsfd) 

Project Num6 wr_ ., I.^i'^ 

Racarapd B^ 



WbII Type 



5ft 



SamrJ?r?&y 



[^FLfonllor 



fpUf 



QajraChu [jgihpr 

. Cats 7/fA:? 



WHLL PURQNG 



fPUHBE VQI.L1WE 



PLTRQE METHOD 



[^ Ji'icn [] J.,r>sh QOFJm 

Wad( raraJ Deprh (TO, ri. barPlV TOCl : iSj'^ 

DapUi [0 Wafflr fVUU fL below TOO : t 1^ 
Daplli (□ free pl>aae [FP, H, befoti TOC> : 

03 Q Mnt "mllsaljle ^Olhaf 

{PUB GE VOLUME i::flLCUij\TlQM 

TdIhI Puiga TTmfl 

Rffchdrrje HqIb 



Lfquld fn d 1 FdoI Scoli^n a' a 9at\ny (^nonaf 


SuraPiDlB 3izH C^ilng Jlza 


waigf Vffifntifi 


a J 


OJ 


ro 1 


l.flS 


la 4 


222 



[jt<i<ri'^il |mai ^ gumf [joijiar 

PUMP iNT;irtE I 




NQirlid 



pJ?P<n (iih 









I 



No. 7j& 



^'*g^^ 



p[i(5*RjU4 



^^ 



M3: 



ACnjAL PURG E VOLUNff 






iGRQUHQU^fliEP PAPyiMfTER MEASUflEtqGJ^TS 



Malar type 



Frnv 



Liaraur 



'M-»J 



pH 



J:D± 



^rj 



-13 a / ^^-S 



t^Mj-J f^^.T- 



C3"^r 



^^^ I n.< 



fr. ^ 



if! 



M. 






fnaT-h 



[■nSArmh 



StAi^ 



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Date ^ItJ^fr 



WEILL PURGi^^G 



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Sifa^firea ^IX^^' _^ Wall Md. ^^^iV j 1 ^ 

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Date _j|^fl-?^ 



Wrd-L PURGfNG 



jPURGE VDLUftlE 



PURGE ^TgTU□D 



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1 3AMPUNQ PHOGRAM J 








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sue ' a«» ^fii£ff W^n Ma. ^ScJ^ tt^ 



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Dirnr: I 



LANDFILL S 

APPENDIX SECTIONA-2 

SEMI-ANNUAL GROUNDWATER MONITORING REPORT 

FIRSl' AND SECOND QUARTERS 2007 

Presidio of Sian Fraucisco, CalLforiiia 

IXt INTRODUCTION AND BACKGROUND 

Landfill 8 is located in Ihe southwestern portion of the Presidio (Figure I) in the vicinity of 
the U.S. Public Health Services HospilaltPHSH). The site elevalion (Figure A-2-l| is 
approi'iiinately 250 feet above PLLWin ihe norlheasi and apj'iroximalelv 190 feel above PLLW 
m Ihe soulhwesi (Montgomery Watson, 1996c}. In 1E74, ihe PHSH was established as a full- 
service U.S. Merchant Man ne Hospital and laboratory. The U.S. Public Health Services look 
control of Ihe facilily m 1927 and operated Ihe hospital until il was closed in November 19SI 
(Monlgomery Watson, 1996c). Landfill 8 was used between Ihe years of 1946 and 1973 to 
dispose of vegelative debris, miscellaneons building debris, and some garbage and clean fill 
(Woodward Clyde Coniullanti, 1990; USACE. 1990). 

Groundwater samj'iles have been collected fiom Landfill S monitoring wells since September 
1994. Previous laboratory analyses of Ihe groundwater samples included; general chemislry, 
cyanide, melals, volalile organic compounds iVOCs), polycyclic aromatic hydrocarbons iPAHs), 
organochlonne pesticides (OCPs), polychlorinated biphenyls (PCBs|, and chlonnated herbicides. 
No PAHs, OCPs, PCBs, or chlorinated herbicides have been delected above laboratoi"v reporting 
limits al Landfill S since monitonng began in Seplember 1994. Summanes of previous dissolved 
oxvgen, general chemistry, cyanide, PAH, OCR, PCB, chlorlnaled herbicide, VOC, and melals 
results can be found in Tables A-2-1 Ihrougli A-2-3. 

A reduction in sampling frequency for all Landfill 8 wells lo annual was previously approved by 

the stakeholders; thus, sampling was only conducted during the Firsi Qnarler 2007, in 
accordance with Ihe approved samphng plans [Tables lA and IB). 

2,0 SITE DESCRIPTION AND GEOLOGY 

Landfill 8 is a part of the Lobos Creek Groundwater Basin (Figure I). Groundwaler is found at 

appro'iimately 10 to 50 feel bgs and flows lo the southeasl. Soils beneath Landfill E consist of 
unconsolidaled Colma Formalion sedimenlary deposils of sand, sill, and clay. These deposits are 
underlain by Franciscan Formation bedrock [ M on igomeiT Watson, 1996c). 



A-2-1 
Fiisl Bitd Sc[:and QLiail[:i& 2007 October 2007 



3,0 PUBLIC HEALTH SERVICE HOSPITAL RECORD OF DECISION 

In early ] 995, Ihe U.S. Anny completed the Recoid of Decision (RODj for the Fonner PHSH 
AreafPHSH ROD). The PHSH ROD addressed ihree remediation siles within the PHSH Area, 
including Landfill 8. The selected remedy was qu^rlerly groundwater monilonng for five year? 
to confirm Ihat chemicals are no! leaching from the fill material to Ihe groundwaler 

The quarterly monitoring progi"am al Landfill B has met the requirements of the PHSH ROD. 
Ths Five Yciu- Rcv\ew and F\eM h>vcsltgafii>n Woik Plan foi Lmuifitls 8 mu! tU was finalized ill 

Oclober 2002. In order to evaluate remedial actions undertaken in accordance wilh the 1995 
PHSH ROD, the Trust will delenuine whether a ROD amendment or an Explanation of 
Significant Differences will be required for future site remediation. Potential future remedial 
actions to be completed at Landfill 8 inc hide construction of a permeable landfill cover or p^itial 
landfill removal A landfill delineation study was completed ^t Landfill S in November 2002. 
Results of the study will be used in the selection of the final remedy for the site (URS,2002). 

The Five Year Review and Finai Investi^ilton ReporJ for Landfills 8 and 10 (FYRl w^s 
submitted to the regulatory agencies ^nd RAB in January 2004. A Focused Feasibihty Studv 
(FFSl for Landfills 8 ^nd 10 has been prepared. Addihon^lly, the Trust iscuirently prep^nnga 
RAP and designing new remedial actions for the two laiidfiU sites. The Draft RAP is scheduled 
to be completed in 2008. 

4J) GROUNDWATER MONITORING 

Landfill 8 has five associated monitoring wells and two piezometers (Figure A-2-1). 
Groundwater elevations and samples were collected from Landfill 8 monitoring wells during the 
First Quarter 2007 and analyzed for the parameters described in Section 5.0. No gioundwater 
elevations or samples were collected at Landfill 8 during the Second Quarter 2007, in accordance 

with Table IB. 

4.1 G round »at«r-LeveI Mensurenienls and Int«rpretalion 

Groundwater elevation measurements were collected on 26 FebiuaiT 2007 at the five Landfill 8 
monitoring wells and two piezometers during the First Quarters 2007. Groundwater elevahons 
were not collected from Landfill S dunng the Second Quarter 2007. A summary of groundwater 
elevations is pi"esented in Table A-2-4. Water level meters were calibrated on 26 Febiiiary and 
thecalibr^hon logs can be found in Appendix B. Groundwater elevation field fonns are 
presented in Appendix C. 

First Quarter 2007 groundwater elevations ranged from 175.16 to 220.66 feet above PLLW in 
monitoring well LF08GW02B ^nd piezometer LF08PZOI, respechvely. Groundwater flow w^s 
detennined to be in a southeasterly direction, which follows the general topographic trend. The 
groundwaler giadient was calculated to be approximately 0.09 feet per foot. A groundwaler 

A-2-? 
Fiisl Bitd Sc[:and QLiail[:i& 2007 October 2007 



elevalion map sho^^i^g Die First Quarter 2007 ground^^ater conlour^ and flow direction for 
Landfill 8 is included as Figure A-2-]. Ground water elevations, gradients, and flow directions 
are consilient Willi hisloric^l valnesand inteiprel^tions. No significanl irends or observalion^ 
were jdenljfied al Landfill S dunngihe First Quarter 2007. 

4.2 Monitoring W«ll Purging and Sampling 

The five Landfill 8 monitonng wells were purged and ^umjiled on 6 and 7 March 2007dnriiig 
the Firsi Qnarter 2007. Landfill 8 monitonng wells were purged and sampled u^inglhe method? 
shown m Table I A and in accordance wilh procedures descn bed in the FSPlTreadwell & RoHo, 
2001a). Gronndwater sampling was nol proposed for ihe Landfill S moniloring wells during ihe 
Second Quarter 2007 [Table 1 B). 

Purge equipment, purging volumes, purge waler paranielers, and sampling equipment for each 
moniloring well are described in Ihe purge records localed at the conclusion of this Appendix A 
section. Purge water was slored for future disposal in one of two2,E00-galloii ^boveground 
polyelhylene storage lanks, which are located al Ihe Cenh"al Magazine. 

43 Groundwater Aiialylkal Program 

All groundwater samples coliecled were submitted lo Ihe project laboratory for the analyses 
proposed in T^ble lA. The appropriate sampling containers, preservatives, and maximum 
holding times for each analyhcal melliod ^re shown in Table 5. Sample conlainers used for each 
well are described in the purge recoids located ^1 Ihe conclusion of this section. 

QA/QC samples were collected as part of this program. Section 6.2 of Ihe main report discusses 
the QA/QC sampling and analysis performed duniig the First Quarter 2007. 

5.0 GROUNDWATER ANALYTICAL RESULTS 

Groundwater samples were collected from the five Landfill 8 monitoring wells (LF08G WO I, 
LF08GW02B. LFO8GW03. LF08GW04. and LF0EGWO6) during First Quarter 2007. The 
monitoring wells were analyzed for general chemistry parameters, tolal dissolved solids, OCPs» 
PCBs, VOCs, PAHs, tolal sulfide, cyanide, and 23 dissolved metals, in accoidance wilh the 
proposed sampling schedule (Table I A). Current and historical analytical results are presented 
in Tables A-2-1 Ihrougli A-2-3. 

In addition to Ihe analvses, groundwater from Landfill E monitoring wells was also measured in 
the field for oxidation -reduction potential (ORPi, pH, temj'ier^ture, and dissolved oxygen prior to 
sampling, as p^il of the low flow sampling procedure. Temjier^ture, ORP and pH data can be 
found on the groundwater samphng forms associated with Landfill E moniloring wells. No 
Landfill 8 monitonng wells were scheduled lobe sampled during Ihe Second Quarter 2007, in 
accordance with Table IB. 

A-2-3 
Fiisl Bitd Sc[:and QLiail[:i& 2007 October 2007 



5.1 Dissolved 0\jgen 

Di^5o]ved osygen measuiemen I results are summarized in Table A-2-]. The concenlrarions of 
dissolved oxygen measured wilhiit Laitdfill B moiiiloring wells during Ihe First Quarter 2007 are 
within the range of historical concenlrations. Dissolved oxygen was measured wilh an iii-lme 
dissolved oxygen meler during the Firsi Qiiarler 2007. 

5.2 General Cliemislry, Cyanide, and Sulfide Results 

General chemistry, cyanide, and sulfide results are presented in Table A-2-1. The majorily of 
general chemislry results from Ihe First Quailer 2007 were within the range of previously 
detec led concentrations within Landfill 8 Area monitoring wells. 

Chloride was detected al anew higli concentration of 280ing/L within monitoring well 
LF08GW01 during the First Quarter 2007, in exceedance of the chlonde cleanup level of 
250 mg/L, identified in Table 4-5 of the Supplemental [nfonnation for the Dmjl FeaslhUtfy 
Sutdy Repoil, Ltindfilfs S and lO, dated June 2005. This is the first exceedance for chloride at 
this location, and only the third exceedance at any Landfill 8 location since 19^. In general, 
chlonde concentrations have been slowly nsmgin LFOEGWOI. Additional groundwater samples 
will be collected dunng future monitoring events to see if this trend continues. 

53 PAHs, OCPs, PCBs, and Chlorinated Herbicides 

No OCPs, PCBs, VOCs, MTBE, or PAHs compounds were detected above laboratory reporting 
limits within the Landfill 8 monitonng wells sampled and analyzed for these compounds during 
the First Quarter 2007. 

5.4 Dissolved Melals Results 

Dissolved melals results are presented in Table A-2-3. The majority of dissolved metals results 
were within the range of previously detected concentrations for Landfill 8 monitoring wells and 

are not considered significant. No dissolved metals cleanup levels were exceeded during the 
First Qiiarter2007 at Landfill 8. 

5.5 VOCs Rtsulls 

VOCs were not detected in Landfill 8 g]"oundwater samples collected dunng Ihe First Quarter 
2007 (Table A-2-2). Historically, tetrachloroethylene (PCE), dichloiomethane and toluene have 
been detected sporadically at relatively low concentrations withm Landfill 8 monitoring welli 
LFOSGWOl, LFO8GW03 and LF08GWO4. 



A-2-4 
Fiisl Bitd Sc[:and QLiail[:i& 2007 October 2007 



6,0 CONCLUSIONS AND RECOMMENDATIONS 

Giouudwaler elevations, gradients, and flow diiecrious during Firsi Qiiarler 2007 are coiisisrenl 
with hisloricQJ values ^nd inreiprerations. The five Landfill S moniloring wells were sampled 
^nd analyzed during the First Quarler 2007 accordi iig lo the proposed sampling schedule. The 
majority of general chemistry resLills from ihe First Quarter 2007 were within the range of 
previously detected concentrations within Landfill 8 Area mom ton ng wells. 

No OCPs, PCBs, VOCs, orchlorinaled herbicides were detected in the Landfill S groundwaler 

samples collected during First Quarter 2007. 

No olher significani trends or observations were identified at Landfill E during First Quarter 

2007. The sampling frequency al Landfill E h^s been reduced lo annual monitoring, until the 
Landfill 8 RAP (RAP4) is fm^hzed and implemented. RAP4is scheduled lobe completed in 
200B. Sampling at Landfill 8 will be perfonned in accordance with Ihe RAP4 requirements npon 

itscomplerion. 



A-2-5 
Fiisl Bitd Sc[:and QLiail[:i& 2007 October 2007 



Tabic V-l-l 

RcBuba if Genera] Cbcmbtr^Ys C janhk dud SulHdc A naljErs 

Laodnil 8 

Prftjiikf of S an FJaIlCl'l^.o, C Blifiimia 



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Sairilf 




Molx-l' 


I.IM 1 


E310 1 


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S'A'iiOLD' 

S'A'iiOLl' 

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SWA 56 


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41 


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140 


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35 


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1 B5 


31 


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40 


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160 


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140 


140 


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170 


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19 


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173 


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157 


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134 


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133 


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165 


165 


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105 


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52 J 


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102 


0?2 


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165 


165 


111 


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35 


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163 


163 


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163 


163 


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1 27 


61 


163 


163 


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viint^i 


161 


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469 


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161 


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25 


40 IT 


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150 


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Tabic V-l-l 

RcBuba if Genera] Cbcmblr^ys C janhk dud SulHdc A naljErs 

Laodnil 8 

Prftjiikf of S an FJaIlCl'l^.o, C Blifiimia 



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NllTLUld N 


^lL^lMI 

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1 


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-- 


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- 


-- 


- 


LFLSGAOI 


ih3/as^5 


13J 


IJJ 


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<i\a\ 


NM 


K 


NA 


NA 


29 


41 7 


'□05 


I2ll5t^ 


IW 


169 


7B.1 
HL.l 


<aa\ 


Hit 


2S 


NA 


HA 


2B 


41 


'0 05 
:0 05 


IHT 


\«1 


<aa\ 


NM 


021 


NA 


HA 


29 


43 7 


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51 


<aa\ 


470 


<a L 


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39 


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150 


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44 


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45 


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39 


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150 


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49 


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450 


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150 


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31 


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43 


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4 


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13 


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xnDtai 


190 


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41 


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591 


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3E 


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vmnas 


1H(i 


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44 


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566 


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a 


'001 


vmystai 


150 


lU 


51 


<c.ai 


QOI 


ir» 


3fl 


<0.05 


HA 


11 


'001 


nsnb/ai 


J50 


lU 


49 


<DDr Ul 


7 5J 


lb 


3.7 


<0.05 


HA 


11 


'OAl 


m/isioo 


jn 


IJ9 


40 


<c.ai 


5J 


D lU 


NA 


NA 


ft97 


2SB 


'0.05 


niaziOD 


jn 


119 


49^ 


<CAI 


bbi 


a iLQ 


NA 


HA 


4 


3E 


= 05 


*t2ll5tV) 


]j? 


141 


4L3 
49 i 


<CAI 


7M 


14 


NA 


HA 


4A 


287 


'Ofli 
'0 05 


i4b 


14b 


<CAI 


Q03 


D llQ 


NA 


HA 


4.1 


297 


0E/2El^B 


140 


14a 


J9J 


<CAI 


QOI 


15 


NA 


HA 


53 


33 1 


'0 05 


O^l^B 


143 


143 


JS^ 


<aAi 


5 14 


IB 


NA 


HA 


Q.I 


41 9 


'0 05 


OlllOt^i 


ZBTO 


< 5 <p?ni 


J2 3 4310) 


<CAI 


041 


a 103 4310) 


NA 


HA 


4B 


14b rr3oi 


'0 05 


12/15^7 


in 


139 


435 


<aAi 


551 


a 151 


NA 


HA 


3 1 


315 


'0 05 


*\bl2M^l 

*y}i25t^i 


14J 


141 


45 L 


<a.ai 


1.6 


D 111 


NA 


N\ 


4.1 


-^'2 


'0 05 
'0 05 
'0 05 


Jb 


111 


4a>i 


<aAi 


53H 


<a L 

IJ 


NA 


N\ 


5.7 


4.1 


IK 


lU 


41 1 


<c.ai 


529 


NA 


HA 


5 3 


463 


12/U/^ 


141 


144 


44A 


<cai 


NM 


D I3B 


NA 


HA 


43 


3J7 


'0 05 


mn\t^ 


IB 


lU 


53J 


<cai 


NM 


0.1 1 


NA 


HA 


4Q 


43 3 


'0 05 


*\bian^ 


iS 


I2E 


406 


<CDI 


NM 


17 


NA 


HA 


QB 


51 7 


'0 05 


4Ha5/fl6 


US 


lOK 


463 


<aai 


NM 


17 


NA 


HA 


4 


IE 


'0 05 




103 


103 


H L 
5L L 


<aa\ 


NM 


14 


NA 


HA 


42 


35 9 


'0 05 
'0 05 


111 


111 


<aa\ 


NM 


II 


NA 


HA 


39 


17 


ob/ciVqi 


J!l 


111 


5L 1 


<cai 


NM 


14 


NA 


HA 


4Q 


35 J 


'0 05 


0if22t95 


47 


<i 


53.1 


<c.ai 


NM 


17 


NA 


HA 


4A 


2H9 


'0 05 


l2flliAI 


67 


<i 


61.3 


<c.ai 


NM 


17 


NA 


HA 


i 


309 


'0 05 


Ifl/HV^ 


IIB 


99.J 


6JS 


<CAI 


NM 


II 


NA 


HA 


29 


31 J 


'0A5 



FIrM laJ IcLDbl Council 30D7 



FlEc 2 Df 5 



Ofobci 2DUJ 



Tabic V-l-l 

RcBuhE if Genera] Cbcmblr^ys C janhk dud SulHdc A naljErs 

Laodnil 8 

Prftjiikf of S an FJaIlCl'l^.o, C Blifiimia 



1 

iA«L Hanr 1 


Hinipir 
IhiM 


Llk^llniL^ 
Tcral 


BimrbHhTiDM 


CbkrjilE 


C^T'mii'E 


lluMhllfd 


riLfihrid< 


NL4rDUid N 


NlU-L^EId N 


NiLniMI 
NlU-lUu N 


IJulfDU 


Sairilf 




'•mi L\in tl 
Molxhd' 


F.'Hh 1 


E310 1 


EWOD/ 


SA'4lhLll' 
E!U 1 


Fx-ld 


EHOf 


EiWOOl 
t J53 21 
SW90»i 


tJOOO/ 
EJ53 21 

SW90Mi 


E35J.2 


E3IW0> 
SVfH56 


EJTft !■ 
t JJ6 1 






liTi^^l y 


llDfIL) 


Imf] 1 


l-i'l 1 


Imfll.) 


|m£/L| 


imffLi 


imffLi 


J-&L> 


|mj|/L) 


(mBl-l 


Clcunap Lcirlk 


- 


-- 


2511 


lllHh32 


7. 1 


-- 


- 


- 


- 


-- 


- 


LHPIGWOJ 


IHflQidT 


^^o 


2M 


TJ 


<oai 


1 21h 


'0 L 


3T 


■L01h5 


NA 


5L 


'OAI 


Villb/Qb 


rw 


290 


T2 


'001 


U^f 


'0 L 


44 


<0.1h5 


NA 


49 


<04U E 


{Slums 


7B 


220 


OS 


<OAI 


1 00 


'0 L 


5Q 


<0.05 


NA 


51 


'004 


?» 


2K] 


TO 


<ODf Ul 


0.9 


'0.1 


5 


<0.05 


NA 


49 


'OAI 


230 


220 


OH 


'0.01 


lA 


'0.1 


4J 


<0.05 


NA 


44 


'OAI 


mnttas 


210 


2IC 


OH 


'OAI 


0.9 


'0 L 


4T 


<0.05 


NA 


40 


'DAI 


Kiiitai 


?m j- 


an f- 


Tl 


'OAI 


OTH 


024 


4A 


<tt05 


NA 


43 


'DAI 


oiniiia 


?40 


24a 


TO 


'OAI 


046 


<0.l u 


5.T 


<ft05 


NA 


44 


'004 


mnaioi 


?40 


24D 


Tl 


'OAI 


1 }9 


IJ 


45 


<ao5 


NA 


44 


'004 


nsitbta: 


7B 


2K] 


fs 


<ODL Ul 


24J 


12 


45 


<tt05 


NA 


4li 


'004 


oiaziOD 


7JJ 


2U 


JO L 


'0.01 


0.1 


a 1L3 


NA 


HA 


5ET 


424 


'0 05 

<ata' 


?» 


2Jfl 


TJ 


'0.01 


19 


NA 


NA 


hA 


4J 


45 


Kll\t^ 


244 


244 


tfli 


'OAI 


Jbl 


a 1>LT 


NA 


HA 


IJi 


4J 1 


<ata 


02f25l9^ 


?4? 


241 


J3A 


'001 


325 


D 105 


NA 


NA 


44 


45 i 


'0 05 


OBfznrw 


7JT 


2J7 


695 


'001 


3 15 


NA 


NA 


NA 


44 


4JT 


'0 05 


o^irw 


241 


241 


U] 


<00l 


1.3 


12 


NA 


NA 


4Q 


4J J 


'0 05 


OlVIII'^ 


2EID 


< 5 <lf20| 


bIQ 4310) 


<00l 


3M 


:0.I0 lUlO 


NA 


NA 


5.1 


44 2 fl20| 


'0 05 


IZ;L5/fl7 


241 


?4t 


67.7 
69J 


<00l 
<00l 


248 


II 


NA 


NA 


4 


392 


= 05 
'0 05 


240 


240 


2 IJ 


a 112 


NA 


NA 


IB 


42 ft 


OfiOliflT 


24? 


241 


QQ 


<OAI 


1 TJ 


NA 


NA 


NA 


44 


42 B 


'0 05 


OJ^BVflT 


241 


24E 


61.6 


<OAI 


2 


NA 


NA 


NA 


5.1 


42 ft 


'0 05 


I2;zi)/q6 


IX 


21S 


fs 


<OAI 


NM 


a 151 


NA 


NA 


42 


41 B 


'0 05 


4Wai)/qb 


lib 


2n 


111 


<OAI 


NM 


a J2 


NA 


NA 


45 


4J4 


OOBb 


miiB/^s 


2J3 


2H 


67 1 


<OAI 


NM 


NA 


NA 


N\ 


5 1 


44 J 


'0 05 
'0 05 
'0 05 


2JI 


2tL 


Jf [ 


<OAI 


NM 


D.12 


NA 


N\ 


45 


399 


220 


220 


6E.I 


<OAI 


NM 


D.I 


NA 


NA 


4Q 


442 


obnni^s 


211 


21 L 


Ql 


<OAI 


NM 


0.1 


NA 


NA 


QJ 


484 


'0.05 


0100195 


211 


224 


67.1 


<OAI 


NM 


11 


NA 


NA 


Q.I 


4J4 


'0.05 


ITT MM 


2JI 


2tL 


TS 


<OAI 


NM 


12 


NA 


NA 


42 


40ft 


'0.05 


0V2&W 


22T 


227 


HO E 


<0.0I 


NM 


0.1 


NA 


NA 


42 


42 5 


'0 05 



FIrM laJ ScLDbl C^uHcd lODJ 



Flgc } Dr5 



Ofobci 1D07 



Tabic V-l-l 

RcBuba if Genera] Cbcmbtr^Ys C janhk dud SulHdc A naljErs 

Laodnil 8 

Prftjiikf of S an FJaIlCl'l^.o, C Blifiimia 



iA«L Hanr 


Himpir 
l>uL< 


Llk^llniL^ 
Tcral 


BimrbHhTiDM 


CbkrjilE 


CjBaldi 


lluMhllLd 


Flifihrid< 


NL4rDUid N 


NlU-lUia N 


^LlnlMI 
NHtIIebN 


IJulfDU 


Sairilf 




\Bj|\lh.Al 


I.IM 1 


E310 1 


EnOD/ 
^W9DiO 


SftiJOLZ' 
E!U Z 


Fx-ld 


EHXHW 
EHOf 


EiWOOl 
SWiOib 


EJOOO/ 
EJSJ 21 

SWKiib 


E35J.2 


E3IW0> 
SVf«l5b 


EJ7b 1/ 
EJTb 1 






^in^Ly 


flDflL) 


Im^] 1 


l-i'l 1 


lijifIL) 


|m£/L| 


J»E'L> 


imffLi 


1-5'L> 


|m||/[.) 


(mi^l 


CIlufibp LcirN 


- 


-- 


Jill 


lllHh5! 


-- 


-- 


-- 


- 


- 


-- 


- 


LFOKGWOI 1 

DUPOJimi&IA 

DUPOJI7ffi2A 
LTOHCWOJCL 

DUPDJIShSl^ 
LKBCWOJCL 

DUP09(iHHJA 
LTOHCWOJCL 


IhJflTidT 


]» 


in 


-H, 


<aa\ 


?i>0 


<a L 


Q5 


<*ny5 


NA 


25 


<ao4 




130 


m 


4i 


<aa\ 


-- 


<a 1 


Q4 


<4Hh5 


NA 


25 


<ao4 


]» 


in 


» 


<aa\ 


?4J 


<I\A 


lb 


<*ny5 


NA 


17 


<004 R 


^yjnbtob 


bb 


H6 


» 


OAU 


-- 


^C.l 


1 5 


■L4Hh5 


NA 


17 


ilOIU R 


inaTidi 


90 


fli) 


?9 


<i\a\ 


220 


<a 1 


23 


<0.4fi 


NA 


14 


<ao4 


viintas 


7B 


7B 


» 


<i\a\ 


- 


<I\A 


23 


<oa5 


NA 


14 


<a/a 


oiititas 


79 


79 


a 


<00l u 


- 


<aj u 


24J 


<D 1 IJ 


NA 


IJ7 


<OIU II 


VIII \tai 


110 


IIQ 


?4 


<0 0l Ul 


2 


ID.I 


1 B 


<on5 


NA 


IB 


^COl 


KiiDtas 


in 


in 


31 


^cai 


47Q 


<i\ 1 


f- 


lOlhS 


NA 


J3 


<aia 


vmnas 


^ 


94 


31 


<at\\ 


1 TH 


'C 1 


DSE 


10.05 


NA 


II 


<aia 


vmttai 


£3 


E? 


31 


<aa\ 


-- 


'C 1 


ayi 


<0.05 


NA 


II 


'QOl 


ninnai 


» 


so 


3S 


<0 005 


-- 


<a 1 


OiE 


<ODS U] 


OSS 


10 


<0 1 


{siiE/ai 


b! 


b3 


21 


<i\t\\ 


J 


^a r 


Q 


<tt05 


NA 


IH 


<aa4 


^mwai 


^ 


94 


IQ 


<ODI Ul 


2 


DIU4 ; 


2E 


<0.05 


NA 


II 


<i\ta 


ilQ/OliQ] 


6b 


bO 


IS 


<aa\ 


iJ 


ddU ; 


IJ 


<0.05 


NA 


IIH 


<ata 


i4/aii(]] 


bB 


bB 


IS 


<aa\ 


- 


oob] 


IJ 


<01h5 


NA 


IM 


<ao4 


lA/Olid] 


NA 


b2 


IJ 


<aa\ 


- 


< 1 


]J 


^ L 


NA 


IM 


< 1 


IhSaQiQl 


7J 


7] 


17 


<0 0l Ul 


15i 


<i\ 1 


?fl 


<0.05 


NA 


15 


<ao4 


4>5aiii01 


70 


70 


\6 


<i\a\ 


NM 


< 1 


27' 


^ h 


NA 


14 


< 1 


Waoitn 


SB 


5B 


Kii 


<i\a\ 


IH 


^a.L 


NA 


NA 


799 


5 3J 


'QQS 


oivizitn 


in 


in 


H.3 


<i\a\ 


4M 


'C.L 


NA 


HA 


bb 


;9B 


'□05 


oeiiitv) 


111 


III 


3b 


<i\t\\ 


251 


^C.l 


NA 


NA 


43 


25 i 


'CC5 


Kll'it^t 


lAO 


JM 


?bJ 


<i\t\\ 


52 


^C.l 


NA 


NA 


22 


IB 


'□as 


u 


BJH 


3H 


<llt\^ 


44Q 


<l\.t 


NA 


NA 


05b 


19 b 


'□as 


obioi^n 


fiB 


M.2 


?fl.b 


<i\t\\ 


046 fJJSI 


^C.L 


NA 


NA 


D2b 


1J5 


'ac5 


oiimtv 


bo 


ytx 


11 


<aa\ 


425 


<a 1 


NA 


NA 


14 


II 2 


'ac5 


iz;ri/flT 


IH3 


IB] 


l>L.7 


<aa\ 


b57 


<a 1 


NA 


NA 


7? 


12b 


'ac5 


wao/flT 


74 


7J.I 


2ii, 


<aa\ 


4 Jb 


<a 1 


NA 


NA 


bQ 


B2 9 


'ac5 


WillH^l 


Si 


B4H 


JS.9 


<aa\ 


3 32 


^C.l 


NA 


NA 


2 1 


2J4 


'ac5 




70 


■O.J 


IH 


<aa\ 


1.3 


IC.I 


NA 


NA 


054 


IJ 1 


'ac5 
'ac5 


iS 


I2E 


M.l 


<aa\ 


NPhl 


<aA 


NA 


NA 


5.1 


26B 


IHriDi9& 


V) 


EQ 


lb.4 


<at\\ 


NM 


<i\ 1 


NA 


NA 


4A 


2bJ 


'CC5 


OlflEfW 


SJ 


E3 


21b 


<i\t\\ 


NM 


<a L 


NA 


NA 


1 B 


I5B 


'□05 


Ufa^95 


11 


71 i 


IE 7 


<aa\ 


NM 


<a 1 


NA 


NA 


34 


J9i 


'□05 


IKi/IO/q^ 


19 


-^i 


3ZJ 


'□di 


NM 


<a L 


NA 


NA 


3 


J2 1 


'□□5 



FliM laJ ScLDbl Council 20D7 



ri3[4Df5 



OUabcj ZD07 



Tabic V-l-l 

RcBuba if Genera] Cbcmblr^ys C janhk dud SulHdc A naljErs 

Laodnil 8 

Prftjiikf of S an FJaIlCl'l^.o, C Blifiimia 



iA«L Hanr 


DnK 


Llk^llniL^ 
Tcral 


BimrbHhTiDM 


CbkrjilE 


CjBaldi 


lluMhllfd 


T'luiinilt 


"lilmK.i^ N 


NllTLUld N 


^lLnlMI 
NlU-Heu N 


IJulfDU 


Sairilf 






E.JIO 1 


E3J0 1 


EWOD/ 


FJU 2 


Fx-ld 


I HHI II' 
EHOf 
S*9(h5b 


1 «llOiJ.' 
EJ43 21 

SWI0» 


tJOOO/ 
EJ43 21 

SWKiMi 


E351.3 


E3IW0> 
SVfH5b 


EJTft !■ 
EJJ6 2 




*m^l y 


llDfIL) 


Imi] 1 


lb;-1 1 


Imfll.) 


|m£/L| 


J»E'L> 


J-p/L) 


*ms-\-\ 


|m||/[.) 


(mi^l 


LIlufibp IjCirN 


- 


-- 


I5il 


ii.i>(f57 


1 


-- 


-- 


- 


- 


-- 


- 


LFOKGWOI 


IftflT/qj 


60 


bo 


Jfl L 


<aai 


NM 


'□ 1 


NA 


NA 


■>! 


20 1 


'□05 


*Hll}t9S 


7B 


70 


32. L 


'□01 


NM 


:a L 
:CI L 


NA 


HA 


04 


159 


= □05 
'□□5 




](; 


i-;i 


i>b 


'□01 


NM 


NA 


NA 


g.Q 


4Q3 


107 


107 


12 


<aoi 


NM 


:a L 


NA 


NA 


5 


J2 


LFOKGlVOh 

1 


IHflOiQT 


lIKi 


ixa 


]J0 


<DAI 


Q50 


2y 


1 2 


1005 


NA 


M7 


'QOl 


OJaTiOft 


?m 


230 


IJO 


<DAI 


QB5 


024 


1 1 


■lO.05 


NA 


Ji 


<00J R 


oiriiiiai 


?m 


220 


720 


<DAI 


540 


0.3 


1 


<0fl5 


HA 


4E 


OflT 


03/ii<ai 


19D 


190 


UO 


<DDI Ul 


4.1 


DJJ 


1:2 


<ao5 


HA 


IDO 


'001 


0E/2ElitlJ 


NA 


NA 


NA 


NA 


SJ 


NA 


NA 


HA 


HA 


NA 


HA 
■:Oftl U. 


150 


IH 


110 


<DAI 


5TJ 


'O.b 


IJ 


<0fl5 


HA 


02 


03riii(]j 


IJI) 


IJQ 


110 


<DAI 


5TQ 


ir» 


^2 


<0fl5 


HA 


iA 


'QOI 


06/05102 


140 


140 


aiO 


0j)7 J- 


4£ 


23 


^2 


<0.05 


HA 


IJO 


OOE 


oaaziQ? 


lAO 


\ia 


UO 


<aoi 


5 13 


<0.l D 


1 5 


<005 


HA 


130 


'OAI 


05/iciia] 


lAO 


\ia 


iko 


<DAI 


T5J 


3J 


1 3 


<005 


HA 


IDO 


:afll 


OVlitV) 


JJ5 


us 


721 


<DAI 


qs um 


2D 


NA 


HA 


1 5 


145 


= □05 


02ll5t^ 


2A3 


26i 


lEI 


<DAI 


BBI 


OJJ 


NA 


HA 


1 B 


ID3 


'□□5 
'□□5 


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NA 


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NA 


NA 


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NA 


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544 


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521 


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313 


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NA 


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mpcii LI [ i|uiii[ rl^ ■Ej'irL^ 

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3 - TIk i'/C bhoialHhrv nirjic miili klii?^ n Kjic ticcn cinhdicil Ihh alia^c a DiPhf en fniialc-?! I Jt ii'hcj Uhnhia^oi^ ie'vIi jie rcpiMlctl Tk IJC lalxirjIiMj lEfiHitcd 
□■ia4cai ?iOi [UBCcniDi LD V (nIrjic-ND >mhirh Jic 441 4 iiDct hjfhcrllDB biIiVc-N t-hnLC nl □■ luiii SclIhh 6 2. 1 2 m I Ik mai» n^inrl olll>; FJ'.yi 5iviif-.lruriii<' 
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4 - Ck-ibjp t\ ( l> I jL( n TiniD Tjbt 4-% uEl ta 5ivjr^JrTirivJiir AjJ'iirTJOfrjn/irr Jlrc DrffI findjrrj A urjl VU J^5 fffjuiV |EKI,30Wp1 

N A - ni' jBjIr'nl 

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Tjblr 7 laibc mjin rEpihii ulnufict jll iljpliLJlc jnil ipll tiijipki .inil j^vnciild Ibzm ^Ih Ik 'cll Titm h- hicklhc} fLtz cilkcicil 

Tiblr I L tn Ik id jib iejvii iikiljfLO. ojuunl jnd kisDiEaL iIjIj «fulil>;D 



FliM aad IcLDbl C^uHcn 30D7 



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HrBillBarFAI],DCF^FCB,ChLDrlnalri] H rrbic id r, Bnd VOC Altaians 

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P rcvid [o dF San Franc isij, Cal i Fnni la 



niji Njom 


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Lll 


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niElliiiBi' 


MTILH 


rcn 


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AHlylnjl 
Mcllnd' 


SABIID 






SWHIMM 




S^BBiDB/ 


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tivH-l 


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a.7 


13 


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LKiHGWCll 

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Ol/Ob/DJ 


ND 


ND 


M\ 


<4 


<.01 


<ai 


^Ihi 


ND 


oitniab 


^D 


ND 


NA 


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<ai 


<ai 


ND 


oit\bnti 


ND 


ND 


ND 


<J 


<l)i 


1)5 


<ai 


ND 


OilU'Oi 


ND 


HD 


ND 


<J 


<i)5 


<0i 


<a5 


ND 


1) J'l ITM 


ND 


ND 


ND 


<J 


<i)i 


<ai 


<0J 


ND 


(ii>]i^m 


ND 


ND 


ND 


Dr>q 


<i)5 


<ai 


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ND 


DHTM)] 


ND 


ND 


NA 


<j 


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ND 


DH^TIh^] 


ND 


ND 


NA 


<i 


<i)5 


<0i 


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ND 


CDfaM)] 


ND 


ND 


NA 


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<i)5 


<0i 


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ND 


OJ'IMH 


ND 


ND 


ND 


<i 


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<DS 


<n5 


ND 


uanToi 


NA 


NA 


NA 


NA 


NA 


NA 


N\ 


NA 


(DfJJTJZ 


yA 


NA 


NA 


NA 


NA 


NA 


N\ 


NA 


yA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


OiliTiai 


ND 


ND 


ND 


<i 


<i)i 


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XA 


NA 


NA 


NA 


NA 


NA 


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(IVJ6.1DL 


ND 


ND 


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OUTlifq 


ND 


ND 


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ND 


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ND 


ND 


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ND 


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ND 


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ND 


ND 


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NA 


<0i 


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ND 


ND 


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ND 


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ND 


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ND 


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iJ9j7t*l 


ND 


ND 


ND 


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ND 


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ND 


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NA 


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ND 


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ND 


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ND 


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ND 


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ND 


ND 


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<0i 


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ND 


IK7H.1V5 


ND 


ND 


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ND 



Fiirl jul kcc fhI QuiUcD HHT 



rag: lifl 



DclabcrTDO? 



Tabic All 
HrBillBarFAI],DCF^FCB,ChLDrlnalri] H rrbic id r, Bnd VOC Altaians 

Land II LL a 
P rcvid [o dF San Franc isij, Cal i Fnni la 



niji Njom 


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Lll 


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niElliiiBi' 


MTILH 


rcn 


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0[h*r 
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AHlylnjl 
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SABIID 










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SAtfJdHUl' 




1 


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IM^J-I 


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fMB^I 


'■^f-' 


fM=fl-l 


f4.»l-l 


l"?^' 


cihinuii r«i<ii ' 


ND 


HD 


ND 


4.T 


13 

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<0i 


XD 


LKiHChUJB 


("WlOfflS 


ObV&.'QJ 


ND 


ND 


ND 


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NA 


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DJf7M5 


ND 


ND 


ND 


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NA 


<S 


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XD 


i?ii6m 


ND 


ND 


ND 


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NA 


<5 


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XD 


mrf6w 


ND 


ND 


ND 


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NA 


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XD 


LHPBCWClJ 


ainbHfi 


ND 


ND 


N\ 


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<i)5 


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XD 


ast\b^ab 


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ND 


NA 


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ND 


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XD 


ND 


ND 


<J 


<i)5 


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ND 


(ilHI^OL 


ND 


ND 


ND 


<i 


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XD 


nzrroni 


ND 


ND 


NA 


<.A 


<i)i 


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<0J 


ND 


ainvn 


ND 


ND 


ND 


<A 


<i)5 


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ND 


nznim 


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NA 


NA 


NA 


NA 


NA 


NA 


NA 


aiiifm 


ND 


ND 


ND 


<J 


<i)5 


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XD 


mnvn 


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NA 


NA 


NA 


NA 


NA 


NA 


NA 


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ND 


ND 


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ND 


ND 


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NA 


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ND 


ND 


ND 


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NA 


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ND 


(iJTt'VV 


ND 


ND 


ND 


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NA 


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ND 


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ND 


ND 


ND 


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NA 


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ND 


ND 


ND 


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ND 


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ND 


ND 


ND 


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llJ79fflS 


ND 


ND 


ND 


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IJ9IIHJ9S 


ND 


ND 


ND 


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DfkUJ^S 


ND 


ND 


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= 5 


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ND 


ND 


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12114'iU 


ND 


ND 


ND 


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ND 


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LKBC^OI 

DUPajl6l>blA 
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OMJJTtV 


ND 


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ajiibw 


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aitnm 


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ND 


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aitnm 


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ND 


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aitnm 


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ND 


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ND 


ND 


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ND 


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ND 


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ND 


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(iiiji.a)] 


ND 


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NA 


NA 


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NA 


NA 


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[IJII4'D2 

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ND 


ND 


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NA 


NA 


NA 


NA 


NA 


NA 


NA 


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XA 


NA 


NA 


NA 


NA 


NA 


NA 


N4 


(rqjU'DI 


XA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


OVltTJL 


ND 


ND 


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ND 


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NA 


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XD 



Yinl aal S<«i ml C^LiailcD HXH 



nfp2iif2 



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Tabic All 
HrBillBarFAI],DCF^FCB,ChLDrlnalri] H rrbic id r, Bnd VOC Altaians 

Land II LL a 
P rcvid [o dF San Franc isij, Cal i Fnni la 



niji Njom 


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Lll 


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niElliiiBi' 


MTILH 


rcn 


TDlu<itr 


0[h*r 
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\na],liLjl 


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1 


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l^i^J-l 


l"?^' 


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ND 


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ND 




NA 


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03 


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ND 


ND 


ND 


<ii 


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XD 


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ND 


ND 


ND 


^45 


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ND 


ND 


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<0i 


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XD 


llJ79fflS 


ND 


ND 


ND 


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NA 


<ai 


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ND 


IJ9J70J9S 


ND 


ND 


ND 


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<0i 


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OMtJfflS 


ND 


ND 


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ND 


ND 


ND 


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ND 


ND 


ND 


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ijwrtw 


ND 


ND 


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ND 


ND 


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ND 


0JriAQ5 


PD 


ND 


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ND 


(iKII^ni 


ND 


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ND 


ND 


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ND 


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ND 


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DJII2ID1 


ND 


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□5110.01 L 


ND 


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ND 




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ND 


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NA 


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ND 


ND 


ND 


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NA 


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I - Tk iHcHjfLEil jnihliLj] bcI luxkh.) j rc I'lrjiialrMi f( rl'iiiDdl l>;)^iBniiig lalbr Sixond Qioil cr KID I Tkr ju IrixaL nKibndi lecJ ikirinf prcv>nLii 

qujrlcaaiE KknlilJcJ ld IbE rtij<i:4ih( ifjailcilL lEpHhrli 

2 -C\i:tii\fk\cl'iaitmlii^mTalbV: -l-Sallhc Su^^pter/^a"l:/^n/t•^'Mlllc^ Jar ItitD'tfllitut/illStna II) i^ Ifepo'HEKl .TOOfif 

|i^L - rTiiLii^|iiaint j^cllrr 

X'A - wtA Jiia],i[il 

XD - Kl ikLi>.l<\J 

FAHt - pihlrcyLliL jroBVK. b^ iIpicj rlxhn^ 

OCFi - L^qij rxK Kin nK f(UiL>J(t 

FC E - Ld □« KlthrDcl K} Iehc 

I^llt - |ii^L}i.klihniDi[Ll iMpbEn^ 1^ 

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Tjbic 1 in Lbc majD njHhil hlcnlifid jILdiiplicjic ami npli umpLd jad a^Dciaici I km ^Ihlhc wiW (wont ivhkklDr^ ^cn tolkdcd 

Tabic II ■ Ik malk n^B idrBlllEi tuncni ai\A IipLlmkjI daa i]iDllF:rB. 



FlBl AhI ItCDHi I>biKd ?0C7 



FaB[4Df>t 



OaolirrTOO? 



TablEA-I-4 
C TD J nd »BlEr E Le^ J I Id n S j n n j c^ 

LjndlLLLfl 
P rftvid [o of Ssin F rjnc ifto, Cii 1 1 rorn lii 



"'ill II) 


IIJK 


A*rrBgr Depth 

JfEflf 


lop Df CaHlnj; 

£lcv!ilLc[i 
frrclPLLWj 


G ran ndHalET 

ELcvdlLon 
iFEfl FLLlVf 


WeII rjpE 


LFG&aWOL 

1 
1 


OZ^2&07 


20 Jl 


21454 


21173 


MW 


OStli/K 


21.74 


2H54 


212 30 


MW 


(Bf22*6 


17:21 


21454 


2L73I 


MW 


OMIt^ftv 


I5J4 


21454 


2 19 211 


MW 


LLflgAfi 


2fi2l 


21454 


2fS jj 


MW 


06119105 


22.97 


21454 


2L157 


MW 


0H23I05 


19 J2 


21454 


2fS22 


MW 


OiniJOi 


IbSO 


21454 


2 17 74 


MW 


[2lt2IOi 


2ftil 


21454 


206 01 


MW 


CSf09*4 


25.91 


21454 


2(B6I 


MW 


(Bf21*4 


22:Zft 


21451 


212 26 


MW 


OitOSIOi 


lft.91 


21454 


2 IS 61 


MW 


ITJOllOi 


24.91 


21454 


209 63 


MW 


CBrii«i 


21A4 


21454 


2L0 9n 


MW 


06/fEIOi 


2IJCI 


2J454 


21124 


MW 


ajriQA)! 


20fi4 


21454 


21190 


MW 


[2JO2J02 


2ft (M 


21454 


2OS50 


MW 


06126102 


25.95 


21454 


2(ffi59 


MW 


Cef2B*2 


22 JO 


21454 


2L2 24 


MW 


OitOVOZ 


19 J6 


21454 


2[5 IS 


MW 


[[126101 


10.45 


21454 


204C9 


MW 


ainioi 


2ft.72 


21454 


20SS2 


MW 


€6taioi 


22.91 


21454 


2LE63 


MW 


LFIBGW02B 


02/2Myi 


50.LI 


22527 


I7.=i 16 


MW 


(BIL4A)th 


47.70 


22527 


177 5? 


MW 


(Bf22j(i6 


44.75 


22527 


ISO 52 


MW 


CGfOMJS 


49ift 


22527 


175 6fl 


MW 


LLf2Sj05 


50.72 


22527 


174.55 


MW 


(ffif29AH 


49.70 


22527 


175 57 


MW 


Cef2J*5 


49 JO 


225 J 7 


175 97 


MW 


CGf[4AH 


51.95 


22527 


17132 


MW 


l2/LJffl4 


52ii 


22527 


17103 


MW 


cfrwni 


5059 


22527 


I74 6B 


MW 


CQ/24AU 


4951 


22527 


175 76 


MW 


CG4C«4 


5I£0 


225 J 7 


17167 


MW 


[2J01IOi 


51.94 


22527 


17133 


MW 


0&<[[IOi 


5IJ)7 


22527 


174 20 


MW 


OfJ02/Oi 


50.87 


22527 


17440 


MW 


(Gricijfii 


52.11 


22527 


171 14 


MW 


12/02*2 


52 J9 


22527 


172 73 


MW 


ai26KQ 


5I£0 


22527 


17167 


MW 


Cef2SAJ2 


5IJ0 


225 J 7 


17197 


MW 


CGf04;02 


52.7fi 


22527 


17251 


MW 


LLf26fll 


52.71 


22527 


172 54 


MW 


fSf2TA)l 


51.94 


22527 


17133 


MW 


OitOilOl 


51.9ft 


22527 


17129 


MW 


LPBGWM 


02/2tM7 


1ft :Z5 


2104E 


192 16 


MW 


CSfL4AMh 


17ii 


21041 


19117 


MW 


CBf22fl6 


11J2 


21041 


196 99 


MW 


lGf06fl(h 


15 J2 


21041 


195 tP 


MW 


LLf2a*5 


19 J9 


21041 


19102 


MW 


(ffif29*5 


lftJ4 


21041 


192 07 


MW 


Cef2JjW 


1630 


21041 


19191 


MW 



FiiS iuid Saond Qu jner!. 2CD7 



PaeE I oF4 



Onolffr2007 



TablEA-I-4 
C TD J nd »BlEr E Le^ J I Id n S j n n j c^ 

LjndlLLLfl 
P rftvid [o of Ssin F rjnc ifto, Cii 1 1 rnrn lii 



»tLLII> 


lljlr 


A*rrBgr Depth 

JfEflf 


lop Df €aHliij> 

EkvallDn 
frrclPLLWj 


G ran ndHalET 

EEcvdlEon 
irEfl FLLlVf 


WeII rjpE 


LFG&aWM 


CGrr4/c6 


15JI 


210.41 


195 CO 


MW 


[2/tilOi 


4I>£5 


23041 


189 76 


MW 


CC«9fl^ 


19^7 


23041 


190 94 


MW 


02/26101 


3H:Z5 


230 41 


192 16 


MW 


(Bf24fl4 


JH.Ll 


2304L 


192 25 


MW 


CG4C44 


16JX) 


2304L 


19141 


MW 


12/01*1 


19 J4 


2304L 


I9E07 


MW 


CiriLA)! 


lfti4 


23041 


I9LS7 


MW 


(femjOi 


lTi2 


23041 


192 39 


MW 


(GrioAi 


17 J4 


2304! 


193 07 


MW 


L2/01fl2 


40.18 


2304r 


19023 


MW 


(et26l02 


19:21 


2304E 


I9E IS 


MW 


0if2ilOl 


17.92 


2304E 


192 49 


MW 


CGfCi«r2 


17.15 


23041 


193 26 


MW 


LFr26j1i| 


4IJ14 


2304! 


189 37 


MW 


(fflf2Tj(i| 


40:26 


23041 


190 15 


MW 


o^mioi 


1ft J4 


23041 


192 07 


MW 


LFC6GW(li 


02/26107 


i5ja 


234.70 


199 32 


MW 


osni/ob 


36? 


234.70 


198 50 


MW 


OH22iOt, 


11.54 


234.70 


203 16 


MW 


0310610b 


1IJJ9 


234.70 


203 61 


MW 


LLf2SAH 


17il 


234.70 


197 17 


MW 


fSf29AH 


17.17 


234.70 


197 53 


MW 


(Bf2JAfi 


IIJB 


23470 


20E22 


MW 


MfliAH 


lIXi? 


23470 


203 6B 


MW 


12/13*4 


345 


234.70 


199 90 


MW 


(ffif09*4 


17i7 


234.70 


197 13 


MW 


(Bf24-04 


35 S 


234.70 


I9B90 


MW 


CG4Cj1i4 


12.15 


234.70 


202 55 


MW 


12/01*1 


17 J5 


234.70 


197 35 


MW 


CB/lt*l 


17.40 


234.70 


197 30 


MW 


O&OZ/Ol 


15fiO 


234.70 


199 10 


MW 


0]/IO*1 


H52 


234.70 


2(0 IS 


MW 


12/02*2 


17 J 7 


234.70 


197 33 


MW 


(ffi/26*2 


17.17 


234.70 


197 23 


MW 


05/28*2 


15.4ft 


234.70 


199 22 


MW 


03/04/02 


11:21 


234.70 


20E47 


MW 


LL/2&0I 


16Jfi 


234.70 


198 34 


MW 


M/2T*I 


17*5 


234.70 


197 re 


MW 


(Si'SIAII 


15£7 


234.70 


199 03 


MW 


LFGSGWOS 

1 


irl/ZWt" 


19.95 


214JI 


2U36 


MW 


(RIL-IAH> 


20*2 


234.31 


2l3 6fl 


MW 


!6l22/0f. 


15.84 


234.31 


218 47 


MW 


03/06^6 


15.12 


234.3 E 


219 19 


MW 


LL/2E/05 


24J9 


234.3 E 


209 92 


MW 


(ffi/29*5 


2E ] 


234.31 


2r3 2l 


MW 


05/23/05 


I7J4 


234.31 


2 16 97 


MW 


03/11*5 


14.91 


23431 


2r9 3S 


MW 


12/13*4 


24.71 


234.31 


209 5S 


MW 


CB/09Ai 


24:25 


234.3 f 


2EOQ5 


MW 


05/24*4 


20*5 


234.31 


2E3 66 


MW 


03/C«*4 


15.84 


234.31 


2E8 47 


MW 


L2/0L*1 


21^7 


234.3 f 


2E0S4 


MW 



FiiS iuid Saond Qu jner!. 2CD7 



P!iec2oE4 



Onolffr2007 



TablEA-I-4 
C TD J nd »BlEr E Le^ J I Id n S j n n j c^ 

LjndlLLLfl 
P resid [o of Ssin F rjnc ifto, Cii 1 1 rorn lii 



"'ill II) 


IIJK 


A*rrBgr Depth 

JfEflf 


lop Df CaHlnj; 

£lcv!ilLc[i 
frrclPLLWj 


G ran ndHalET 

ELcvdlLon 
iFEfl FLLlVf 


We]I rjpE 


L.I mc.w<K, 


CiflLCl 


2li7 


234JI 


212 44 


MW 


Ob/OZiOi 


19 J 1 


2J43I 


2 IS CO 


MW 


OitlOHH 


18.96 


2J43I 


2 IS 35 


MW 


LZflUfl? 


24.75 


2J43L 


209 56 


MW 


(fif26rtl2 


21.76 


2J43L 


2L0 55 


MW 


f6t2tHS 


19*9 


2J43L 


2 LI 62 


MW 


OiHOJOl 


1752 


2J43E 


2L6 79 


MW 


[[126101 


24.75 


2J43L 


2{fl56 


MW 


CSfniOl 


24.71 


2J43L 


209 60 


MW 


CBKSAJI 


20J.7 


2J43L 


2I3S4 


MW 


LFC6PZ0L 


02/26IVS 


11.68 


2J431 


220 66 


PZ 


WfLiflb 


11.90 


2J431 


220 44 


PZ 


{6f22Kt& 


Si55 


2J431 


225 6fl 


PZ 


VitOfJK 


9?? 


2J434 


225 12 


PZ 


LLf2SAH 


20JJ9 


2J434 


21425 


PZ 


(Bf2^fl5 


15. L 7 


2J434 


219 17 


PZ 


05123105 


NL' 


2J431 


NA 


PZ 


OitJi/Oi 


955 


2J434 


22179 


PZ 


[2/lilOi 


IS67 


2J434 


215 67 


PZ 


(ejWAU 


!'iJi6 


2J431 


2L5 7S 


PZ 


teii-iAU 


.IJ2 


23i3-l 


222 12 


PZ 


oitaioi 


10. 10 


2J434 


221.24 


PZ 


L2/0fei 


18.77 


2J434 


215 57 


PZ 


tSflLAJl 


16.95 


2J431 


2L7 39 


PZ 


{fiiffijOl 


12.18 


2J431 


22ES6 


PZ 


CGricriii 


ll£4 


2J434 


222 70 


PZ 


L2rtilfl2 


21.77 


2J434 


212 57 


PZ 


(ffif26fl2 


NL' 


2J431 


NA 


PZ 


(Bf2Sfl2 


NL' 


2J431 


NA 


PZ 


MfCHjOJ 


969 


22431 


221.ffi 


PZ 


LLr26«l 


2li2 


23431 


2L2 52 


PZ 


tSf2TA)l 


21.74 


23431 


2L2 60 


PZ 


ceitsfli 


nil 


23431 


220 SI 


PZ 


LR6PZII2 

1 
1 


OZf26fl>7 


11.16 


234.62 


203 46 


PZ 


aiiijos 


26B5 


234.62 


207 77 


PZ 


Cef22flJ6 


19 J6 


23462 


2L5 16 


PZ 


Cl3«M)G 


21:29 


23462 


2LL33 


PZ 


LLr2S«5 


11JJ9 


23462 


20L53 


PZ 


(ffif29*5 


29JJ6 


23462 


205 56 


PZ 


05123105 


21.85 


23462 


2L2 77 


PZ 


03<[iJO5 


21.87 


23462 


210 75 


PZ 


[2/l3IOi 


11.90 


23462 


20172 


PZ 


CBTOMU 


12ii 


234.62 


202 33 


PZ 


CQr24AU 


28 JH 


234.62 


20S57 


PZ 


03<0il0i 


25.40 


23462 


2{fl22 


PZ 


[2JO[IOi 


1455 


23462 


2«iQ7 


PZ 


CSfLLfll 


11.11 


23462 


203 19 


PZ 


06iO2jO1 


29 J5 


23462 


205 27 


PZ 


CGriCijUl 


2950 


23462 


205 12 


PZ 


[2J02HS 


1622 


23462 


198 40 


PZ 


0St26lfS 


12:26 


23462 


202 36 


PZ 


fst2sjca 


27.95 


23462 


206 67 


PZ 



FiiS iuid Saond Qu jner!. 2CD7 



P!iecloF4 



Onolffr2007 



TablEA-I-4 
C TD J nd »BlEr E Le^ J I Id n S j n n j c^ 

LjndlLLLfl 
P resid [o of Ssin F rjnc ifto, Cii 1 1 rorn lii 



ll'dLII) 


lljlr 


A*rrBgr Depth 

JFEflf 


lop Df CaHlnj; 

EkvalLcn 


G rau ndualET 

ELcvdlLon 
iFEflFLLlVf 


We]I rjpE 




LHBPZCG 


CGfCHTj 


21f2 


234.62 


207 CO 


PZ 




Iir26j1i| 


IT. 19 


234.62 


I9T43 


PZ 




(ffif2T*l 


1550 


23462 


199 12 


PZ 




Ce/fKAll 


lOJfl 


23462 


203 74 


PZ 





Nkcv 

1- All d^jT h Id i«aEr inE:]'iDieni?iii& JUT ai avrrag? or I krcL' iKMiu [TjnEnL'k ndiiili:^ JiLliefLeLd 

2- Pir'niTiinec ^'dik citverrd id Ijndsz^piug iii!l?ji jI jnd ivoiv un LccJcd dujiug e h? &u Phry. 
NL- Hit Itmizd 

NA - nH JUJiliibLc 

W^V- MunUmn^ Well 

PZ- ?\cfia\azi 

Icei PLLW- kei jl"ic Preadu Loner Lo* ^Jcr viTEl [cjI dji u m 



FiiS and Saond Qu jner!. 2iX7 



Paec4of4 



Onolffr2007 




LEGEND 

* LFQBGWQ3B l"iriiiiiidv.jilcr Mim iliinng U'cLI 



17516 

■?LFOBPZDa 
203 46 



f icfiiuiclcr 

hcbiUiiij' ?00 7 GnilnidwfllH tlcvalmn 

Mun] LiiTuip *cLliiiiL uhmIiii 
Liinlii [mnp , HTi:ciicd in bcdrint 

Ajijiruiiintilc [Jiicftinn 
D ri~miiiTidw jKt I'lnw 

Graundw^Ld- f:Li^'jil]ini Cimliiur 
iConlDiir hln-vfll 5 0) 



laM 



E:ilciilari.£iidriLL 

PicMiniiLy Hcmavcd 
Umlilmg 

TapuBTflpbTC Cnnlmir 



i 



LANDFILL 8 SFTE PLAN 

AND 26 FEBRUARY 2007 

GROUNDWATER ELEVATION MAP 

TVeadwdl&Roiio 




rifcpitiLHtu'flIu dfin'^Don dfiS collccrd 
Mi2tFitjiiH>2007 

Hojisjnlfil Dfiliiiii NAD 27, CA SlaK 
PI^H CuudDi^Es, Zchh: J, &:{! 

Valval EUIuhq {f]&iiitiwaH]| Pic&idiQ 

<lqyigJBph>| Nujfli Aimman Vancal 
Daim,NAV[>aH 



Presidio Trust 

UGa-m-nH-s* 

SanFrsnz^iG CA 

JI5.f4l 510 
Cb< 5bl.SI5 

FIGURE A- 2-1 



rirst Quarter 2007 



MONITORING WELL SAMPLING LOG (Normal, Low Row, and Low YJefd) 



RKCfdBd By 



a^ 



rMmWiiJ 



Sam^wby 



Dala 



Ifj/Q-) 



WEU,L PLTflGINQ 



IPUPGE VOLUME 



Wair sin^ dlartiBls' 

n ?'i«'i B^ '-^ch jJOllwr 

Weil TcrtflF Depth (TD, fL litlCTiv TOC) r V-T^ 

DEpUi [□ IValH (WU f 1. befaw TDC) : iO ^^-^ 

DspiriiD Fr9>pliaA« jR*. Yl. beloiiTOC) : 

NcjuiCsral butehnlE vrAinns 1q ba puroed 
n^ ■ r|ff rjoUppgcrtlB Qpiligr 



[.JquliJ In 1 


1 1 Fnal S^Efnn of i Bnnnp (^BUcnil 


QdvPiDlf Si.^9 


'Z^d&ing 


Sin- 


WaiBi Volump/H 


B 




I 




09 


m 




a 




IBB 


[3 




4 




gp? 



I PUPCEWETHQD 



-^ 



[iBjil&r^TypB 
J/dlDDu'lHl |m»h 5 gpnij LJClHar 



PUUP IMTAJCE 




Hnarrop D^IFi([l) 

BodDiTi lj€piri(ll) ^1 



FUnGEVnUJ^TECALCULATror^ 



i^farsrCDluiilnLBnglli 
TOIW PluBO ITfrw \t^t^\-\ 



WbIef VcduniBrrt 



Nn *irt 



Pu^HaH 



5Ti'^^-. 



B\£ 



CiLCL^tjiTCnFUnGEVC_U^ic 



3:1 



.13 3 



j^Cn;AL PURGE /CLUME 



1 GROUNDWATER PARAHETER MEASUREIHEniS 




J 


BiBiBrTvEH 


'V^S'SiAu.LJ.rno 




^ 






■" 


1 [Ime y ^Jjgf!r 


VH 


^Terrc LiD 


frTi^JIriTil 


QRP 


1 TurDlaltv 
t fWU) 


c;aniiQmE 




t i T-5 , ( i" 


L.\ 


ir-^ 


^-H 


\ Z6 7 u'y 


i^T 


iti 


y/l-;lf fl 




ICI^^ .' ^.t. 


A-l 


»r^ 


<J 


a*^*^ 


1 ^^4 


^ 


^/WlX/.j-? 




if^i ^ vr 


hi.. 


ii-.7 


^^ 


ii->o 


r^w 


^ 


'jnv-; ^^^"x 


1 


ifii / *- k.t 


trs 


1.1 


lit* 


.Vt 


"^ 


O;^; 7(4 J 




1 1 
















^ 1 










1 








1 




























1 




























1 






































































1 1 










1 / 

















^□mminEH Punjd jWef sRhi 


igai^mpisal ^BQumpai«ml 


fr -tAOHirr BuC^-' 




WELL SAMPLING 




} SAMPLING UEIHOD L DalolThia SairplBBl J / 1>/ 1' ' 
Purging ^ ^ ^ 


t tSt'^ 


rjflup 






SampiD Hiian^- ^/ru 


pntoBiJSuDivj^jniviiE. >^^ 'f 








SAMPur^r; pfiogruji i 






5i iiplc rin 


nnnr"no,-=r./olumB UmH* f 


[hk; J 


COnmanLa 








Lf-riif ^wnj 


H^;<- /uu. 


^ 


IHJ 










^J^lf -L 


ri ^ 








. ■ 


^jtS^U-.L r,.k 












P liLA-y '*»i. 










qilALETV COKTnOL SAMPLES { 






Bfiinli San'iiM 




DijdIIcbIb 53niE<n 








Oj^undl S'ridlf ,4j. 


l>iiC«'eB» ^BrmlB r«L 




TVQB 


SnmnlD Na. 
























llreadwelCfAoiia 


rnnto 






SMronntenOt r^ SoM^z^iii Conn 


i)lapt 






UHwr 


.^^^ ■ ^ ^i 





MONfTORiNG WELL SAMPLING LOG (Normaf, Low Flow, and Low Yield) 



Profgcr rvumbir '- ol S 
Recorded Bu 



1 



M 



Sdmt'ad bj 



R 



Ws(l NO. 
Wmr Typs 



i.fO&Jr^OlQ 






WCLL PUFTGINQ 



[PURGE VOLUME 



PURGE METHOD 



WeH ;a&iri5 dinmela' 

VUerJTnTaJDpplh [TIMLbdijwTCiqr d'^^" 
Dep[liinWiier(WL,ll.b»roiTTOC]; iO^n 
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FILL SITE 6 

APPENDIX SECTIONA-3 

SEMI-ANNUAL GROUNDWATER MONITORING REPORT 

FIRSl' AND SECOND QUARTERS 2007 

Presidio of San Fraucisco, California 



1-0 INTRODUCTION AND BACKGROUND 

Fill Sire (FS) 6 is located in Ihe norlheaslern portion of the Presidio (Figure I j. The lopography across 
FS 6 is relatively flal and covered by buildings, streels, paved areas, and bndscapiiig. The site ground 
surface elevali on ranges from approximalely 10 Io40 feet above ihe PLLW datum (Moiilgomery 
Watson, 1997a). 

FS 6 is bounded by Lincoln Boulev^id to Ihe soulh^ Halleck Streel lo the wesi. General Kennedy 
Avenue lo the east, and Doyle Drive lo Ihe north (Figure A-3-1). FS 6is reported lo contain 
building debris from the original Letlerman Army Medical Center, which was demolished in 

1975, as well as a variety of other buildings. During construction of the parking lot east of 
Building 102S in the l9EOs, some building debris w^s discovered [Dames & Moore, 1997). In 
the southwest comer of the site, a mounded area rel^hve to the adjacent ai"eas(FS 6A), was 
formerly present and contained PC B -impacted soil [EKl, 2003). 

The Trust installed four monitoring wells (LF6GWI00, LF6GWI0I, LF6GWm2, and LF6GW103) 
in July 200010 investigate whether FS 6 contains soluble concentr^hons of chemicals of conceni that 
adversely affect groundwater quality, and to inveshgate the possibility that fill materials extend west of 
Guard Road (EKl, 2003). As discussed in Section 3.0, FS 6 w^s divided into two portions, FS 6A and 
FS 6B (Figure A-3-1). In FS 6A, polychlorinated biphenyl's (PCBs)and mercury were present in soil 
above applicable cleanup levels. In preparation for the FS 6A remedial achon, monitoring well 
LF6GW102 w;is abandoned in the First Quarter 2005. Remedial excavation was completed in 
Sejitember 2005 at FS 6A. Prior lo the First Quarter 2007, the Tiust installed six piezometers 
(LF6PZI0I througli LF6PZI06j at FS 6A as descnbed in Section 3.0. 

Groundwater samjifes collected from FS 6 monitoring wells [Figure A-3-1) h^ve been analyzed 
for general chemisti"y, dissolved oxygen, total organic carbon (TOG), TPHg,TPHd, dissolved 
gases (ethane, ethene and methane), polycyclic aromatic hydrocarbons [PAHs|, organochlorine 
l>eshcides (OGPs), PGBs, 23 dissolved metals, and arsenic speciation. Additionally, monitonng 
well 23 1 CW09 was added to the FS 6 monitoring plan to serve as a downg"adient well for FS 6A 
and has been sampled for general chemistry, dissolved oxvgen, VOCs, MTBE, TPHg,TPHd, 
TPHfo, and dissolved metals. Groundwater analytical results are presented m Tables A-3-1 
through A -3 -5. 



A-3-1 
Fiisl Bitd Sc[:and QLiail[:i& 2007 October 2007 



To evalualechangmg redox conditions, pH, lemper^ture and oxygen -reduction polential lORP) 
were added lo llie j'lrogriim in the Firsl Qiiarler 2007. The Tccim\cat Memoiimditin, Evalualicn 
qf Arsenic and Olhei Mclah in Groundwalcr a! Three Corredive Action Plan Sites. Presidio of 
Sun Fiaitcisco, San Francisco, Caiijotniii (MACTEC, 2006), concluded ih^l ORP is a good 
indicalor for evalualing changing redox conditions. The Firsl Quarter 2007 pH, lenii^eralure and 
ORPdat^ are presented in Table A-3-2 and will be used in Ihe ongoing i"edox evaluahons al 
CAP sites. 

2,0 SITE DESCRIPTION AND GEOLOGY 

FS 6 is located in the Norlheastem Groundwaler Area of the Marina Ground waler 

Basin (Figure 1 1. Deplh to gioundwaler ranges from apj'iroximately 6 lo 22 feel bgs, based on 

groundwater moniloring well d^ta. Groundwater level dala indicate gjoundwaler flow is 

generally lo Ihe north, towards ihe San Francisco Bay. 

During the drilling of the Rl soil borings in the eastern portion of FS 6, two lithologic units were 
encountered in ihe area. Underneath ihe paved areas west of Building 1028, the upjier layer 
consists of fill maten^l extending lo ^ maximum depth of 7 feel bgs. The fill was found lo 
include wood, bricks, concrete, ceramic tiles, asphalt roofing materials, and buckshot 
(M on igomeiT Watson, 1999b). The fill is believed to consist largely of building demolition 
debris. Below the fill is clayey silly s^nd lo well-sorted s^nd with minor clay layers of the 
Colma Formahon, which is consistent with geologic mapping of the ^rea conducted by Sch locker 
(Sch locker, 1974). The Franciscan Formation is esh mated lobe j'lresent al approximately 
175 feel bgs in this area. 

Lithologic units encountered in Ihe southwestern corner of FS 6 include an upper layer of hfl 

material extending lo an approximate depth of 15 or more feet, underlain by slope debris, 
ravine fill, and Colma Formation deposits. The fill consists largely of building demolition 
debris in a sand mainx and ranges from minor debris to significant sand and concrete 
foundations and mbble. 

3.0 REMEDIAL ACTION PLAN 

The Remedia! Action Phn (RAP)/^r Fiif Sile 6A and Baker Beach Disturbed Areas 3 and 4^ 
selected excavation, recycling, and offsile disposal of impacted fill material and underlying soil, 
along with giound water monitoring, as the remedial alternative for FS 6A (Figure A-3-l|. The 
goal of the remediation at FS 6A was to remove all contaminated material, leaving in place soil 
thatmeetstheeslabhshed cleanup levels IJreadwell & Rollo, 2003cj. 

Based on the availabihty of new dala associated with the Building 1065 Study Area, FS 6 has 
been divided into two portions, FS 6A and FS 6B (Figure A-3-1 j. FS 6A addresses the portion 
of FS 6 bounded by Lincoln Boulevard to the south, Girard Avenue to Ihe east, Ihe area just west 

A-3-2 
FiiEl Bitd Second Qiiantis Z007 Oclobcr2007 



of ihe buildings to ihe wesi of Halleck Street, and r sidewalk be^^^een Building 227 and 1030 to 
fhe north. In FS 6A, PCBs ^ud meicuiy weie formeily piesenl in i^oil above applicable cleanup 
levels. The remainder of FS 6, consisting of FS 6B, will be subject to an evaluation of data and 
potential remedial action alternatives in r future decision document (Tread well & Rollo, 2CX]3c). 

Pre -excavation activities for FS 6A began m winter 2004 and excavation began m May 2005. 
Prior to remediation ei'icavation activities ^nd the Second Quarter 2005 sampling event, 
monitoring well LF6GW102 was abandoned. The FS 6A remedial exc^v^tion was completed in 
September 2005. Following completion of excavation activities, three new wells (LF6GW104 
throngh LF6GWI06) were installed ]ier the RAP and six new piezometers (LF6PZ101 through 
LF6PZI06) were installed to monitor water levels related to stream restoration at loc^hons 
shown on Figure A-3-] . The six new piezometers were constructed using hand-held equipment 
and were installed directly into native soil. Because no sand pack or grout material was used in 
the construchon of the piezometers, it was subsequently determined that development was not 
required. 

The installation of the new wells and piezometers completes the FS 6A RAP groundwater well 
monitoring network, which consists of both new ^nd existing wells. The proposed gi'oundwater 
monitoring program and rationale is presented in T^ble 10 of the RAP. The six piezometers 
have been monitored quarterly for groundwater elevations starting wilh the First Quarter 2006. 

In accordance with the California Code of Regulations, Title 27, Subchapter 3, Section 20390, a 
site th^t has undergone clean closure (where all wastes and residues, contaminated subsoil, and 
other contaminated materials are removed or decontaminated ^1 closure) must be shown to 
comply with the w;iter quality protection standards or the cleanup levels presented in Sections 
of the RAP for three years. Table 3 from the RAP summarizes groundwater cleanup levels 
applicable to FS 6A. Table 3 from the RAP summarizes groundwater cleanup levels applicable 
to FS 6A. These cleanup levels are based on the most stringent values for protecting drinking 
and surface waters. RAP -specified groundwater cleanup levels for some an^lytes are shghtly 
lower than their QAPP analytical reporting limrts. Apphcable RAP-specified cleanup levels are 
listed on sited^ta tables A-3-1 through A-3-5. 

4JI GROUNDWATER MONITORING 

Groundwater elevations and samples were collected from FS 6 associated monitoring wells 
dun ng the First Quarter 2007 and ^n^lyzed for the parameters described in Sechon5.0and 
T^ble 1 A. No gioundwater elevations or samples were collected from FS 6 Area monitoring 

wells and piezometers m the Second Quarter 2007; however, downgradient monitoring well 
231GW09 w^s sampled dunng the Second Qu^iler 2007. Groundwater monitonng well 
locahonsare illustrated on Figure A-3-1 and gioundwater elevations are illustrated on 

Figure A-3-2. 



A-3-3 
Fiisl Bitd Sc[:and QLiail[:i& 2007 October 2007 



The casing was msed and a new well bo'i installed al m oni Ion ng well LF6GWI04 on 
30 January 2007 because the ground surface was raised during the landscaping of the Sile 
following remedial excavahon. The lop of casing elevalion listed on Table A-3-6 dunng the 
Firsi Quarter 2007 represenis the resurveyed elevalion. 

4.1 C round nater-Level M«flsuremenls and Int«rpretalion 

Gioundwaler elevations at the PS 6A shallow aquifer monitoring wells were evaluated with 
Building 231/207 and Building 1065/1027 shallow monitoring wells lo better understand 
groundwater flow direction and gradients m ihis area. Current and hislorical FS 6 water 
elevalions are preseiiled m Table A-3-6. Monitoring well data for these adjacent sites can be 
found in Tables A-IO-3 and A-l I ^, re spec lively. A discussion of groundwater elevation trends 
m ihe FS 6 and Building 1065 vicinit>'can be found in Section 5.1 in Appendix A-l I. 

Groundwaler elevalion measurements were collected on 26 February 2007. During Ihe First 

Quailer 2007, groundwater elevations, within FS 6A and associated wells, ranged from 10.91 lo 
19.54 feel above PLLW in momtonngwellsLF6GWI03 and LF6GW105. respechvely 
(Figure A-3-2). The water level measurements from Ihe six piezometers ranged in elevalion 
from 9.23 to 13.50 feet above PLLW. dunng Ihe First Quarter 2007. These water levels are 
associaled wilh surface siream water levels are shallower ihan site groundwaler levels, and 
therefore, Ihev were not used lo crealegioundwaterconlours. Groundwaler elevations were not 
measured during the Second Quailer 2007. 

The groundwater flow direchon in ihe FS 6 Area was generally norlh to northeast towards the 
San Francisco Bay during the Firsi Quarler 2007, which follows Ihe general lopographic trend 

iFigure A-3-2). The average gioundwaler gradient in ihe FS 6 area was calculated lo be 
approximately O.Ol feel per fool during ihe FlrsI Quarler 2007. The overall groundwater 
gradients and flow direc lions observed during the Firsi Quarler 2007 isconsisteni with gradienis 
and flow direclions previously observed. 

4.2 Monitoring W«ll Purging and Sampling 

The First Quarter 2007 sampling at FS 6 occuired on 27 and 28 Februaiy 2007. The First 
Quailer 2007 sampling at FS 6 was conducted in accordance with methods shown in Tables I A 
of the main texl and in accordance wilh procedures descn bed in Ihe FSP (Tread well & Rollo, 
2001a). No groundwater samples were collected from FS 6A during Ihe Second Quarter 2007. 
However, downgradient moniloring well 23 1 GW09 was sampled during Ihe Second Quarler 
2007, as proposed. 



Fiisl Bitd Sc[:and QLiail[:i& 2007 October 2007 



Purge equipment, piirgiiig volumes, purge w^ler genera] c]ieinisli">' pur^mereis, and saiiij'kling 
equipment for each moniloring well are described in the purge records located ^1 Die conclusion 
of ihis section. Purge waler w^s stored for future disposal in one of Iwo2,800-gallon 
aboveground polyethylene storage lanks, which are located at the Central Magazine. 

4.3 C round nater Analytical Program 

All groundwater samples collecled were submitted to Ihe project hboralory for Ihe analyses 
^hown in Tables 1 A ^nd IB of the main text. The appropriate sampling containers, 
preserv^hves, and maMmum holding times for each analytical method are shown in T^ble 5. 
Sample containers used for each well are described in the purge recoids located ^1 Ihe conclusion 
of this sechon. 

QA/QC samples were collected as p^rt of this program. Section 6.2 of the main lext discusses 
the QA/QC sampling ^nd analysis performed during Ihe First and Second Quarters 2007. 

5-0 GROUNDWATER ANALYTICAL RESULTS 

Currenl and historical analytical results are presented in Tables A-3-1 through A-3-5. During the 
First Quarter 2007, gioundwater samples collected from the six FS 6 were analyzed for 23 
dissolved metals, TDS, total sulfide and general chemi shy . Additionally, redox (pH, ORPand 
temperature) parameters were measured. ORP, pH, and tem]>erature were measured m the field 
and results are presented in T^ble A-3-2. LF6GW100. LF6GW101.and LF6GWI03 were also 
analyzed for PAHs, OCPs, PCBs, TPHgand TPHd. Groundwatei samples collected from 
LF6GW104 and LF6GWI06 were additionally analyzed for PAHs, TPHd and TPHfo. 

Monitoring well 23 1 CW09 was analyzed for general chemistry parameters, 22 dissolved metals, 
TDS. TPHg, TPHd, and TPHfo during the First Quarter 2007. In addition to the parameters 

analyzed during the First Quarter 2007, monitonng wen231GW09 was also sampled for 
VOCs/MTEE ^nd total sulfide. 

No RAP-specified cleanup levels were exceeded dun ng Ihe First Quarter 2007 within the Fill 
Site 6 gioundwater samples. The following sections discuss analytical results collected at FS 6 
dun ng the First Quarter 2007. Analytical results associated with monitoring well 231GW09 are 
discussed in Appendix A Sechon A-IO. 

5-1 Dissolved Oxygen Resnits 

Dissolved oxygen was measured in wells sampled during the First Qu^iler 2007. Dissolved 
oxygen results are j'lresented in Table A-3-2. During the First Quarter 2007, dissolved oxygen 
was measured at concentrations ranging from 037 to 0.9 mg/Lat monitonng wells LF6GW100 



A-3-5 
Fiisl Bitd Sc[:and QLiail[:i& 2007 October 2007 



and LF6GWI06» re ^jiec lively. These levels are wilhin historical ranges previously measured at 
FS6. 

5.2 General Chemi£ti'\ Results 

The majority of the general chemistry parameter resuUs measured during Ihe Fir^t Quarter 2007 
were within or near historical ranges and are not considered significant. New high/low 
concentrations detected are only slightly outside of historical highs or low? and can be attributed 
to the relatively ^mall number of sampling events at some locations and to natural fluctuation. 
Significant detections are discussed below. 

Nitrate as nitrogen was detected at a concentration of 1 mg/L in the LF6GW100 sample, which is 

more than double the previous high concentration (0.42mg/L) within this well. 

5-3 TPH Results 

TPH was not detected within any FS 6 wells during the First Quarter 2007. TPHd has been 
detected sporadically at relahvely low levels in monitoring wells LF6GW100 and LF6GWI03 
but has not ei'iceeded RAP cleanup levels to date. TPHg and TPHfohave not been detected in 
any FS 6 monitoring wells. 

5-4 OCP and PCB Results 

No OCPsor PCBs, were delected within the FS 6 monitoring wells sampled and analyzed for 
these compounds during the First Quarter 2007, as shown m Table A-i-2. Aldrin and dieldrin 
have previously been detected above RAP-specified cleanup levels in wells LF6GWI03 and 
LF6GW100, respectively. OCP concentrations will continue to be evaluated during future 
samphng events at wells LF6GW100, LF6GWI0Uand LF6GW103, in accordance with 
the RAP. 

5.5 PAH Results 

No PAHs were detected in FS 6 wells sampled for these analytes during the First Quarter 2007, 
as shown in Table A-3-2. 

5.6 Dissolved Metals and TDS Results 

The majority of dissolved metals results from the First Quarter 2007 were within or near 
historical ranges. New high/low concentrations detected are only slightly outside of histoncal 
highs or lows and can be attributed to the small number of sampling events at some locations and 
to natural fluctuation. Significant detections are discussed below. 



A-3-6 
Fiisl Bitd Sc[:and QLiail[:i& 2007 October 2007 



Arsenic, cadmium, cobalt, copper, lead, and nickel were delected for The firsr rime wilhin 
theQA/QC sample from m on iloring well LF6GWI05 dunng the First Quarter 2007. The 
majonty of tliesedelections were a result of a lower leporling limil used by Ihe QA/QC 
laboratory. None of the delected conceiilralions ei'iceeded the RAP cleanup levels for 
FS 6 moniloring wells. 

Aisenic, cadmium, and coball were detected for the first time wilhiit Ihe QA/QC sample 
from monitoring well 231 GW09 at concentrations of 4.7, 0.09 and 0.39 jJg/L, 
respectively. The delecled concentrations al the QA/QC laboratoi"v are lower than Ihe 
typical laboratory leporting limits at the primary laboratory for these analyles, which 
accounis for ihe firsi lime deteclions wilhin ihis well. RAP-specified cleanup levels do 
not apply to monilonng well 23IGW09. 



6-0 GROUNDWATER REDOX PARAMETERS 

Several parameters were nieasnred in the field and in the laboratory to help determine ihe redox 
stale of groundwaler at Fill Site 6. 

The Trnsi has prepared a Technsctii Memoiaiutitni: Aisen'sc ami Other MeUsh !n Groiindwcitej at 
Three Coirective Acliem Sites, Prei\dso of San Franciseo. Caltfomta lo aid in evaluating 
groundwater conditions alCAP siles (MACTEC, 2006a). This technical memorandum discusses 
the rednclion/oxidation (redox) stale of ground water al FillSile 6 using data collecled as pait of 
the Presidio-wide Groundwater Moniloring Program in order lo provide ujigradient gronndwater 
informalion for Ihe Building 231/207 and Building 1065 Area CAP sites. Groundwaler redox 
parameter resnhs collecled during ihe First Quarter 2007 were generally wilhin Ihe range of, or 
slightly outside of, previously detec led concenlrahons al Fill Sile6. Analylical results detecled 
significantly onlside of hislorical bounds are summarized below. 

■ Nitrate as nilrogen was delected al a concenlration of I mg/Lin Ihe LFGWIOO sample, 
which is more Ihan double the previous high concenlration [0.42 mg/L) wilhin Ihis well. 

Modified redox diagrams were developed for each Fill Site 6 moniloring well sampled. The 
redox diagrams were generaled using Ihe Sequence™ program and concenlrations of dissolved 
oxvgen, nilrate, manganese, iron, sulfale and melhane and are plolled on Figure A-3-3. Each 
redox diagram consisis of mulliple axes, with each individual axis representing one of Ihe above 
analyles. Each redox diagram is associated with one moniloring well localion. The relahve 
shape of each redox diagram represents an approximahon of the redox state wilhin Ihe well 
studied. In general, ihe larger ihe polygon ihe more oxidizing the gioundwater environmeni is at 
the well localion, conversely, the smaller the polygon the more reducmg tlie environmeni. 

Fill Site 6 and Building 1065 Area (shallow zone) redox diagrams are shown on Figure A-3-3 to 
illustrale the differing redox environments across the siles. 



A-3-7 
FiiEl Bitd Second Qiiantis Z007 Oclobcr2007 



7.0 CONCLUSIONS & RECOMMENDATIONS 

Gi ound^^j^le^ elevations, gradients, and flow directions are consistent with hi stories] values and 
interpretations. No significant trends or observations were identified at FS 6 during the First and 
Second Quarters 2007. 

No RAP-specified cleanup levels were exceeded dunngihe First Quarter 2007 within the FS 6 
wells sampled. 

NoTPH. OCRs, PCBs, or PAHs were detected within any FS 6 wells sampled for these analytes 

dunng the First Quarter 2007. 

Several new high or low concentrations of dissolved metals were detected within FS 6 samples 
dunng the First Quarter 2007. However, the majority of these metal concentrations were only 

slightly higlier or lower than previously detected concentrations. No detected metals 
concentrahons exceeded their RAP-sjwcified cleanup levels for FS 6 monitoring wells dunng the 
First Quarter 2007. 

Post-remediation gionndwater monitoring at FS 6A began dunng the Fourth Quarter 2005, in 
accordance with the RAP. Analyses were reduced to a semi-annual basis beginning in the First 
Quarter 2007. The wells are expected to be sampled on a semi-annual basis through the Third 
Quarter 2008, but are reviewed following each samplmgevent to determine if modifications to 
the sampling program shonid be made. 

FS 6B will be addressed in RAP5, which is scheduled to be completed in the summer of 2009. 
FS 6B wells are expected to be sampled on an annual basis unhl RAP5 is prepared. 



A-3-S 
Fiisl Bitd Sc[:and QLiail[:i& 2007 October 2007 



lBbLrA-3-] 
Kr5ulL,Dl TFH AnjljM.s 

Pirfiidro of Sal FnK liitg, C jIlIchiib 



Wril Name 


Sam plr Dale 


TPH SECBnOnE 
ICarbDn Raiq? C,-C,,> 


TPHapDLcTl 
ICarbon Kan|^E t:, , -C. , f 


TPH !]E Pud Oil 

iCartHni Rancf C.,-C„J 




Mnbod' 




swsnisBi 
sweoi3M 








1115^1 


<ipfl-J 


'npa.1 


4f]nnup I.LvrlE' j 


ddJ ' 413 


443 


LF6Gft HH 

DUPI2(BtGl^ 
LFOGWICLCL 

DUPCfiteiGlA 

DUP03L2022A 
LFOGWICLCL 

DUPI2040LIA 
LFfljWICCCL 


U?/?1/UJ 


<5II <50 


NA 


{HJIJ/G6 


<50 


<50 


WA 


IHflM/IB 


<^0 


<50 


WA 


OinSIOi 


<50 


NA 


WA 


l2Hi5H}i 


<50 


<w 


WA 


IJffiTO 


<50 


<w 


WA 


I2W«J 


<50 


<4a w 


NA 


05^*01 


<50 


<50 


NA 


O&ifilOi 


<50 


<50 


NA 


Oin9IOi 


<50 


<50 


NA 


12106101 


<50 


<50 


NA 


ISIiSIOt 


<50 


<50 


NA 


WliSIO! 


<50 


<50 


NA 


06liSI0! 


<50 


<50 


NA 


oiinioi 


<50 


<50 


NA 


oiinio! 


<50 


<50 


NA 


oiinioi 


<50 


<^0 UJ 


NA 


i:/iu/i)i 


<50 


<50 


NA 


i:/iii/i)i 


<50 


<50 


NA 


i?/a4/o] 


<50 


<50 


NA 


iBflllOi 


<50 


CO' \Ni 


NA 


osmio: 


<50 


<50 


NA 


O1I19I00 


<50 


<50 


NA 


LFfiGWlOE 
DUPCftfilGIA 


0!f!SI01 


<50 


<50 


NA 


03/1 7Ab 


<50 


<50 


NA 


mniAb 


<50 


<50 


NA 


01^15/01 


<50 


NA 


NA 


ITAb/HI 


<50 


<50 


NA 


otfyaoi 


<50 


<50 


NA 


oaioioi 


<50 


<50 


NA 


OimiOi 


<^0 


<50 


NA 


l2tO&Ot 


<50 


<50 


NA 


D?jD1/07 


<50 


<50 


NA 


OftTBMP 


<50 


<50 


NA 


oaiB/0? 


<50 


<50 


NA 


03/1 3/D2 


<50 


<50 


NA 


l7AU/ai 


<5U 


<50 


NA 


05/19/01 


<50 


<50' 


NA 


05111101 


<50 


<50 


NA 


OlIl^KO 


<50 


<50 


NA 


LF6GWIII2 

DUPrU [SM 1 A 
LFtrGWIIOCL 


OiOUb 


<50 


<50 


NA 


I2/I«H 


<50 


<50 


NA 


03^1 7flU 


<50 


<50 


NA 


05r26IOX 


<50 


<50 


NA 


oinj/ai 


<50 


<50 


NA 


12/05/01 


<50 


<50 


NA 


05/15/01 


<50 


<50 


NA 


oaof/oj 


<50 


<50 


NA 


OlflSIOi 


<50 


<50 


NA 


OilWOi 


<50 


<50 


NA 


oinsioi 


<50 


<50 


NA 



FiiH jnd Eaond Quiiil crs 2CII7 



Page I oFJ 



OaobrrJOO? 



lBbLrA-3-] 
KnullsDl TFH AnjljM.s 

Pirfiidro of Sal FnK liitg, C jIlIchiib 



Wril Name 


1 

Sam plr Dale 


TPH !IECB9>UnE 

ICBrbon Raui? C,-C,,> 


TPHapDLcTl 
(Carbon Kan|^E C, , -C. , f 


TPH aE Pud Oil 

iCartHni Rancf C.,-CnJ 




Mnbod' 


EW&U15M 


swsnisBi 

SWS0I5M 


E^v^lOl5^^ 






1115^1 


<iP/Lj 


'npa.1 


4f]nnup I.LVtlE' | 


ddJ 


443 


443 


LFUjft HI2 

DUP03LJ02IA 
DUPI2(I]UL1A 


i:niM? 


<5II 


<50 


NA 


{b/ib™ 


<50 


<50 


WA 


l&T&O? 


<50 


<50 


WA 


oimio! 


<50 


<50 


WA 


oimio! 


<50 


<50 


NA 


lllOilOi 


<50 


<50 


NA 


lllOilOi 


<50 


<50 


NA 


wiaiioi 


<50 


57' V>U 


NA 


QVIB/DI 


<50 


<50 


NA 


07JI9fln 


<50 


<50 


NA 


LFfiGWlCh] 

DUPI2CI5062A 
LftGWI03CL 

DUPieiaHIA 
LF6GW]03CL 

DUPLUtHBlB 
LF6GWICGCL 

DUPIUieCfilA 
LF6GWIU3CL 

DUPi:eL2042A 


0?^/0J 


<50 


<50 


NA 


l?/IB/lto 


<50 


<50 


NA 


l2liSI06 


<50 


<50 


NA 


1205106 


<50 U 


<4ft L" 


NA 


(&l]&06 


<50 


<50 


NA 


atfi^ob 


<50 


<50 


NA 


atflG/05 


<50 U 


<W U 


NA 


ffi^JflB 


<50 


76 V 


NA 


03111106 


<50 


<50 


NA 


l]liOliS 


<50 


<50 


NA 


l]/iOliE 


<50 


<50 


NA 


l]liOliS 


<50 U 


<W U 


NA 


OiBlUG 


<50 


<50 


NA 


iSfJ5K6 


<50 


<50 


NA 


aWBMB 


<50 


<50 


NA 


04/ffi/Q5 


<50 


<50 


NA 


04/IB/Q5 


<50 U 


<W U 


NA 


ni]6iax 


<50 


<50 


NA 


iSllllOi 


<50 


<50 


NA 


osM?/ai 


<50 


<50 


NA 


ffi^&m 


<50 


<50 


NA 


03/15/01 


<50 


NA 


NA 


ITKBIOi 


<50 


<50 


NA 


05/14/0? 


<50 


<50 


NA 


06/1 0/OJ 


<50 


<50 


NA 


03/I9AH 


<50 


<50 


NA 


l7iOVD7 


<50 


<50 


NA 


WK6HB 


<50 


<50 


NA 


~ OMBflB 


<50 


<50 


NA 


03/l3fll7 


<50 


<50 


NA 


l2jOiiDI 


<50 


<50 


NA 


08/79/01 


<50 


<50' 


NA 


05/17/01 


<50 


<50 


NA 


07/1 9/in 


<50 


<50 


NA 


LFfGWLQI 


0?/?5/07 


XA 


<50 


<300 


l2/Ob/Oi5 


NA 


<50 


<300 


O5/?J/0i5 


NA 


<50 


<300 


01/17/06 


WA 


<50 


<300 


i:/07/05 


\A 


<50 


<300 


LFfiGWlOe 


O:/?5/07 


NA 


<50 


<300 


I2/G6/06 


NA 


<50 


<300 


0B/I^D5 


NA 


<50 


<:300 


05'23'D6 


NA 


<50 


<300 


OJ/?0/06 


NA 


<50 


<300 


l?/07/05 


NA 


<50 


<.100 



FiiH jnd Eaond QuaH crs 2CII7 



PaEc2ofJ 



OtiobrrJOO? 



lBbLrA-3-] 
KnullsDl TFH AnjljM.s 

Pirfiidro of Sal FnK liitg, C jIlIchiib 



Wril Name 


Sam plr Dale 


TPH SECBnOnE 
ICBrbon Raiq? C,-C,,> 


TPHapDLcTl 
ICarbon Kan|^E C, , -C. , f 


TPH as Pud Oil 

iCartHni Ranpf C.,-C„J 




AniJ>iii:!i] 
Mrlbixl' 




swsnisBi 

SWS0I3M 


SWg(IL5Bf 
SWHOliM 






IP2^1 


<iP/Lj 


'DPO.! 


Clmimp l.i:vrlE' | 


ddJ 413 


443 


2JLGWIH 

DUPI2Ce062B 
23IGWIBCL 

DLiPII29<B2^ 
231GWC9 

DUPI2LTC112A 

DUP0527Q12C 
23IGWIBCL 


iJVIB/OJ 


<5II <50 


<i<xr 


l?/IB/lft 


<50 


<50 


<300 


nnsiQt, 


<50 


<50 


<300 


niisio^ 


<50 U 


<4ft U 


<29C U 


iBli5l06 


<50 


<50 


<300 


05rHI06 


<50 


<50 


<300 


oyisna 


<50 


<50 


<:300 


iirKKG 


<50 


<50 


<:300 


11^9/05 


<50 


<50 


s300 


iSliiliS 


<50 


<50 


<:300 


Q&Oll'G 


<50 


<50 


<300 


04/aWIB 


<50 


<50 


<300 


iimioi 


<50 


<50 


<300 


iimioi 


<50 


<50 


<300 


05n2/ai 


<50 


<50 


<300 


ffi^j/fli 


<50 


170 HV 


<3a} 


ffi^j/ai 


<50 


<50 


<:300 


is/nioi 


<50 


<e6 


<JJO 


oinsim 


<^0 


<50 


<300 


ITJOi/Oi 


NA 


NA 


WA 


atiisioi 


<50 


<50 


<300 


O&iOIOi 


h'A 


NA 


NA 



I -Tlic ulcV lI Lol JBiilyl k: jL n0 lindl^l arc lor aii!i]}'Sfs [VjfUiini:il bcf inniug LnlkeSHDndQudDrr 

2001. Tkc Jii]al>i ic^ mci hcd'i isliI Jinu^ pieviou'i qajn^Ek air idrolLrLal in lb? mpHlivc qiunrilv 

rcpjtls. 

2-FiranTabli:3ollfccPAP<Ticj1'*dlfiRiJli.2(lllck. 

I - TPH jnal>'^L'"^ jh DtV rai u'm^ i hiz silna ^?L cLiZdn u p n::! hxl 363UA, jII lion^Ii il ii'Li'i niir^il un 

(liccliJLn offu<cidv. 

PflL- nkni^ lains r>:c III lt 

NA- NiK jiiiJ>'L'i1 

TPH- THaL pdnilL'u ni ll^l^ll<■JJlKlll^ 

H- Heavier livdnxarhuBS (iW nh* ol lu I lie qn jm II J iim. 

V- SaDipL^cikibil'vaCuL'l pJI L^m Liu 4liv< ■!■ idL'inble Lkc ^aidaitl 

Z- Sampk' e^liLbiL'v iintiiuM ■ sid^Il' pc^ii or r>Ml.i. 

C L ^ITi^ dL'iuiCv a q ualily (ODiinl d ii[iLii:!l c ^iinpt 4'Jis::i]l lolliccoDlinl Libiinor> 

Tabic 7 in lln: lOiiii] icr-iil idcnLilli:^ all d u pLicil c jnd sflil ^impln and i lie hicll rmoi >« liick L hc> 

wmiolkac^ 

Tabic II iilhc mam icpml idcV ifKiv ^unL'nl jnd ktioFKal dJa q ualiri::n 



FiiH jnd Eaond Quai1cis2CII7 



Page I oF J 



Oaolffr2007 



CibH \-i-l 



tlcllNDmc 


PiLr 








|jLn<njl 1 hfinMii 


















M'lls 








ocFiAHi rcii^ 




llU^^ilvnJ 


LIkallBlll 
TuDI 


HkirbDDiU 


CDUxUr 


IIUDCkh 


N'llnbuN 


FCdEllrilN 


Sulfa If 


SuirUf 


IkkP 


pll 


IfnipfmlurT 


HfUdlil- 

LBllUBCI'M 


llrbTCibi- 
1 IxinBinrBr 


1 Irjrfni' 


IIUOIDDlhrM 


IllOllifr 


IdrlB 


DhklclB 


1 ndlhlulllB 1 


Alll»lb<r 

mntnii PI in 




UBirLlaL 

■labrKl' 


ItH 


C3ID 1 


C3]|3 J 


i:iiu>» 


CIIIO>» 


CKiau 


E3DDD 


£3UDU 


EHnOT 


nikl 


mkJ 


rtU 


5''H3ID 


^WE!7(|i 


^I^S3ID 


zi^:'3J(] 


sfxiroi 

^'»d3ID 


^'AdOHJ A 


ShliHDBI^ 


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^mf^L| 


l<"ll\.) 


^mf^L| 


Imi/Li 


ImV. 


[lllUIlll 


c- 


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■HJl-' 


iHf'l-l 


iMpi-* 


ipfi-l 


fPfl-l 


icr'i-i 


<!•%"• 


lH!'i-i 


[ jHDUp 1. 


Clft' 


_ 


_ 


_ 


_ 


_ 


_ 


— 


.. 


.. 


.. 


.. 


.. 


IVNU-I 


IMNU4 


(1.4 Kill 


HI» 


.. 


ELnoaiJ 


IVHI0I4 


II4» 


.. 


IJ7h:31'L4KCL 

DUeinU9'13\ 

LnGI'HriEL 

DUriBUDIII 

LnGWrODCL 


Di/s/ai 


US' 


3 ID 


3LD 


43 


'.OA 


[ 


'QDl 


J7 


'DD4 


Hi 


7IH 


I1.TD 


<D09 


lO-W 


^Dl» 


'am 


ND 


'DDl 


'D J 


laai 


XD 


DUITQC 


D1I 


3 ID 


3LD 


31 


D.II 


OAI 


^CDl 


17 
13 


a! 1- 


sa 


b.91 


J37 


<D09 


<O.IS 


'DK 


'dm 


ND 


'DDl 


'Dflfl UJ 


^CDl 


XD 


IM'IMQ^ 


^1 


3U 


■aa 


3n 


D.I! 


D.37 


^QDl 
NA 


<DDI Ul 


Nf 


NH 


Nl 


<U 1 


IIKW 


^a 1 


'am 


VD 


'DDl 


'D 1 


laoi 


XD 


D1I|S«L 


ZD 


N' 


K\ 


NA 


NA 


NA 


NA 


NA 


Nl 


NH 


Nl 


<D ] 


<D! 


^a 1 


IIIA 


XD 


'DDl 


'D 1 


^CDl 


XD 


I21UID3 


2 


N^ 


K\ 


NA 


NA 


NA 


NA 


NA 


NA 


NV 


Nl 


Nl 


<n 1 


lO-W 


^a 1 


'am 


JiD 


'DDl 


'D J 


'CDl 


XD 


iz<ua»3 


- 


NA 


K\ 


NA 


NA 


NA 


NA 


NA 


NA 


HI 


Nl 


Nl 


<U 1 


<O.IS 


^a 1 


'am 


XD 


'DDl 


'D J 


'DDl 


XD 


IZOSO}] 


- 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NV 


NH 


Nl 


<DIII^ 


■caw? 


<Dai9 


'D4»7 


VD 


'DDl? 


<n.DVd UJ 


'DD4? 


XD 


rSI3)'D3 


r 1 


N' 


NA 


NA 


NA 


NA 


NA 


HA 


HA 


HV 
Nl 


NH 


Nl 


<n 1 


<O.IS 


<DI 


'on 


ND 


'DDl 


'D.0^ Ul 


^CDl 


NU 


lbi|»Q3 


47 


Nl 


NA 


NA 


NA 


NA 


hJA 
IJA 


NA 


HA 


NH 


Nl 


<D J 


<O.IS 


^a 1 


'am 


ND 


'DDl 


'D.0^ Ul 


laai 


XD 


D1II9Q3 


^7 


N' 


NA 


NA 


NA 


NA 


NA 


HA 


Nl 


NH 


Nl 


^Dl'' 


IIKW 


^Dl» 


'am 


ND 


'DDl 


• Kl 


laoi 


XD 


ii/aani 


3'' 


N' 


NA 


NA 


NA 


NA 


NA 


NA 


HA 


Nl 


NH 


Nl 


IDQS 


<O.IS 


'DK 


'am 


XD 


'DU49 


lOins UJ 


'DD4? 


XD 


i»aun! 


ad 


N' 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


Nl 


NH 


Nl 


IDQS 


<O.IS 


'Dtti 


'am 


XD 


' D>4 UJ 


'D 1 


'DDl Ul 


XD 


I»^DSQ! 


- 


N' 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


Nl 


NH 


Nl 


iDir' 


<O.IS 


'DK 


'am 


XD 


' D>4 UJ 


'D J 


'DDl Ul 


XD 


IbDSQ! 


11 


N' 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


Nl 


NH 


Nl 


C.I J 


CLia 


DlJ7 


D 17 1 


XD 


'DUIT 


'DA?4 


'DD4T 


XD 


DUIZQ! 


a^ 


N' 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


Nl 


NH 


Nl 


<n 1 


lO-W 


-a 1 


'am 


XD 


'D4HB Ul 


'DA?Q 


'DDIB LJ 


XD 


03'imi 


_ 


N' 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


Nl 


NH 


Nl 


<D 1 


<O.IS 


^a 1 


'am 


XD 


'DDIB lU 


<DII?b 


'DDIB (Jl 


XD 


03'imi 


_ 


N' 


NA 


NA 


NA 


NA 


NA 


NA 


HA 


Nl 


NH 


Nl 


<n 1 


<D 1 


'Dl 


'ail 


XD 


'DDl 


OD73 J. 


^ODl 


XD 


IMMQI 


1 1 


Nl 


NA 


NA 


NA 


NA 


NA 


HA 


H^ 


Nl 
HI 


NH 


Nl 


<D 1 


<O.IS 


<DI 


'DIB 


ND 


'DUIB 


'D.O?Q UJ 


'DDIB 


XD 


IMMQI 


- 


N' 


NA 


NA 


NA 


NA 


NA 


NA 


HA 


NH 


Nl 


<n 1 


<O.IS 


'Dl 


'Dm 


XD 


'DDIB 


'DAVQ UJ 


DDM 


XD 


13^D|iDL 


- 


N' 


NA 


NA 


NA 


NA 


NA 


NA 


HA 


HI 


NH 


Nl 


<D ] 


10 1 


^a 1 


'a Jl 


XD 


'DDD 


'DDD 


'iaci 


XD 


Dsmor 


zd 


N' 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


Nl 


NH 


Nl 


IDIT' 


lO-W 


^Dl» 


'am 


XD 


'DDl? 


lOim UJ 


'DD4? 


XD 


iKTiTni 


C 1 


N' 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


Nl 


NH 


Nl 


lOiT' HI 


<U.I9 (Jl 


lOlf UJ 


'C m Ul 


XD 


'DDl? 


"UPT UJ 


'DD4? 


XD 


DTIIQQD 


■t 1 


N' 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


Nl 


NH 


Nl 


<'>D 


I'"- 


'9a 


rS* 


XD 


'DDhM 


'Dfl'14 


'D>»?4 


XD 


LtQC*]Cl[ 


DZT^iOT 


DH] 


3^ 


HD 


17 


".••A 


D.TH 


^QDl 


oa 


^DD4 


IfflDD 


bSD 


11. ID 


iDtrr 


':IK\1 


'Dtti 


'am 


XD 


'DDl 


'D 1 


<aDi 


XD 


DUITQC 


4 11 


4?D 


4ID 


41 


rO.1 


DAI 


^CDl 


H 


^Doi r 


-SB.? 


\Tt< 


]4-4 


<D J 


':0.\S 


'0 1 


'am 


XD 


'DDl 


'D 1 


^DDl 


XD 


i»4iaiQ^ 


^ J 


3?D 


3?D 


43 


".••.t 


D.1^ 


'QDl 


-lb 


<DIK Ul 


Nl 


NH 


Nl 


<n 1 


':0.\S 


^Ol 


'am 


XD 


'DDl 


'D 1 Ul 


<aDi 


XD 


DiriS«E 


i" 


N' 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


Nl 


NH 


Nl 


<n J 


':0.\S 


^a i 


'a B 


XD 


'DDl 


'Dim 


^CDl 


XD 


1Z4UID3 


LI 


N' 


NA 


NA 


NA 


NA 


NA 
NA 


HA 
NA 


HA 


Nl 


NH 


Nl 


<D J 


':0.\S 


^Dl 


'am 


XD 


'DDl 


'D 1 


<aDi 


XD 


CGHQlQ] 


C7 


N' 


NA 


NA 


NA 


NA 


HA 


Nl 


NH 


Nl 


lOtrr 


':0.\S 


^Dl» 


'am 


XD 


'DDl 


'D.0^ IJ 


^DDl 


XD 


1 a&riDn] 


is 


N' 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


Nl 


NH 


Nl 


<D J 


lO-W 


'a 1 


'am 


XD 


'DDl 


'DA9 Ul 


<aDi 


XD 


1 asfiijoi 


i 


N' 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


Nl 


NH 


Nl 


lOtrr 


':0.\S 


^Dl» 


'am 


XD 


'DDl 


'DD4 


^CDl 


XD 


IZHHQ! 


i J 


N' 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


Nl 


NH 


Nl 


<n 1 


':0.\S 


^a i 


'an 


XD 


'DDl? Ul 


'DA?S UJ 


'DD4? Ul 


XD 


m^iMQ! 


t-i 


N' 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


Nl 


NH 


Nl 


lOtrr 


':0.\S 


'Dtti 


'am 


XD 


' DD4T Ul 


'DA?4 


'DD4T Ul 


XD 


otvosni 


a^ 


N' 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


Nl 


NH 


Nl 


IDQS 


':0.\S 


'DK 


'am 


XD 


' DD4T Ul 


'DA?4 


'DDIT Ul 


XD 


atvosni 


_ 


N' 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


Nl 


NH 


Nl 


<D1^ 


':0.\S 


'Dttt 


'am 


XD 


' DDIT Ul 


rDA?4 


'DDIT Ul 


XD 


Diri3Q! 


J? 


N' 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


Nl 


NH 


Nl 


<U ] 


':0.\S 


^a 1 


'am 


XD 


'DD4B Ul 


'DA?D 


'DDIB Ul 


XD 


I7IIMQI 


Q'' 


N' 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


Nl 


NH 


Nl 


<n 1 


':0.\S 


^a 1 


'am 


XD 


'DDIB 


'DA?D UJ 


'DDIB 


XD 


IKI^QL 


J J 


N' 


NA 


NA 


NA 


NA 


NA 
NA 
NA 


NA 


HA 


Nl 


NH 


Nl 


ID J 


<D! 


'0 1 


'a-4i 


XD 


'DDl? Ul 


'••im UJ 


'DD4? Ul 


XD 


DilTlDL 


i1 


N' 


NA 


•i\ 


NA 


•i\ 


NA 
NA 


HA 
HA 


Nl 


NH 


Nl 


^Dd^ 111 


^"11 Ul 


1 l»A UJ 


'a m Ul 


XD 


'DDl? 


'"(HT UJ 


'DD4? 


XD 


DTI19«a 


4 J 


N' 


NA 


NA 


NA 


NA 


Nl 


NH 


Nl 


<91 


^ifl 


'Si 


<i.i 


XD 


'DDhU 


'D.0^4 


'D>»?4 


XD 


DUmiUDJLI 

LnGwroKL 

DUn>7l3D7l1 
DLiriB]3DJ3\ 


IM'IMlD^ 


a i 


lODD 


JODD 


17 


D.U 


^QDl 


^QDl 


I3D 


<DDI Ul 


Nl 


NH 


Nl 


<U 1 


<U.I1 


'a 1 


'am 


XD 


'DDl UJ 


'D r Ul 


'DDl Ul 


XD 


I7IIQ«L 


aa 


T4D 


74 D 


33 


D.I1 


^CDl 


^CDl 


3 


NA 


Nl 


NH 


Nl 


lOtrr 


':0.\S 


'DK 


'am 


XD 


'DDl 


'D 1 


^CDl 


XD 


; mriJAM 


UJ^ 


DbD 


QU» 


3D 


D.kl 


lUll 


^ODl 


ai 


NA 


Nl 


NH 


Nl 


iDtrr 


':0.\S 


'DOi 


'am 


XD 


'DDl 


'DD4 


<aDi 


XD 


' lOTTdAM 


D JZ 


JHD 


SD 


31 


D.EI 


^CDl 


^QDl 


II 


NA 


Nl 


NH 


Nl 


^D 1 


lO-W 


'a 1 


'am 


XD 


'DDl UJ 


'DD4 


'DDl Ul 


XD 


QiriTAM 


D Id 


9» 


91D 


41 


NA 


^QDl 


^CDl 


DP 


NA 


Nl 


NH 


Nl 


<D J 


':0.\S 


'0 1 


'am 


XD 


'DDl 


'(I 1 Ul 


^CDl 


XD 


1 iTVfln] 


I! 


N' 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


Nl 


NH 


Nl 


<D(]4 


lO-W 


'Dtti 


'am 


XD 


'DDl 


'DD^ 


<aDi 


XD 


4Brian3 


DJ 


Nl 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


Nl 


NH 


Nl 


<n J 


<D! 


'0 1 


'a H 


XD 


'DDl 


'DD4 


^DDl 


XD 


D&IIMQ3 


C 1 


N' 


NA 


NA 


NA 


NA 


IJA 
NA 


NA 
HA 
NA 


NA 
HA 
NA 


Nl 
Nl 
Nl 


NH 


Nl 


<n 1 


lO-W 


<D 1 U 


'am 


XD 


'DDl 


'D 1 Ul 


laOi 


XD 


D3'JSiD3 


07 


N' 


NA 


NA 


NA 


NA 


NH 


Nl 


<n 1 


':0.\S 


<a 1 


'l\3/t 


XD 


' DDl UJ 


'D J 


'DDl Ul 


ND 


D1IJEID3 


- 


N' 


NA 


NA 


NA 


NA 


NA 


NH 


Nl 


<D09 


':0.\S 


-Dtti 


'am 


XD 


'DDl 


'DD4 


laoi 


XD 


D1IISQ3 


- 


N' 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


Nl 


NH 


Nl 


^Ddl 


<D 1 


^DDl 


lO-t 


XD 


'DDl UJ 


'DA?E UJ 


'DD4? 


XD 


1311 IQ! 


a? 


N' 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


Nl 


NH 


Nl 


IDQS 


lO-W 


'Dtti 


'am 


XD 


'DDIT Ul 


'DA?4 


'DD4T Ul 


XD 


IHQSQ! 


1 


N' 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


Nl 


NH 


Nl 


iDtrr 


':0.\S 


'DK 


'am 


XD 


'DDJT Ul 


'DA?4 


' DDIT Ul 


XD 


D&VdQ! 


aa 


N' 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


Nl 


NH 


Nl 


lOtrr 


':0.\S 


'DK 


'am 


XD 


' DDIT Ul 


'DA?4 


'DD4T Ul 


XD 


D1II3Q! 


Id 


N' 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


Nl 


NH 


Nl 


<n i 


':0.\S 


'a 1 


'am 


XD 


'DDIB Ul 


'D.O^D 


'DDIB Ul 


XD 


D1II3Q! 


_ 


N' 


NA 


NA 


NA 


NA 


NA 


HA 


HA 


HI 


NH 


Nl 


<n 1 


':0.\S 


'0 1 


'am 


XD 


'DDIB Ul 


lOina UJ 


'DDIB Ul 


XD 


I3ID3QI 


14 


NA 


j NA 


NA 


NA 


NA 


HA 


NA 


HA 


HI 


NH 


Nl 


<n 1 


':0.\S 


<DI 


'D^ 


HD 


'DDIB 


'Ufbl UJ 


'DDIB 


XD 


I3ID3QI 


— 


Nl 


' T«A 
NA 


NA 


NA 


NA 


HA 
NA 
NA 


HA 
HA 
NA 


HA 
NA 


HI 


NH 


Nl 


<n 1 


':0.\S 


^Dl 


'DIB 


1 


'DDIB 


'DA?1 UJ 


'DDIB 


XD 


i»OTQr 


at 


N' 


NA 


NA 


NA 


Nl 


NH 


Nl 


<n 1 


<D! 


'a 1 


lOA 


XD 


'DDIB 


'DAVD UJ 


'DDIB 


XD 


lUllSQL 


t! 


N' 


NA 


NA 


NA 


NA 


NA 


Nl 


NH 


Nl 


<D.I7 IJ 


I"!! Ul 


< D 17 UJ 


'ODT Ul 


XD 


'DD63 


'D.II Ul 


'(I DDl 


XD 


m'isflxi 


i.<' 


N' 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


Nl 


NH 


Nl 


■-9D 


i'"- 


'^a 


<S* 


XD 


'DDU 


'Dfl'14 


'01194 


XD 



Eiq jjxJ Eix-ikJ r^jii«\ sai 



Pjgc I lM I 



DiiLri)aaH7 



CnbH \-i-l 

HEiuia Dl mrni C hFHbli). P in, IK F, rC'll. BHi DrooLxH □OB'B IniVm 
FIIIIillr'F 



tlcllNDmc 


IMLr 








Ijintrul 1 lifinMj- 


















I' 'lis 








OUFlAHl 11.11^ 




llU^^llvnJ 


LIkallBlll 
TuDI 


HkirbDDilr 


CDUxUr 


IIUDCkh 


N'ilnbuN 


FCIIHIriiN 


SUllDlf 


Su]lkl< 


l»kl' 


pll 


ItnLptmluiT 


Hfncilil- 

LBinrBcrki 


llrbT^ibi- 
1 IxinBinrBr 


1 Irjrfni' 


lluoiDDlhrki 


IllOlllfr 


IdrlB 


DKklclB 


1 ndihiulliB 1 


^Jll»lb<r 
IhlitnH P4.in 




UBirLlaL 
■li:4l>rKl' 


ItH 


C3JD 1 


C3]|3 J 


HIOCi" 


t¥Kl" 


CKiau 


E3D0D 


C3U0U 


EIDDILI 


riEkl 


cekl 


rtU 


5hl'H3L0 


^WE!7(|i 
^^'Ull" 


^'»J370.' 
^I^S3ID 


Sl^ IE37a' 
EI^E3J0 


5WHZ70.' 
Zf\X3ID 


^'AIEOHJ^ 


Shi' 410111^ 

swiaiif. 


SI^EOHI' 
EI^UIJI^ 


^'AJOHJ' 

^■*4im:i'^ 

EI^:'4>E3 






(mg^l-t 


(lllfr'H 


Imf/L, 


• inf/l\ 


,mprL| 


,mrn.| 


(mfrLI 


imin.l 


'mi/U 


ImVy 


[in unli 


c- 


llij'30 


IMJ'"-' 


IH!'I-| 


lli^'l ' 


ICI'I-I 


IHF'I-I 


iCr'i-l 


'[•fll ' 


iHr'i-i 


[ Jnnup 1 


cifb' 


- 


- 


— 


- 


- 


- 


- 


-- 


- 


- 


-- 


-- 


IMNM4 


IMNU4 


(i>Ki4l 


UHh 


.. 


(I.4NNII3 


IVHI0L4 


IL1» 


.. 


DUF LSi^lDZI 

DUF(» IflQ L 1 
LTAG'l L4»E L 

DUrLJ3IV}]B 
IJ7iG1' L4»K L 

]>UF(klO«^31 
mUWWKL 

DUFOH 1 auzi 


D?i.Eiin 


D *■► 


3S 


310 


42 


<4».l 


3H 


'0 01 


Jl 


^D04 


LJ9 


«.« 


11.00 


^001 


<O.I1 


^D09 


'QJt 


HD 


'DOl 


'D>A 


10 05 


XD 


IMUQC 


a 15 


3ID 


310 


31 


IIKt 


31 


^001 


IT 


N^ 


f93 7 


T 


11 ■ 


<0O9 


<O.I1 


<D09 


^0 m 


HD 


'DOl 


'DU9 


<0D^ 


XD 


1MUQC 


- 


3» 


330 


311 


IIKt 


3! 


^0 01 


'H 


HA 


-- 


- 


— 


<0O9 


<O.I1 


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JiD 


'DOl 


'DD9 


<0D^ 


XD 


IMUOfi 


- 


3£> 


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1 1 EJ 


3 


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-- 


-- 


— 


^".3 U 


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<03 RJ 


^D? u 


XD 


^0.01 u 


'4>.l U 


'Dm u 


XD 


OaiQQC 


i I? 


300 


no 


31 


<D.r 


3n 


^0 01 


IDO 


HA 


1191 


bai 


IbBO 


<0O9 


<O.I1 


^D09 


i094 


JiD 


'DOl 


'D 1 


' 0>4 H Ul 


XD 


IKI|Q« 


- 


3 ID 


310 


31 


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^001 


IDO 


MA 


- 


- 


— 


laiT' 


<O.I1 


^D09 


i094 


XD 


'DOl 


'DIM 


'om nvi 


XD 


IKI|Q« 


_ 


317 


3L7 


31 


<! EJ 


3E J- 


^Od? u 


IDb 


U^ 


.. 


— 


_ 


1 ••.2 U UJ 


<03 UUl 


< 3 U UJ 


< 1 U UJ 


XD 


'0.01 u 


' 4*. L U UJ 


'Dm u 


XD 


4UI7MH 


1 1 


3ED 


3 ED 


Jl 


IIKI 


3! 


^0 01 


'V 


N^ 


IJ 3 


t-T 


IQ ■ 


^001 


<O.I1 


<D09 


'0 m 


HD 


'DOl 


'DD9 


<0D^ 


XD 


"tlTHXi 


DKI 


3ID 


330 


41 


IIKt 


3-1 


^001 


7T 


laai T 


10 1 


A. 94 


]4-4 


^009 


<O.I1 


<D09 


'0 m 


XD 


'DOl 


'Ofll UJ 


10 05 


XD 


ll'HIiD^ 


3 1 


37D /+ 


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41 


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31 


'0 01 


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NA 


Nl 


NH 


Nl 


^D 1 


<O.I1 


^0 1 


'OH 


XD 


'DOl 


'0 L Ul 


10 05 


XD 


lliniQ^ 


_ 


310 J* 


3W 


41 


r4».l 


31 


^001 


II" 


N^ 


Nf 


NH 


Nl 


<n 1 


<O.I1 


<0 1 


'OH 


XD 


'DOl 


'0 L U3 


'0105 


XD 


iiiniQ^ 


— 


311 


HI 


-41:7 


< 1 U 


Z.9H 


<a 1 u 


ID1 


NA 


Nf 


NH 


Nl 


^f. 


H\ 


HA 


NA 


XD 


'0.01 u 


' 41. 1 U UJ 


'Dm U 


XD 


OailQ^ 


US 


33D 


330 


52 


lIKI 


3H 


^001 


JIO 


N^ 
N^ 


Nf 
Nf 


NH 


Nl 


<n ] 


^".11 


^Ol 


'om 


XD 


(1.44 b 


'D 1 


10 05 


XD 


fU'TSiD^ 


D^ 


33D 


330 


52 


IIKt 


3n 


^0 01 


J14» 


NH 


Nl 


<D ] 


<" 11 


^0 1 


'OH 


XD 


'DOl 


'D 1 


10 05 


XD 


IM'DSQ^ 


11 


3?D 


330 


52 


IIKI 


3 


^001 


J4>» 


^□04 


Nf 


NH 


Nl 


<U 1 


^".11 


^0 J 


'0 m 


XD 


'DOl 


'O L U3 


10 05 


XD 


&LiDSiD^ 


- 


3U 


310 


52 


<D.I 


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^0 01 


I4>» 


^D04 


Nf 


NH 


Nl 


<n 1 


<O.I1 


^0 1 


'0 m 


XD 


'DOl 


'0 1 Ul 


10 05 


XD 


IM'DSQ^ 


- 


3U 


33D 


11 


^D J U 


1.17 


^DD? U 


]47 


"D^l 


Nf 


NH 


Nl 


^".3 u 


<03 U 


<03 RJ 


'D? u 


XD 


'DOl 


IIKt U 


'Dm u 


XD 


' imOm 


D7 


33D 


330 


71 


IIKt 


3ir 


^001 


IIU 


N^ 


Nl 


NH 


Nl 


^009 


<O.I1 


^D09 


'0 m 


XD 


'DOl 


'D 1 


11105 


XD 


osjiim 


D]| 


77D 


Z7D 


TH 


'iO.t 


3H 


^0 01 


130 


NA 


Nf 


IJH 


Nl 


^009 


<O.I1 


^D09 


'0 m 


XD 


'DOl 


'D 1 


'DOl UJ 


XD 


DE^im' 


_ 


3S 


330 


71 


IIKI 


3U 


^001 


J3I» 


N^ 


Nf 


NH 


Nl 


<0O9 


<O.I1 


^D09 


'0 m 


XD 


' Dm UJ 


'DD9 


10 05 


XD 


os^svai 


D/Fh* 


300 


no 


El 


lIKI 


Itr 


^0 01 


JIU 


NA 


Nf 


NH 


Nl 


<U 1 


<O.I1 


^0 1 


'0 n: 


XD 


' D>4 UJ 


'DD9 


'DOl UJ 


XD 


"tJ^iDI 


3 ] 


3?D 


330 


SH 


^4».l 


31 


^DOl 


JQD 
IQD 

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UA 
UA 


Nf 


NH 


Nl 


<n 1 


■:a2 


<OI 


'OB 


XD 


'DOl 


'D 1 


11105 


XD 


I?^l»i1>3 


11 


330 


J3DD 


91 


<UI 


41 


'DDl 

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Nf 
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NH 


Nl 


<n 1 


<O.I1 


'Ol 


'0 m 


XD 


'DOl 


'D 1 


<0D^ 


XD 


osTkin] 


3 1 


310 


330 


71 


<O.E 


3IEhJ- 


NH 


Nl 


<n 1 


<O.I1 


^0 1 


'0 m 


XD 


'DOl 


'D J 


rOD^ 


XD 


D&rill03 


3IE 


310 


330 


Ql 


<D.I 


43 


'0 01 


ITO 


NA 


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NH 


Nl 


<a 1 


<O.I1 


^0 1 


'0 n: 


XD 


'DOl 


'0A9 Ul 


<0D^ 


XD 


Diri?n3 


37 


N' 


N^ 


N^ 


N^ 


NA 


N^ 


NA 


N^ 


Nl 


NH 


Nl 


^009 


<O.I1 


^D09 


'0 m 


XD 


'DOl 


'DD9 


11105 


XD 


' ITQdn! 


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N' 


HA 


HA 


N^ 


N^ 


N^ 


N^ 


NA 


Nl 


NH 


Nl 


<n 1 


<O.I1 


^0 1 


'OH 


XD 


'0U1? 


rOAIS 


'DmS 


XD 


' 4HQSn! 


3-1 


N' 


H\ 


HA 


N^ 


N^ 


N^ 


N^ 


N^ 


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NH 


Nl 


<0O9 


<O.I1 


^Dl» 


'0 ni 


XD 


' D>4 UJ 


rOA19 


'DOl UJ 


XD 


D&QSQ! 


DIE 


N' 


H\ 


HA 


N^ 


NA 


N^ 


N^ 


N^ 


Nl 


NH 


Nl 


^009 


<O.I1 


^D09 


'0 m 


XD 


' 0"4T Ul 


'OA14 


'DVIT Ul 


XD 


1 Dininz 


3? 


N' 


H\ 


NA 


NA 


NA 


N^ 


N^ 


NA 


Nl 


NH 


Nl 


<U 1 


<O.I1 


^0 1 


'0 m 


XD 


'0"4P UJ 


'0A1Q 


'D4MB Ul 


XD 


' iT^Mni 


1 D 


N' 


H\ 


N^ 


N^ 


NA 


HA 


N^ 


N^ 


Nl 


NH 


Nl 


<n 1 


<O.I1 


^0 1 


'0 m 


XD 


'0"4P 


loma UJ 


'DD4B 


XD 


OamDI 


3D 


•<\ 


NA 


NA 


N^ 


N^ 


HA 


N^ 
N^ 
N^ 


N^ 


Nl 


NH 


Nl 


^0119 


<•• 11 


^0 09 


'0 n: 


XD 


■- O'"' UJ 


'4L014 UJ 


' O'lT Ul 


XD 


• •S-nA) L 


17 


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NA 


NA 


N^ 




N^ 


Nl 


NH 


Nl 


<0JI9 111 


^"11 Ul 


1 ai" UJ 


' m UJ 


XD 


'0"4!l 


iiiina UJ 


'(I'MP 


XD 


UTIiSllXl 


31 


N' 


HA 


NA 


N^ 


N^ 


Nl 


NH 


Nl 


<97 


<97 


^17 


<1.T 


XD 


'OirU 


'0fl14 


'£iU94 


XD 


Lt[i{.*]C4 


0?I.EflT 


QHI 


330 


330 


37 


IIKt 


11 


^001 


•»• 


^D»l 


mo 


trBO 


I1.T0 


^009 


^".11 


^D09 


'0 m 


XD 


N^ 


X.- 


N^ 


N^ 


IMtaQC 


Did 


3?D 


330 


3t 


<D.t 


11 


^0 01 


3» 


NA 


[13 1 


bP 


ill 


^009 


<O.I1 


<D09 


'0 m 


XD 


N^ 


Hf. 


NA 


NA 


lanmb 


D-l? 


330 


330 


3L 


<D.I 


17 


^001 


?l" 


N^ 


713 


bP 


n 1 


^009 


<O.I1 


<D09 


'0 m 


XD 


N^ 


Hf. 


HA 


N^ 


DiriTOC 


m 


3UI 


3riO 


33 


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■TO 


loai r 


£40 


5 75 


11 J 


<U 1 


<O.I1 


^0 1 


'0 m 


XD 


HA 


Hf. 


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N^ 


IZVTlD^ 


D7 


330 


330 


E3 


<4».l 


n 


'0 01 


I'm 


UA 


Nl 


NH 


Nl 


<n 1 


^".11 


^0 1 


'0 m 


XD 


HA 


Hf. 


N^ 


NA 


LnGWHUCL 


oi/ijm 


DUZ 


310 


330 


E7 


rO.L 


47 


^0 01 


ion 


<D4M r 


31E0 


filO 


LD.00 


fJA 


H\ 


fJA 


NA 


Hf. 


HA 


Hf. 


NA 


N^ 


ourm 


_ 


300 


no 


E7 


<D.I 


47 


^0 01 


JI30 


IDIU T 


.. 


.. 


_ 


Hf. 


H\ 


HA 


NA 


Hf. 


N^ 


Hf. 


HA 


NA 


oi/ijm 


- 


SHE 


N^ 


NA 


<0.3 


47 


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19 7 


'UA VI 


-- 


-- 


- 


Hf. 


H\ 


HA 


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Hf. 


NA 


Hf. 


H^ 


H^ 


12'mn'i 


II>M 


»0 


no 


» 


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47 


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N^ 


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I'l 1 


Hf. 


H\ 


^A 


NA 


Hf. 


NA 


Hf. 


N^ 


HA 


4>^][li1Xi 


Did 


310 


so 


S7 


<O.L 


4 J. 


< II 11^ 


JDD 


N^ 


11 1 


ftTI 


[fill 


Hf. 


H\ 


HA 


NA 


Hf. 


liA 


Hf. 


N^ 


HA 


fU'ZIQ'i 


DM 


310 


mo 


B9 


<O.I 


4H 


^0 01 


no 


NA 


17 3 


t-T 


lEI 


Hf. 


H\ 


HA 


NA 


Hf. 


HA 


Hf. 


N^ 


NA 


"nmofi 


an 


3ro 


3[D 


'>5 


IIKI 


4'f 


^001 


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iDty r 


17 1 J 


CE3 


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Hf. 


H\ 


HA 


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Hf. 


HA 


Hf. 


NA 


N^ 


iifltjm 


D^ 


310 


310 


II4» 


<ur 


13 


'0 01 


!»• 


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NH 


Nl 


Hf. 


H\ 


HA 


N^ 


Hf. 


N^ 


Hf. 


fiA 


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LIDCAJlH 


oiiiy*n 


D^ 


310 


310 


94 


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IE 1 


'0 01 


IT" 


<D04 


L74 


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ID. 30 


<0O9 


^".11 


^D09 


'0 m 


XD 


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Hf. 


HA 


NA 


1 ITVUH 


D17 


330 


330 


91 


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7t 


^001 


J4" 


N^ 


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ft.1 


I7A 


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<O.I1 


<D09 


'0 m 


XD 


N^ 


Hf. 


HA 


N^ 


' OSIl&ftb 


DS7 


Z70 


Z7D 


DT 


<D.r 


It 


'0 01 


lan 


NA 


193 


'iH> 


L7.TO 


<0O9 


<O.I1 


<D09 


'094 


XD 


HA 


Hf. 


HA 


NA 


4UI?3« 


D? 


310 


310 


Q3 


IIKI 


IE7 


^001 


ifn 


N^ 


103 1 


hi 


JQ9 


<0O9 


<O.I1 


<D09 


'O^ 


XD 


HA 


Hf. 


HA 


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Ill 


^0 


fa 


W> 


lO-I 


44 


^0 01 


15V 


laty T 


213 


C9^ 


11? 


<D 1 


<O.I1 


<D 19 


'09T 


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HA 


Hf. 


HA 


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ir^DT'D^ 


D7 


310 


310 


SO 


IIKt 


13 


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N^ 


Nl 


NH 


Nl 


<D 1 


<O.I1 


^0 1 


'OH 


XD 


NA 


Hf. 


HA 


N^ 


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4iai|Ui1>7 


7K" 


310 


310 


4D 


'iO.t 


17 f 


^0 01 


10 


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UID 


car 


k7.30 


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H\ 


HA 


NA 


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N^ 


NA 


oi/um 


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3JD 


340 


m 


IIKt 


IJ 


^001 


a? 


<Dvi r 


Ml 


CEO 


11.30 


tJA 


H\ 


HA 


NA 


Hf. 


N^ 


Hf. 


HA 


N^ 


ouzjm 


- 


fa 


3JD 


311 


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^0 01 


H 


<D4M r 


- 


- 


— 


tJA 


H\ 


HA 


NA 


Hf. 


N^ 


Hf. 


HA 


NA 


oiiiy*f 


- 


ITI 


N^ 


HIE 


<0.3 


111 


<D.I 


b3-l 


^D4 UJ 


- 


-- 


- 


tJA 


H\ 


HA 


NA 


Hf. 


NA 


Hf. 


HA 


N^ 


iitavtb 


D/f? 


330 


330 


m 


<o.k 


14 


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t-T 


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fJA 


H\ 


HA 


NA 


Hf. 


NA 


Hf. 


HA 


N^ 


iitavHi 


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fa 


ilD 


37 


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14 


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_ 


_ 


_ 


WA 


H\ 


HA 


NA 


Hf. 


NA 


Hf. 


HA 


NA 


IMUHH 


_ 


IJH 


33IE 


40 


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<D 1 U 


tT7 


<D01 


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Hf. 


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Hf. 


HA 


N^ 


OaiSQC 


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310 


330 


31 


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D4 


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IQ3 


COO 


17.10 


tJA 


H\ 


HA 


NA 


Hf. 


NA 


Hf. 


HA 


NA 


4UI>IQC 


ibi 


330 


330 


41 


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laai r 


317 


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H\ 


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XA 


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HA 


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Hi 


110 


110 


33 


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^0 01 


3^ 


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3DI 


C 33 


IQ? 


Hf. 


H\ 


HA 


NA 


XA 


NA 


Hf. 


HA 


NA 



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12a 


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210 


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73 


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4DaCD 


2B 1 


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IbO 


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QQODO 


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170 


<i 


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74 ADD 


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5tO 


1 masos 


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NA 


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4iaaD 


J7 


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05 000 


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5 7 


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' L U 


74 ADD 


' 1 U 


l] 


< zo u 


60Z 


M/JLDi 
05f25/Di 


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NA 


SI 


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29 


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JAO 


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QTOflO 


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5BD 3 


<i 


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77 ADD 


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6A0 


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4baaD 


27 


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600 


<i 


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75 ADD 


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670 


««5JDi 


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' 1 


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19 


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120 


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57 ODD 


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500 


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65 ADD 


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540 


MASJDi 


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41000 3 


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59 ODD 


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540 


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74 ADD 


1 


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630 


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19 


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77 ADD 


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740 


OHTI-il^ 


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NA 


flS 


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JJ 


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140 


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73000 


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<D2 


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620 


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HO ADD 


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< JO 


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6A0 




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91 


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110 


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75 0D0 


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160 
620 


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H3ADD 


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760 


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74 0D0 


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74 ADD 


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12 


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730 


l2jt]?DJ 


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330 


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620 


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HI ADD 


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6[0 


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210 


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170 


<i 


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711 ADD 


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710 


D6yiDDJ 


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77 


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74 000 


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150 


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76ADD 


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< JO 


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630 


12/061)2 


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76 


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600 


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100 ADD 1 


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740 


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570 


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650 


B9i(lSD2 


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14 


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100 


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770 


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640 


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JD 


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bl 


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4b 


650 


llidJDl 
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10 


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37 J 


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9 9 


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6£0 
630 


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1 


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an K- 


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44aaD 


Sb 


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1 5 


200 


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7 [ 


440 


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1 1 


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I7D 


0Vb7Di 


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'500 R 


15 J 


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05 


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ZO 


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NA 


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27 


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NA 


NA 


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NA 


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NA 



Fim asd SaDhI QiDiIca 2007 



P>p2 4]F4 



OclnlKr 2007 



Tabic A->J 

]<iu lb Df n Liv>L'<d M«ljfa A ■□■Tin 

I'lJ Sl» 

Fiuinliu oFSin Fn nc mn. OIIFa m b 



Wir hnmr 


Suniph 


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E 
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3 
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3 
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3 

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1W6D1D/ 
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SAUiia' 


U-llIf 


i*6aLD' 
SWH>21h 


SW6DI0< 
S*6D?D 


S*6DID' 


5* 6a ID' 
S^6D24> 


SW60IDI 
^W6D?D 


S*6DID/ 

iAtoza 


SV>U>IDI 

^W6D2D 


^W6DID/ 
lAMZa 


SAtOLQ' 
1^6D2D 


^W6D2D 


^W6DID/ 
5*6aZD 


^WT47D/ 
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lA'AAZD 


^W6DID/ 
S*6a?D 


5* 6a ID' 
S^6D20 


S^6DI0< 
S*6D?D 


^W6DID/ 
S*6aZD 


S*6aiD' 
SWblh20 


S^bOIOI 
SW6D7D 


S*6DID/ 
S'A'61h2a 


EI60 1 






IHPT-) 


(I.F/LI 


<HfiT-) 


fMB^Ll 


14'^) 


fHB'Ll 


il.fl^> 


iHfL) 


iHfLt 


(Nfl'Ll 


iHfL) 


iVS'U 


II.BJ1) 


llip/Ll 


(^B'l-I 


fM*Ll 


<Nfl1-> 


flip/L, 


JHfiT-> 


llip/Ll 


(N^'LI 


<Nfi1-> 


IMPLI 


(Nfl'Ll 


(■F/Li 


CIrjDup 1 


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— 


ii 


IC 


ID 


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4 


I.I 


— 


SO 


— 


lU 


— 


3.1 


— 


— 


D.DI7 


hK> 


— 


5 


4.1 


-- 


1.7 


— 


106 


.. 


LFOC* LUl 


Uil'l1)7 


< lOD 


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<i 


NA 


44 


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JTOOD 


12 


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59 000 


< ID 


NA 


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<i 


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S^ADD 


1 1 


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6za 


JlidtiXiA 


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<i 


NA 


4C 


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MQQD 


11 


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59DO0 


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<i 


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6DADD 1 


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54D 1- 


OV131)6 
Djy 171)6 


< \an ui 

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NA 


37 


< 1 


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ibaao 


J2 


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29 


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56 ADO 


13 


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6 ID 


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1 JO 


< ZD 


700 
770 


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NA 


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IB 


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MADD 


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llidVIJi 


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33 


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49aaD 


12 


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J20 


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B5D00 


19 


<D7 


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l£DD 


<i 


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H4J)DD 


< 1 


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HLO 


LFOC* 105 

Dueoiiiaiifi 

LFQC* |i)5CL 


D3/Z71)7 


< lOD 


: 1 


<s 


NA 


51 


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ID 


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6?DD0 


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NA 


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<i 


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74 ADD 


1 1 


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6L0 


OltllSOl 


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: 1 


<s 


NA 


i1 


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4DaCD 


ID 


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64DD0 


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NA 


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SH 


<i 


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74 ADD 


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S40 




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T 


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4BT 


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0D7 


j6qaD 


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D i9 


1 J 


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DOI 


6DiOO 


< S 


NA 


T.fl 


<2ADD 


< i N 


<ao2 


HLJDD 


■LDD3 


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610 ;- 


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57 


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si)aao 


J] 


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: IDA 


< 3 


64 001h 


IT 


<D? 


<3D 


54A 


1 i 


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T9ADD 1 


1 1 


1 10 


< ZD 


54D 1- 


OHiibxib 


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' 1 


<s 


NA 


^l 


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19 ADD 


2B 


< ID 


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65DOO 


37 


<D2 UJ 


< ZD 


HID 


<i 


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HZADD 


< 1 


< JO 


< ZD 


670 


OVZ31)6 
aitiasob 


< lOD 


< 1 


<s 


NA 


it, 


< 1 


< 1 


4DJICD 


U 


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61 DOO 


< ID 


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7HA 


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H5JIDD 


< 1 


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750 


' 1 


<s 


NA 


5L 


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4iaaD 


J4 


< ID 


< 1 


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<1 


6TDO0 


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JDA 


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6L0 


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NA 


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4D 


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2H0 


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65 DOO 


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<D7 


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I.IDD 


<5 


< L 


HE ADD 


< 1 


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640 


LFQC* LQQ 


02f2&in 


< lOD 


' 1 


<s 


NA 


53 


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jsaaD 


21 


< ID 


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63 000 


< ID 


NA 


< ZD 


< SAD 


<i 


< 1 


H3ADD 


< 1 


< 10 


< ZD 


6E0 


ii^DAiia 


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' 1 


<s 


NA 


JZ 


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j6aaD 


22 


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64DDO 


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<i 


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93 ADD 1 


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6LD 1- 


OHILbXib 


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<s 


NA 


3E 


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JTaOD 


22 


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6TDD0 


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<D2 UJ 


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6 ID 


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<5D 


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21 


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J3A 


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4E0 


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2J 


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6BOO0 


< ID 


<D7 


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7 ID 


<i 


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HZADD 


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600 


12I07IDS 


< IDD 


' 1 


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NA 


]] 


< 1 


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?9jiaD 


24 


< ID 


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210 


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54 DOO 


1 1 


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QDA 


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44 ADD 


< ] 


< 10 


< ZD 


770 


DUPD337a72C 
JJIGWOyCL 

DtJFI20Jab?B 
J3IGWD9CL 

DUFIIZ^IflJlA 

DUFI7I7041A 

DUPD^37aJ2C 
?JIGW09CL 


06*5/D7 


< IDD 


NA 


<s 


NA 


NA 


PA 


< 1 


76 ADD 


21 


NA 


< 1 


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<1 


4?DDD 


< ID 


NA 


< ZD 


< 5Aa 


NA 


PA 


6ZADD 


NA 


PA 


' ZD 


47D J 


03/Z71)7 


< IDD 


: 1 


<s 


NA 


11 


< 1 


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naao 


24 


< ID 


< 1 


: IDA 


<1 


4T000 


< ID 


NA 


■- :d 


: ua 


1 i 


< [ 


UlADD 


1 1 


1 10 


^ Jll 


■■hi 


aitiisoi 


< IDD 


< 1 


<s 


NA 


5Z 


< 1 


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naao 


22 


< ID 


< 1 


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<1 


46 DOO 


< ID 


NA 


' ZD 


: ua 


■Li 


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bEADD 


1 1 


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' !•! 


J'JU 


aitiisoi 


' M 


<a Di 


4.J 


NA 


^S5 


<asn 


0D9 


26,ZaD 


21 


D !9 


1 


<2D 


<Daz 


45JO0 


< S 


NA 


IJ4 


<2ADD 


<1H 


<aA2 


73JDD 


<DD3 


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WO ;- 


iiiasi)6 


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< 1 


<s 


NA 


5E 


< 1 


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7iaaD 


26 


< ID 


< 1 


^ lOA 


<i 


41 000 


< ID 


<D7 


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^5aD u; 


<5 


< L 


44 ADD 


< 1 


< 10 


< ZD 


57D h 


iiiasi)6 


< IDD 


' 1 


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NA 


5b 


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7iaDD 


26 


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IHO 


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<D7 


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53D M 


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NA 


b3 


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JD.ZDD 


ID 


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51 000 


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IB 


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7SADD 


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440 


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5Z 


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JTQDD 


26 


< ID 


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4? DOO 


< ID 


<D7 UJ 


73 


< SAD 


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< 1 


< 10 


< ZD 


440 


0VU1)6 


< IDD 


' 1 


<s 


NA 


bL 


< 1 


< J 


JTADD 


24 


< ID 


< 1 


< IDA 


<1 


4BOO0 


< ID 


<D7 


43 


< SAD 


<i 


< 1 


76 ADD 


< J 


< 10 


< ZD 


4E0 


oKisjoa 


< IDD 


' 1 


<s 


NA 


3[ 


< 1 


< 1 


isaao 


J5 


< ID 


< 1 


^ IDA 


<1 


24 000 


< ID 


<D7 


79 


: SAD 


<i 


< [ 


4ZADD 


< 1 


< 10 


< ZD 


J2D J 


1 KZQXii 


< IDD 


< 1 


<s 


NA 


^1 


< 1 


< 1 


iiaao 


21 1 


< ID 


< 1 


^ IDA 


< 3 


39 000 


< ID 


<DJ 


< ZD 


' SAD 


<i 


< I 


63 ADD 


< J 


< 10 


< ZD 


470 


1 l/lfl1)i 


< IDD 


' 1 


<s 


NA 


A1 


< 1 


< 1 


24 ODD 


21 1 


< ID 


L 1 


< lOA 


<1 


4DOO0 


< ID 


<D7 


< ZD 


< SAD 


<i 


< L 


A4ADD 


1 1 


< 10 


< ZD 


540 


(itf/iiiai ' 


N.\ 


HA 


NA 


04Di r 


NA 


PA 


NA 


NA 


PA 


NA 


NA 


NA 


NA 


PA 


NA 


<DJ 


NA 


NA 


NA 


PA 


NA 


NA 


PA 


NA 


4S0 


l>&it]IXii 


< IDD 


< 1 


<s 


3TI 


4I{ J 


< 1 


1 1 


2BaaD 


2D 


< ID 


< 1 


' IDA 


<1 


41 000 


< ID 


<D7 


4D 


^5aD u; 


<i 


< L 


63 ADD 


1 1 


< 10 


< ZD 


460 


aij4IJCi5 


< IDD 


' 1 


<s 


344 


St, 


< 1 


< 1 


2iaaD 


19 


< ID 


< 1 


< IDA 


< 3 


41 000 


< ID 


<DJ 


B5 


< 5Aa 


<i 


< L 


6ZADD 


1.2 


< 10 


< ZD 


450 


ll'I^JEH 


< IDD 


< 1 


<s 


PA 


53 


< 1 


< 1 


2iaDD 


21 


< ID 


< 1 


' IDA 


<1 


4? 000 


< ID 


<D7 


36 


' 5Aa 


<i 


< L 


65 ADD 


< 1 


< 10 


< ZD 


440 


IJ/IV/M 


< IDD 


' 1 


<s 


PA 


54 


< 1 


< i 


26aDD 


22 


< ID 


< 1 


< IDA 


<1 


43000 


< ID 


<DJ 


36 


^ SAD 


<i 


< 1 


67 ADD 


< 1 


< 10 


< ZD 


470 


0H/L2/&I 


< IDD 


' 1 


<s 


PA 


5E 


< 1 


< 1 


29aDD 


21 


< ID 


< I U 


110 


<1 


4TOO0 


< ID 


<D7 


63 


^ SAD 


<i 


< L 


7ZADD 


< 1 


< 10 


< ZD 


430 


OVZ71)4 


< IDD 


< 1 


<s 


PA 


5Z 


< 1 


< 1 


2TaDD 


21 


< ID 


< 1 


^ IDA 


< 3 


45 DOO 


17 


<DJ 


7T 


^ SAD 


<i 


< L 


64 ADD 


< 1 


< 10 


< ZD 


440 


DVZV'&I 


< IDD 


: 1 


<s 


PA 


53 


< 1 


1 1 

< J 


2BaaD 


24 


< ID 


< 1 


: IDA 


< } 


4T IMMh 


1? 


<D? 


77 
?B 


< 5Aa 


^ S 


< L 


7 [ADD 


■: 1 


< 10 


< ZD 


iLO 


DVZV'&I 


< ilh 


< i 


<s 


PA 


5J 


< L 


naao 


2J 


^ J 


IB 


^JO 


<1 


45 000 


14 


<D? 


NA 


NA 


PA 


NA 


NA 


PA 


NA 


JZO 


DJ/L>I'&I 
IlidJIlJ 


< IDD 


< 1 


<5 


NA 


51 


< 2 


< 1 


29JIDD 


2D 


< ID 


< 1 


< lOD 


<1 


46 DOO 


< ID 


<D7 


36 


^ SAD 


<i 


< 1 UJ 


74 ADD 


< 1 


< 10 


< ZD 


5ID J 


< IDD 


29 


<s 


NA 


57 


< 1 


< 1 


22 ODD 


22 


< ID 


< 1 


< lOD 


<1 


46DDO 


< ID 


<D? 


79 


< SAD 


<i 


< [ 


67 ADD 


1.2 


< 10 


< ZD 


440 


OH/ 151)3 


< IDD 


i 1 


<s 


NA 


53 


< 1 


< 1 


26 ADD 


24 


< ID 


< 1 


120 


<1 


43DDO 


< ID 


<D? 


76 


' SAD 


<i 


< 1 UJ 


65 ADD 


< 1 


< JO 


^ 2D UJ 


440 


06riODJ 


< IDD 


' 1 


<s 


NA 


51 


< 1 


< 1 


211 ADD 


22 


< ID 


< 1 


' IDA 


<1 


4TDD0 


< ID 


<DJ 


74 


^ SAD 


<i 


< 1 


67 ADD 


< 1 


< JO 


< ZD 


470 


oiri]jQ9 


NA 


HA 


NA 


NA 


NA 


PA 


NA 


NA 


PA 


NA 


NA 


< IDA 


NA 


PA 


I9J 


NA 


NA 


NA 


NA 


PA 


NA 


NA 


PA 


NA 


546 


■or 14 JOB 


NA 


NA 


NA 


NA 


NA 


PA 


NA 


NA 


PA 


NA 


NA 


' IDA 


NA 


PA 


IB.l 


NA 


NA 


NA 


NA 


PA 


NA 


NA 


PA 


NA 


530 


OTyiSJQB 
^M/ZQ^a 


NA 


NA 


NA 


NA 


NA 


PA 


NA 


NA 


PA 
PA 


NA 
NA 


NA 


' IDA 


NA 


PA 


< ID 


NA 


NA 


NA 


NA 


PA 


NA 


NA 


PA 


NA 


544 

740 


NA 


NA 


NA 


NA 


NA 


PA 


NA 


NA 


NA 


< IDA 


NA 


PA 


L9.2 


NA 


NA 


NA 


NA 


PA 


NA 


NA 


PA 


NA 


DKZ^^B 


166 


NA 


N^ 


NA 


NA 


PA 


NA 


6D,zaD 


< 1 


' ID 


< 1 


ifdJD 


N^ 


6d imy 


15 ID 


NA 


<^ 


1 iADD 


NA 


PA 


129 ADD 


NA 


< 10 


NA 


•ai 



Fim asd SaDhI QiDiIca 7007 



P>p3 4]F4 



OclnlKr 2DD7 



Tabic A->J 

]<iu lb Df n Liv>L'<d M«ljfa A ■□■Tin 

I'lJ Sl» 

Fiuinliu oFSin Fn nc mn. OIIFa m b 



Wir hnmr 


Suniph 


i 


E 


■J 

c 
V 




E 

3 
l_ 

Tl 




3 

E 

■D 


3 
■J 


3 
P 

2 

Li 


-o 
o 
O 


V 

D 
U 


C 

E 


■D 


D 

ID 


T 


3 


z 


3 
X 
IC 

3 

G 
t- 


E 

3 
C 
1/ 
1/ 

J: 


If 


"3 


-1 


3 

1 

c 
a 


-J 


"E 
o -i 3 

— = A 




Mclbdil' 




IWQDID/ 
i*6azi) 




IfhJZM 




SWbDI4» 
S*0i)2i) 


S* 6(1 10' 


5*6010' 
S^bD24> 


swrioio' 

5WQ02D 


S*60I0/ 


SV>U>ICI 

^wQoro 


^WQOIO/ 


SAtULQ' 
1^bD2D 


^WQOJD 


&*baio 


^W747DA 


SAftflza 


^WQDID/ 

s*6a?o 


S*6aL0' 
S^bD20 


SftliOZO 


SWODID/ 

sftfiazo 


s*6aio' 

SWlXh24> 


SWQOZD 


S*(iOIO/ 


E1W> 1 






IHPT-) 


(I.F/LI 


<HfiT-> 


lliF/Li 


<HfiT-> 


fHpL, 


*vsi-> 


iHfL) 


iHfLt 


(Nfl'Ll 


iHfL) 


(N5'l-| 


I|JBT-) 


llip/Ll 


(^E'l-I 


fM*Ll 


<Nfl^> 


flip/L, 


<HfiT-> 


ll'J'l-l 


(Nfl'Ll 


<Nfi1-> 


IHPLI 


(Nfl'Ll 


(■F/Li 


CIrjDup 1 


.<T<ll ' 


— 


c 


IC 


ID 


IJHH> 


J 


l.\ 


— 


9h 


— 


lU 


-- 


3.1 


— 


— 


D.OIT 


I1K> 


— 


5 


4.1 


— 


1.7 


— 


I4Kp 


-- 


lUGWOi/ 


10/Z3^7 


n\ 


NA 


NA 


NA 


NA 


^TA 


NA 


NA 


^A 


NA 


NA 


^ IM 


NA 


XA 


< ID 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


S13 


DJ/14J97 


n\ 


NA 


NA 


NA 


NA 


^TA 


NA 


NA 


^TA 


NA 


NA 


^ IW 


NA 


XA 


< ID 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


Sfl3 


Mf21i57 
DI/IS^T 


NA 
NA 


HA 


NA 


NA 


NA 


^A 


NA 
NA 


NA 
NA 


?<A 


NA 


NA 


' laa 1 


NA 


XA 


IQ 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 




NA 


NA 


NA 


NA 


^■A 


XA 


NA 


NA 


: UK] 


NA 


X^A 


1 1 


^\ 


N ■ 


NA 


NA 


NA 


NA 


NA 


NA 


NA 



L - The iHciliflcil diuI}!)!!] mi:<lail|i> dec rcraul^ick pcrhrBcil bcjianiBf in Ik IccddJ QiDBcrZDDL The amilylnal ■dhiHb ibciI djnaf pKyiLU^ i|jdii(d an Uciliflcil id Ik icipccljvc ijidBciIv lEpuiik 

Z- FiD»TjhLc JL^fihc EAFrrnjdncIl J Pniln >1KI3l| 

3 - Dli[ 4d <Hhiii|4i[ r'icijc'ii cnorbr Ik libuDia ij , laa pt ?JIG*DQ ivji dcI jdjI^ jcd b} ICP-FJS brtk VmKti'Xl. mtnfc I he umpk bad okEBiIy br«.B dkpiHcil nfitkBllK i^bhiiud \-ai dbCDLcnd. 

|ig^L- mirahgrjiDi pci Licr 

mflL - mlllifiam] fi^r Ixr 

N A - NdI jiia],.<J 

Graund^ Ji( c UB pk-s [i^IIeihciI Eahin jU^ic Bi^BUHhiin^ h c It ^cie fiE Id like nrd ai>J anilj.filli^riliiM^lvciH mdifc Tahk II jb IIk uijId nrHhc^ kl( ulliki lunE nl jnil hmi^rcd] djLa k^ Ijiira 

CL iiIIj' ikvilci J ifjj LiL ^-hiUnl ikj plini^c ub pt m Ji k lU Ihh I k loH :n I IjhDDliij Kg Id ■ u oibEnjiulmic cg ncc nl bIiehu I hjl ocGcd ElcBiup ktk. 

Tjbic 7 ■□(he BJin It poll Kkiijiki ill 'kipliLJic a»:I npli uiripLct j»:l 4 he ^cll Eahiri m hnk iKc] ^cie iHhLlcLlcil — Clcjimp khtl niii c^uhlBhcil 



Fim a>d SaDhI QiDiIca ?0D7 



PAp44iF4 



OclnlKr 2007 



Table A-:>-4 

Resulls of Arsenic Special loD Anaij'sev 

Fkil Sklf 6 

Prc^idiD of S B n F ranc iiico . C ai I farn] a 



Localion ID 


Sample 
Dale 


Inoi^nlc 

Arsenic 

(As| 


^rsenlle 
(As lilt 


.^rsenale 


Percentaee 
of As III 


PerceDlayc 
oFAsV 




AuhL^IichL 
Method' 


I632M 


I632M 


I632M 


~ 








iM^'T-f 


IMS'LI 


IMS'M 


't 


'i 


Cleanup Levels 


10 


— 


~ 


— 


— 


LF6G\k' 100 


Mm4-m5 


792 


< 0.025 U 


792 





100 


LF6G\k' III 1 


1 

04/fi4AI5 


1 22 


< 0.025 U 


1 22 





100 


LF6G\\' lO: 


04/(l4-/ll.'i 


0.B5I J 


0.4S3 J 


1) Ifig J 


57 


4' 


LF6G\\' 103 
DUP04O5053A 


M/05/05 


0.3 B6 J 


< 0.025 U 


U.336 J 





loo 


M/05/05 


0.397 J 


< 0.025 U 


0.397 J 





100 


23 IGWn9 


OS/3 1/05 


405 J 


< 0.025 JU 


0.4O5J 





100 


O6/0L/05 


371 


< 0.025 U 


0.371 





100 


M/04/05 


344 


< 0.025 U 


344 





100 



Nal& 

I - The ulcnlLrird analyllcHi mcttiod|£l mtc tOi aniljEOvpfifDEmedbrglunLn^in ihc Se(DndQi]iTlfT2DCi1. 

7 -TheionccnlFBlLon of .^s V was dele rmi ncd by ihc laborilory bj sublriclmg Ihc ^iv III ciiinicnlEBliDii Fmm Ihe 

inorginic .^i^ co nccnl raliDn .\^ III his bee n deluded b I ^re bIcc eonceulnl lo fliv Itian inoi^amc .^s due Id anaiylicil 

VBnabilHy. AsV \s icporlcd as non-dclecl "■ he n .^ii III livdeleded al igrcalerciiinicnIraliDii Ibian inoigamc As 

3 - FEom Table 3 of ihc RAP (Trcidwcll & EdILd, 2003^. 

~CLejjJU[i level nol eivlibliivbied 

|ig/L - micrograms per I Her 

CL iiuffix dcnole* aquBl[lyionlroldupln.ale ivamii Ic w »s Hcnl li> Ibicconlinl libaralory. 

TibLc7 m ihe majn cej»rl idcnliElcs ail duplicate and i^plil iiampleiv lud ihc well fcom whjch I hey wece eo Heeled. 

Tibie II in ihr mun rrfocl jdeul if jeb en rreul and h islane b I d b li quahfjeis. 



Firal and Si^condQuHitcis 2007 



Pige i of I 



Oclolicr 2007 



Table A-^5 

Resulbof Dhwlvfdi:;asandTOC Analyses 

Ftll She 6 

PitaidiD af Sin FrinciacD^CilifamiB 



l.Dcallon ID 


Sample 
Dale 


F.lhane 


i:ibfne 


Melhane 


IOC 




Analyli^il 
Mclhod' 


RSK 175 


PSK I7J 


RSK 175 


SW9060 






ms/L 


melL 


mg/L 


mg/L 


LFftGW [0(1 


03/17/06 


fJA 


NA 


WA 


35 


04/04fl)5 


< 0.005 


<0 005 


<0.005 


3.0 


LF6G\\' LOl 


03/l7fl)6 


NA 


NA 


NA 


1.4 


04/04flJ5 


< 0.005 


<0 005 


^005 


1 5 


LFfiG\\' L02 


04/04/05 


< 0.005 


<0 005 


0.52 


[4 


LF6G\k L03 

DUF04O5053A 
LF6GW L03CL 


OJ/ 17/06 


NA 


NA 


fJA 


1.5 


04fl>4/05 


0.026 


<0 005 


^.005 


1.4 


04/05/05 


-: 0.005 


<0 005 


< 0.005 


1 4 


04/05/05 


< 0.0005 U 


< 0.00 15 U 


< 0.0005 U 


1 4 


LF6GW H>4 


03/17/06 


NA 


NA 


MA 


.7 


LF6G\k L05 


03/20/06 


NA 


NA 


MA 


1 -/ 


LFfiG\\' LOft 


OV2I)/06 


NA 


NA 


MA 


.1 


23 LGWU9 
DUFI L29052A 


03/15/06 


NA 


NA 


MA 


S£ 


1 l/29fl)5 


-: 0.005 


<0 005 


< 0.005 


1 3 


1 1/29/05 


< 0.005 


<0 005 


< 0.005 


99 


OB/31/05 


< 0.005 


<0 005 


< 0.005 


1 L 


06/0lfl)5 


< 0.005 


<0 005 


< 0.005 


1 2J 


04/04/05 


< 0.005 


< 0.005 


<0.005 


1 3 



] - Tbic LdeuliCLnJ Bn3Lyl]c;3l mclhodlsj arc tot anily&r'k pcifanncd beginning in ihe FIp^I Quarle c 2005. 

mg/L- milLi^riins per lilcr 

NA-Nol BiiBly^cd 

TOC - TdIbI Organic Cuban 

CL nuffln denolbv a quality canliDl duplicilcsaniph wi'^scnL In llicconlml labcralury. 

Table 7 in Ihe main repoil idcnliFibv all duplicBlc lud ikti LI I s b m [i Lciv lud I he ^e\i from u'tiich Ihcy ^e re lollei led 

Table II in Ihc main icporl identifies cuncnl and hialaricil cFalaqualificis. 



FiiM Bnd Second Qu antra 2007 



Page I of I 



OclDbcr 2007 



Tntlr \-3-li 
GrDBiuli-jlEr ][lEkD4HhB SBnimDr} 

Pnaduol Sab FraktecD, CdLiIdibb 



LVrlin 


□tlr 


Ld IVBhC ' 

4lHL| 


iHip nrCiilBg 

E lrvil»B 
irfr4 PI J.«*| 


CmiiiilTTiIrr 
, iJcEiri.i.ivi 


lV<JTrp< 


LrOCAJIK] 

1 

1 




iz.y7 


TJITJ 


11 7Q 


MIV 


LIAI 


7JIT3 


ISV> 


Mh 


«r|4Q£ 


17.^ 


7£.T3 


]Q 14 


■IIV 


Djrizme 


17.17 


7JIT3 


iQlD 


■11^ 


DUbiH 


l!i\2 


7Jn3 


JQ7I 


MIV 


ILT^HD^ 


[7.TH 


7Jn3 


jmi 


MIV 


OnrniD^ 


17.72 


7JIT3 


1Q)I 


■11^ 


fOr^HD^ 


rzAi 


7Jn3 


iat<E 


■iiv 


Diri41DS 


17. 3U 


7JIT3 


1Q-I3 


■11^ 


1711 HM 


17.71 


7JIT3 


ISVl 


■11^ 


4»Eii»ah 


IJ.TD 


7JrT3 


ism 


■ 11^ 


IkJ'ZJTH 


ILT4 


7073 


14 9? 


■11^ 


DHKUM 


[1.™ 


7JrT3 


14 91 


■11^ 


I7QJID1 


Ibi\2 


7Jn3 


1771 


■11^ 


«r|JID3 


llAi 


7JIT3 


11 2E 


■11^ 


D&Q7ID3 


11.31 


TJTTS 


11-17 


■11^ 


DirilLiD3 


H-JT- 


7JfT3 


13 17 


■iiv 


12/01102 


II.T] 


7JIT3 


ISDO 


■11^ 


oanOm 


17.72 


7£.T3 


JDI 


■iiv 


tarafoi 


I7A2 


TJTTS 


117 1 


MA 


OMMQ! 


I7A4» 


7JfT3 


IQ 13 


■IIV 


1 1 'l^nt L 


[J 7.1 


7Jn3 


ll-IS 


■ 11^ 


Ihii'lTTiL 


[JJ7 


7Jn3 


IITQ 


■11^ 


If^ltflJ [ 


[7117 


7Jn3 


isaa 


■11^ 


LEQO'AJllL 

1 

1 
1 

! 


"1'3D1>7 


LI.9H 


77 D3 


Jim 


■11^ 


IT^M^H 


lau 


77 D3 


]4 9S 


■11^ 


«ri4'IH 


LJA] 


77 D3 


11-l[l 


■11^ 


lani/ot 


LI.7I» 


77 D3 


isai 


■11^ 


DHbHH 


LJ.L] 


77 D3 


11 9D 


■11^ 


III.SiD^ 


LJJKt 


77 D3 


J123 


MIV 


4£l.n;D^ 


LI.E] 


77 D3 


11 9D 


HA 


<>J'731>^ 


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21.72 


3b 37 


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lltL'l>!'l>3 


27.72 


3bS7 


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rap IBII 



OUalniai' 



Tntlr \-3-li 
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ran mmI ^«a<kk qumibi mu7 



lap mil 



OUalniai' 



Tntlr \-3-li 
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FilLSilE'i 
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4lHL| 



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ID 13 
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lUI 



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I - 111 it-Tili EHh i.min ■iijiur^mi'ils JTL oijiff jgL dFIIii'i' mmri'BfiU ncnntil Ii Ihe ItlL 

3 - 1^ I'JI ^ Ji ^iKMbiol itjjlij Itk SkomI (Ja Jjlid )N4 

3- Tl>:ili)lKli ^ Jl« i.mi ImiifHTli Jicwdol Jt 3 31 li'i'4 rjltktllDJi J 3 ]J Rfloi ?ft NmerrlKr 3001 

J- PviHhniilizr ^ Jkf U\ I't ■< jraiKliial a iK tHal iLrEuc ar^m i.^aii ti<k 
■11^- ■iHiilLtlif i.mJ 
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P7-Pt^^HlUlI 

li:!! PLL'A- li'iljinvi' PiutJHf LuaiT U]\^ ^'ilB vol Hill 4hlu B 



ran mmI ^«a<kk qumibi mu? 



lapimi 



OUalniai' 




N 



150 Fesl 



LEGEND 

f^ LFGGWIOO SliflLLDwCr4iiiiidwji«-MiiiiilDnn^ Well 

® LF6PZ1D1 SluilLii*-PiczDnicl«- 

LF&GV/102 SliflL|DwGr4iiiiidwjlcrNiiiiiLlDJinaWcL| 
jibjiiiduncd belwMn Q[/Q? 3J05 

i 331GVV7Q Adjjiccin Slud J Arm U'cLI 

11 231 pan Aijjiccin Slud J Atbi Pii:ziijnclia- 

1D65PZ1A Abflnd iin ciHJriiiiiid''iilcr Mil n liming 
WcLI / E* icjii mclcr 

TopoBTflphTC Cnnltmr iCnnltmr Imia-vsL Ifl HI 

fbruier ll mlilin]! OuILlik 

RimicrFLlI SlIc d A tiJi^vatinn fioimdiiiy 

Appnisintilc LilcraL 
tclHllDrVlLLSLlcSB 



Bmlding jnd Numba' 



Nola' 

LOi^DDn cpf I DiiiQ of fl 1 1 from Elchi&id Mbdi lnsQl|ai«i 5 iHs 
Ffjfiibih^ SlikE> {EJiL, 2WJ) 

Honzoilfil Daliim. NAD 27, CA SHtt PlaiH CooidiiiflKs, ZorH J , frtl 
Vcni^fll rJflluni Jlo|>BEiapli>l Konh Anidai.:Hi Volial Oaum, KAVOHH 



FILL SITE 6 AREA 
SITE PLAN 



"n^adwell&Rollo 



Presidio Trust 

34 Graham SIfmI 

P Bi» 29052 

San Francisco, CA 

94129-0052 

4-|5'561 -5300 

fa:< 4-T5/561-5315 

OclDber 2DD7 

FIGURE A-3-1 



LEGEM) 

^LF6GW1Cn 
15D5 

® LFBPZIOI 
9.23" 



Nr-T 

a LF6GW1D? 

V bOQGWI 04 
-. iiiJIG^'l'" 
■■ IMBPZlE 
i231GW17 
■■ uW 




ShjLLiiw Ijriiujidw flier Nliniilnnng \i/c[[ 
f-ibnusy ?007 liraundw^La- tL^flhon 

f'^bnary ?00 ' l~rruiijidwj|ij FiL^flHim 
ShjLLuu f Lcjoiuiclcr nol laol liii ]^liiid»fll4:r 

Nul mcflsurrd 

AbondnDEd ShjLliiw Ijmujidwiilcr ManHnnnp Wdl 

Ad|fliml Sludy Arcj ShflLLnw duinidwfllcr Wcl 

hlnmcdifllc Grn imdwfllcr Mini iliinng Well 

hli.TTHi.'Ji iiLi: P liMimcli:! 

Ui:iTi friu [nid*flLcr MuiuLimnp WcU 

Dap [^4a4lJIli:L□■ 

Appionnifllc UircLliim a f 
Gni [nid*fllcr f^Lii * 

Gni [Didwfllcr Canlour {Canlour IiiIh\tiL- ? H] 

Tapagrapliic Canlour {CanlDiir hlci\TiL I4l fl] 

Farmer Uin Ld iiy OulLinc 

Fanner FiLL SilcCiA F3«ji\3liiiii SaLDidnry 



Appiuximfllc LfllnflL 
FidcnIarfilLSilctiB 



Uu 1 1 djii|> flnd Nuinber 



FILL SITE G. BUILDir^GS 231/ZD7 AND 

BUILDINGS 10G5/1D27 

2G FEBRUARY ZDD7 

SHALLOW GROUNDWATER ELEVATION MAP 

TVeadwell&RDllo 



Presidio Trust 

3J Graham SIfmI 

P Bi» 29052 

San Francisco, CA 

941 29-0052 

4-|5'56l-5300 

fa:< 4-T5'561 -531 5 

October 2007 

FIGURE A-3-2 






LEGEND 
% LF&GWIDI 

a 1D&5PZ3A 
S 1D&5PZ1A 

V 2J 1 (Jw:; 




MbJkilciDrEUilli L1>biM\^'4AjiJLHLL<>tiMV^'4BaLHL 
|i4i7DmLEj'. LOCiPZLA^id I {'^ PZ L B ii'^j^ dL.dJ!d»iLi^ 

TIiL Hnbl> sIl£] loii' Eiombdw^ij i^jhiLfl-ajubg Ki n angtlid 
HitTDiE^5i^4ULHLQuan]2007iv£i L1>bi M^^' LOJ A. 

HraiaukQl DfiDuii NAD 27, CA 5QH: PIbik CooTdiiulfs, 

SliLL j , fill 



ShiiLLii *■ Gruund *aLij Mun mimig ^ dl 
ShiiLLn^ P iiviiniclcr 

Ab-iniSujicd Sh ^LLiiw duundwiiLiJ MimilnmiE 
Well fP\^:xmclcr 

bilcnnriiialc liniujidwiilij HnnilomiB Well 

hlcnnrd LLilc Pici4iinclcr 

Ahim ikncd lnl;:niicii] jL^ l~rTU [ind*alcr Man iluniig 
Well / 1' [iyuTiKMiJ 

Appraxiiniili: L>irctlniii a f 
Ijiuiniii^jilcr I'liiw 

Ijitfltiin ii ( Uu I Liiuig fOb^ bilcjim Actian Aicn 
Unimiiiui'priividcdby MACJI.C llic tnlnun 
Atlnlln^l^l^; pUccin NovcmbriJOUi 

UuildiTiG 10 J7 lO.OOU G^Uiiu !■ ucL OQ 
UThliiyiu [Did Sluiigi: lLiiik{USl"| 

fimner [I iii Id in[" OulLim: 

E''iniicr f'lLI SlIcClA hjnuviitiini Ekmndmy 

Appiu PTH jL^ L^lcriil 
f^mlur"HLSiil^t.U 

bu I Idmi' .Hid Nunibi:r 



Q2-2'J0 7 duimdwiilij C'inii:4:nlraliuiiE 



<5 Q?-^007[JL'iiiU'^ Ariciiii.CnTiLailr.iLiiniOi^Ll 
Jti'AMnJiiHiS^^tiOH^SWCiO^Oj 

f * Q I -?00 7 duimdwiilcr C4ni[ciilralmiii 
I* ' 
<5f < 5f 1.1 QI-?1lOV[?LSMiLKdAriciii[Coiii.cnlr.iliini||i|^L| 
{(-.PA MaJind SAVtiUH^SWtiOJOl 

- ScLinid valine r;:pri:Kini .i b Luid dup Licjilc 
llnrd value ri:prcwins .i q UiiLily mnliu L d up Licjilc 



FILL SITE G AND BUILDING 1 DG&/1D27 

REDOX DIAGRAMS FOR 

SHALLOW GROUNDWATER 



TVeadwell&RDllo 



Presidio Trust 

34 Graham SIfbaI 

PO Box 29052 

San FranoscD, CA 

94129-0052 

4-1 5/561 -5300 

fax 415/561-53-T5 

Globe r 2007 

FIGURE A-3-3 



rirst Quarter 2007 



MONn-OR?NG WELL SAMPLING LOG (Normal, Low F\qw, and Low Yiaf:^) 



& 



ilcir*iT 



Hacprdcd By 



-i^ 



S^n-f 44d b" 






^/^e/c 



t-? 



WETLL PURGfKG 



PUHGE ^OLNW^ 



PURGE METHOD 



^b" ;a&ing dlanaler 

[X| ^-nch Q -l-.i^^ £IO'l-ar 

Well fara* DepOi |TD, ][. bEJon TQC) ; "L^ -S^ 
D?prij [□ Waier (WL ft b-rait IDC} ■ l^^flt* 
Dtplli la Frtt phaSB (FP, Jt. heloii TOC) ; 

NUrrbar nf bni^DlF varurm laJra nngpd 
□a El Nn( 4|i|iirKaQ!« [Jcihirf 



LjqrinI in j 1 Fact S^allan qF 1 Qonng f^^nn^p 



9 Z 



WalerV&liimiFl 
^27 



Qwornial 



fJPurplTypa 



J^'y^ 



i/. 



JfUMP IHTAJfE 



jrii^artap 



^Edih (n^ 



)'^kt GolBiin Daplfi {H] 
llhar 



PUHQ^VOLLJ^ilECALCUljini^ 



4CU1. 



n 



V^ar?r Galunni Lai^lh 
Tcffll P'jtoa TTihb tOi^ly^ 

flBCHarua flala ' 



Water 'f cfumEylf 



i'Jn. 'Ijli 



q^iA 



C^LCULflrEI? ^pG& vcLu^.ie" 



Furp- flala 



^.s^ 



fGHOLTpfDVfJTER PAPfl;j1^E!l MgASJJ R& MEf JTB 



■^ 



*^ 



l-^r gara 



^CTU;y_pURac JDt'JME 



UverTYQt / 



UXh'^Ji^.Jj '^si 




J MWItJfJS rJlETHQD 



Equip mail 

sanpunoad 



Dar9/T>TiH San^ilad 

PURlp-t|M *^^ 

'^^ ND FIlEsFBd Sairpt Analrsa: 



WELL S AMPLING 



DriS^M /U' 



QIFiqr 



flABIPUNG PRDQPAU 



^molf t<iQ. 


1 nnnUtft^r '.'Vulrimp 


LaPeiamry | 


CDC J 1 Oonwnann 


i-H C\/^ (« 


tlil (. *F 4.UJ 


^4T 


Tr'^^" 






ly&fl^-it, rMb, f'jj 1 










■ f/^a nP F.L 








Hf<itf^i ^iir-;.,^ f 


. 





□UALITV CONXnOL SAA1PLES 



PiifiircjUf Samntaa 



■^X^40.^i' l\^C(, t*^ 



SFsr-h Sdmnk 



Qn^injl ^anvlB '•^u. 



DilpfciH SarrgiB Nq. 



iireaanef^Sano 



jiE. 



Tnp, 



nrnuAiu 



'idniJer 



uah: 



5arrp»i^. 



MONJTORfNG WELL SAMPLfNG LOG (Narma!, Low Flow, and Low Yfa!d) 



^A 



Sjirip^lf 3'. 



PI 



Dar? Ui%kj^ 



WE-LL PLPRGiNG 



PUflGE VOLUME 



] 



PURGE W^TrfOD 



WVrll BTi^ diBmaCer 

3 ^'.nch Q ■i-'if" QoihEF 

WeHTolaJ DeptM (TO, PL bplortr TQCf r-2.*ifl(? 
LJapllilE] W3ler1WL,r[.bdu^TDC): F). S*i 

Depdi le rr>f pJiasB {FP, ft below TOq : 

HUmb^r [rf lrai?finrp vo^mnS la ba purwd 
[ J3 3 ^lol *ppjejHlg yoUigr 

jPIJHGE LiPLLTME CAJ-CULA TlQw" 
1"L -■'i 



Liqurtf Jn J 1 Pn^r S'^'mn 3f d ^Dunq IgallHisI 



3o-cfiaia Sljo ~ jiing 5lf ? 
B ! 

la A 



'i'jtarVijIuniff.f 
I.B9 



[jNannal (JPurB^Typ? 

UJwiJ^ilied fmex 5 ypm^ lloiJiaF 



PUr^fP IfJTAJCE 



V 



riftinnj 



i>BDin (rr^ 



NeHfBDtfDjn Deplfi |lr| 
:)|[iEr 



WaCET DDlumn Lf ngm 
TMI Piffon r-"a '^"^^ 



kVarer i|aiumi?/ir 



No 'InlE 



qai9 



CAU:Lfljrfci::ri,nGEvcL'JP^£ 



^ 






, Xf gnrT 



ACTLWl-PLrnGc V^CLJ^E 



iGP.OUrJDWaTER PAPJ^METEH MEflBlJfrErilEfn'S 



J 



rjyfli: 



f^ihhihk.ir/IOf.t^ 




CcnvTiHil? 



Purgs ■nfllprircuagMllDMBl 



[jDmrranad angile 



t Mb^?''^'^'^^ 



WELL 5AMPl.rNG 



I ^ArjIPLING WETlfOD 



□]U?rrtiia sumDiea 



Purging 

Eaurp""!* Paini'tipB _ 

SaiTifa Rlrmifi ^^,'Nq F»arrt Samole Arntyw: 






□Ehn- 



SAAIPUMG PnOGRAM 



aainph Ha. 



6^1 L «/P 



Libt^aLary 



_t±L. 



Gac ' 



-m^ - 



CofnuianlB 



jX ff/fj -'L ft^f F-h^ 



*^ ^y^l fM:^^ P>l 



iH 5p»^;^ A^Prtf ife_P4 



QUALfTV COHTFIOE, SAJlV^IH 



^-Hffrtl ikl V^f 



PB|J(fcrtq Sanipfg^ 



Ciian^ SamoJE 'la. 



B'u^ SsiTiplM 



Oupilcalg ajmglfl rjp. 



finyir-inrrwia^ anrf Off dWeVuithI ConnjC^f 



TtllB 



Tip 



RinaH 



FrdnSUr 



Dirif 



odii-Li: NC. 



I ■ 



MONITORING WELL SAMPLfrJG LOG [Narmg?, Low Flow, and Low Yiefd) 

S«» ' 'Vsa ^^0 9' C^ f?// ^ W^ri NO IJ^C^lOj 

^^mcfEdby 'Qfj 



l^rCf?c( Ni/mbBf 
Fl^jjdBEl 5y 



-2/1. 



Dare 



2j2.3/'ry 



'^niL PURGING 



PlfBG^ VOLUME 



PURGE W^KOfJ 



Wei cafing laniclrc 

j^ J-inff [j J-uiOi Qoiher 

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E 



BATTERY HOWEAVAGNER 

APPENDIX SECTIONAL 

SEMI-ANNUAL GROUNDWATER MONITORING REPORT 

FIRSl' AND SECOND QUARTERS 2007 

Pr«sidio of Siin Fi'aiidaco, California 



1-0 INTRODUCTION AND BACKGROUND 

Baltery Howe/W^giier is located in ihe norlhweslem porlion of the FVesidio (Figure I j. The site 

ground surface elevation is approximately 175 lo 220 feel above tlie PLLWdalum. The five- 
acre sile is bounded bv B atteiT Wagner Road on ihe norlh andeasU Uplon Avenue lo the wesl» 
and Ruckmun Avenue to ihe soulh iFigure A-4-1). 

Baltery Howe/Wagner was the first 12-inch moitar fortification eslabhshed in San Francisco 
(Dames & Moore, 1997|. The foitification was conslrucled in 1S93. The dale the Balteiy 
HoweWagner site was decommissioned is unknown, allhough aerial pholographs indicale the 
site was covered with fill some time belween 1963 and 196B. Polenlial sources of contamination 
reporledly exisi wilhin Ihe debris fill iMonlgomery Watson, 1997a). 

Erlerfi Kahnow^ki, Inc. (EKI) installed three new monitonng wells (HWGWIOO, HWGWIOI, 
and HWGWm2)alBatteTyHoweAVagner in July 2000 (Figure A^-l). These groundwater 
monitoring wells were construe led between Building 1233 and existing monitoring wells 
BHWGWOI, BHWGW04. and BHWGW05 to evaluale whether historical releases of carbon 
teti"achlonde or other volatile organic compounds (VOCsl, formerly slored wilhin Building I233» 
have occurred (EKl, 2000a). Momtonng wells HWGWIOO and HWGWIOI were i nslalled, 
developed, and sampled using low -flow sampling melhodologies in July 2000. Groundwater 
was not observed in monitonng well HWGW 1 02 during drilling, wellconstruclion or during 
subsequeni monitonng events. Therefore, groundwater samples have never been collecled from 
monitoring well HWGWJ02. 

Groundwaler sampling events have taken place al Battery Howe/Wagner since August 1992 and 
samples have been analyzed for VOCs, dissolved and lotal metals, hex av a lent chromium, and general 
chemislry parameters. Hexava lent chromium analysis was replaced by dissolved aluminum, 
chromium and iron analyses beginning with ihe Second Quarler 2003. Additional dissolved metals 
were added lo Ihe samj'iling and analysis program begmning wilh the Second Quarter 2006. 

Gurrenlly, the sampling and analysis schedule (Tables lA and IB) for Ihe Batlery HoweAVagner wells 
includes annual monitonng of VOCs andquarlerly moniloring of dissolved metals and general 
chemisliT parameters. Oxygen -red uc lion j'lotentia] (ORP), pH and lemj'iei'alure are also being 
measured in ihe field as pari of ihe low -flow sampling technique. Current and historical analylical 
results are presented in Tables A-4-1 and A-4-3. 

Fiisl Bitd Sccand QLiani:!^ 2007 October 2007 



2.0 SITE DESCRIPTION AND GEOLOGY 

Baltery Howe/^'^giier is in ihe Marina Groundwaler Ba^m (Moiilgomery Watson, 1 996c). 
Depth lo ground waler ranges from approximately I ] to 30 feel bgs. Groundwater flow is 
generally loward Ihe northeast, bul has been rej'ioiled as both lo the east and norlh (Dames 
and Moore. 1997). 

Aitificial and debris fill matenal lie benealh Ihe Ballery Howe/Wagner site at deplhs ranging 
from approximately 2.5 lo25 feet bgs. The artifidal fill nialerial consists of poorly sorledclay^ 
silt, sand, and gravel, with vanous lypesof rock. Thedebns fill consisis mainly of clay and silt 
^^llh varying am ounis of building materials, including glass, wood, brick, concrete, melal sirips, 
and wire. Colma Fonnation sediments are present below Ihe fillmalerials and consisi of two 
distinct units: a silly clay colkivium ranging from to 16 feel thick, and adnne sand ranging up 
lo 7 feet thick. Franciscan Formation bedrock underlies the Colma Formation. 

3JI GROUNDWATER MONITORING 

Baltery Howe/^'agner has six associated monilonng wells (Flgui"e A-4-1). During Ihe First and 

Second Quarters 2007, groundwater elevation measurements were collected at all Battery 
HoweWagner mom loring wells, with HWGW102 beingdrydunng both quarters. During the 
First and Second Quarters 2007, groundwater samples were collected from five of the Battery 

Howe/Wagner momtonng wells [BHWGWOI, BHWGW04, BHWGW05, HWGWIOO and 
HWCWIOI) and analyzed for dissolved metals and general chemistry parameters. In addition, 
samples were collected and analyzed for VOCs during Ihe First Quarter 2007. 

3.1 Grouiul>vater-Level Mcflsuremeiils and Iiiti-rpretalion 

Groundwater elevation measurements were collected on 26 February and 4 June 2007 at site 
wells except for HWGWI02 which was dry. Groundwater elevations are summarized in Table 

The groundwater elevations measured at the Battery Howe/Wagner site are generally within the 
range of historical elevations. Water-level meters were calibrated on 26 Febinary and 4 June 
2007. The calibration logs can be found in Apj'iendix B. Groundwater elevation field forms can 
be found in A]ipendixC. 

During the First Quarter 2007 groundwater elevations ranged from 159.26 to 187.54 feet above 
PLLW in monitoring wells BHWGWOI and HWGWIOI, respectively. Groundwater flow was 
in a northeasterly direction dun ng Ihe First Quartei 2007, which follows the general topographic 

trend (Figure A^-IJ. 



Fiisl Bitd Sccand QLiani:!^ 2007 October 2007 



During The Second Quiitei" 2007, ^ouudwarer elevalions ranged fiom 157.29 to 1 87.78 feel 
above PLLWin moniloring well^ BHWGWOl and HWGWIOI, respeclively. Groundwaler flow 
was in a northeaslerly direction dunng the Second Quailer 2007, which follows The general 
topographic irend (Figure A^-2). 

The First and Second Quarler 2007 groundwater gradieiils wei"e e^limured To be approxlmalely 
0.06 and 0.07 feel per fool, respectively. Monllonng well HWGWI02 was not used In Ihe 
groundwater contouring or gi"adienl calculation during either the Firsi and Second Quarters 2007 
because il wasdiT. Groundwater gradl en is and flow directions are consisleni wilh previous 
findings al ihe sile. 

3.2 Monitoring Well Purging and Sampling 

During The FirsI and Second Quailers 2007, five of The six Battery HoweAVagner si le monitoring 

wells (BHWGWOl. BHWGW04, BHWGW05. HWGWIOO, and HWGWIOI) were purged and 
sampled on 6 March and 6 and 7 June 2007, respectively. The remaining well (HWGWI02I was dry 
dunng both The FlrsI and Second Quarters 2007 and was nol sampled. All Barieiy Howe/Wagner 
monitoring wells containing water were sampled using methods shown in Tables I A and IB, and in 
accordance with procedui'es described in the FSP(Ti"ead well Si Rollo, 2001a). 

Purge equipment, purging vokimes, purge waler general walerchemislrv parameters, and 
sampling equipment for each monitoring well are descnbed in the purge records located al the 

conclusion of this section. Purge water was stored for fumre disposal in one of two 2,S00-gallon 
abovegronnd polyethylene storage tanks, which are located al Ihe Genhal Magazine. 

33 Groundwater Analytical Program 

All groundwater samples collected were submitted to Ihe project laboratory for the analyses 
shown in Tables 1 A and IB of the main text. The appropriate sampling containers, 
preservahves, and maximum holding times for each analytical method are shown in Tabled. 
Sample containers collected from each well are described in the purge records located al the 
conclusion of this section. 

Quality assurance and quality control (QA/QC) samples were collected as part of this program. 
Section 6.2 of the mam report discusses the QA/QC sampling and analysis performed for the 
First and Second Quarters 2007. 



Fiisl Bitd Sccand QLiani:!^ 2007 October 2007 



4^ 



GROUNDWATER ANALYTICAL RESULTS 



4.1 Dissolved 0\jgen 

Dissolved oxygen m easuiemen Is r^k en during the Firs! and Second Quarlers 2007 al Battery 
Howe/Wagner wells were wilhin hi stoncal ranges [Table A^-1). 

4.2 General Chemisti'v Results 

The table be] o^v SLimmarizes ne^v high and low general chemistry analyhcal resuUs for ihe First 
and Second Quarlers 2007 when compared lo liislorlcal dala, and provides Ihe range and 
frequency of hislorical resulls (Table A^-1). The lotal number of analyses may vary depending 
on Die samj'kling frequency, the commencement date of sanij'kling, and Die number ofdnplicale 
analyses performed. 



I^ibUdii 


Auljlr 


nciiciij/ 

SamplL'^ 


HbilDFical Pala 


New H^K^AW 
Flral & Srtvnd Quarter 2007 


1 UDlb 




Minimum 


Mii\lmiim Mlnlmuiu 


Maximum 




Grncral CbmbCrj J 


EhV-'lAlr4 


^ ih rjiiFBii: 


I'l/L'J 


4 5ty 


5 7 


1 45 


~ 


mgyL 


HWGWICO 


chloride 


14/14 


23 


590 


- 


960 


nif/L 


W V. WllFBli: 


1.1/L? 


on 


1.3 


1 


~ 


nif/L 


SuLfalc 


I-I/M 


65 


300 


- 


1,100 


mf/L 


HWGWIOL 


Chloride 


ISTS 


4B 


230 


A6 


~ 


nif/L 



SignificanI new high and low general chemistry resulls are discussed below. 

• Chloride was delected al anew higli concenlralion of 960 mg/L during the Second 
Quailer 2007 wilhin monitonng well HWGWIOO. Thisdelection was almost twice ihe 
previous high concentration for ihis well and it also exceeds the cleanup level for chloride 
(250 mg/L), lisled in the Cleanup Level Document (EKE, 2002; Revised 2006). 

• Sulfale was detected al anew high concenlralion of 1,100 mg/L during Ihe Second 

Quailer 2007 wilhin monitonng well HWGWIOO. Thisdelection was almost four hmes 
the previous high concenlration for Ihis well. 

The remaining general chemi shy concenh"alions were either within historical ranges or shghtly 
above or below previous concentrations and do not appear lobe significanL General chemistry 
concenlralions will conhnue lo be monitored during future quarlerly sampling events. ORP, pH, 
and lemi>eralure measuremenis were collected dunng low flow sampling beginning in the Flrsl 
Quarter 2006. First and Second Quarter 2007 general chemistry resulls are summarized in Table 
A^-l. 



A^^ 



Firsi Brtd Sccartd QiiarH^ia 2007 



Oclobcr2007 



43 Dissolved Melals Re^ulls 

Groundwater 5ampfes collided from Ihe five Battery Howe/Wagner monitoring wells were 
analyzed for 22 dissolved melals during The Fli"^l and Second Quarters 2CMD7. The cuneni and 
hislorical dissolved melals lesulrs are shown on Table A^-2. 

The t^ble below summarizes new high and low dissolved melals analyhcal lesults for the FirsI 
and Second Qiiartei"^ 2007 when compared lo hislorical dala, and piovides the i"ange and 
frequency of hislorical resulls (Table A^-2|. The lotal number of analyses may v^it depending 
on the sampling frequency » the commencement date of iampling^ and Ihe number ofdiiplicale 
analyses performed. 



LqcbUod 


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SHDipka 


Hbilcrical Pala 


' Flm & Srcond Quarirr 2007 


UDlb 


Minimum 


MaxIm^H 


[^llnlmuni 


Maxtmum 


MEbb 1 


EHWGW04- 


AnlLinjny 


ms 


<l 


<6ll 


~ 


2.2 


ug/L 


Copper 


.■i;l6 


<l 


<lll 


- 


L6 


ug/L 


Vinadium 


2/[5 


<10 


<I0 


- 


LI 


ug/L 


BHWGW05 


Banum 


14/14 


18 


90 


- 


92 


ug/L 


CHlcium 


14/14 


351100 


TO 000 


- 


77,000 


ug/L 


MignCkLum 


14/14 


64^)00 


80,000 


- 


89,000 


ug/L 


Min^Bit^L' 


14/14 


Ki 


560 


- 


730 


ug/L 


[^IchcL 


1.1/L? 


17 


341 


- 


42 


ug/L 


Sodium 


13/U 


220 JBO 


270,000 


200^10 


~ 


ug/L 


HWGWICCi 


AiscnLC 


4/5 


57 


T.e 


5 


~ 


ug/L 


Banum 


J/5 


<I0 


17 


- 


27 


ug/L 


CbIciufi] 


4/5 


<5IB 


30,000 


- 


36,000 


ug/L 


Chnmiliim 


9/9 


IJ 


49 


II 


~ 


ug/L 


MignCkLum 


5/5 


49^10 


140,000 


- 


1 70flOO 


ug/L 


MingHitrsf 


4/5 


<iO 


60 


- 


S6 


ug/L 


Sodium 


5/5 


220 0QII 


290fl00 


- 


340,000 


ug/L 


Vinadiuin 


L/5 


■:io 


<I0 


- 


LI 


ug/L 


HWGWIOL 


Migne'vLum 


5/5 


25IIO(t 


26,000 


liitOO 


23,000 


ug/L 


PdIIS'LUIII 


5/5 


7!I0 


L,hLiO 


660 


~ 


ug/L 


Sodium 


5/5 


210I1KI 


260,000 


200^10 


~ 


ug/L 


Vinadium 


L/5 


■:10 


<I0 


- 


LI 


ug/L 



SignificanI dissolved metal re^ulls are discussed below. 

• Anhmony wa^ delected for Ihe fiisl lime ^1 a concentralion of 2.2 |jg/L during FirsI 

Quarter 2CMD7 wilhin monitonLig well BHWGW04. Thisdeteclion was the first time 
antimony has been detecled wilhin any Battery Howe-Wagner monitonng wells. 



A^-5 



Fiisl and Second Quani^ia 2007 



Oclobcr2007 



■ Bariuni was detecled ax r new high concenrration of 27 |.Lg/L during Second Qiiartei" 2007 
^^l^hin moniroring we]] HWCWIOO. This delect on was more ihan I wice the previous 
liighconcentralion for this wel]. 

■ Chromiumwasdetecledin wells BHWGWO].HWGW]00. and HWGWIOI. During The 
Firsi Quarter 2007, dissolved chiomi urn was delected al concentrations of 21, 15, and 

] 10 ^Lg/L wilhin moniloring wells HWGWIOI, HWGWIOO, and EHWGWOI, 
respectively. Duniig the Second Quarter 2007, dissolved chromium was detecled at 
concenlralions of 20, 1 I, and 100 |.Lg/L wilhiii monitonng wells HWCWIOU 
HWGWIOO, and BHWGWOl [primary sample), respectively. Thedetecled 
concenlralions within BHWGWOl exceed ihe cleanup level (50 \ig/L) hsied in ihe 
Cleanup Level Document. 

■ Copper was detecled at a new high concentration of l6tig'Lduringlhe First Quarter 
2007 wilhin the duplicate sample from moniloring well BHWGW04. This detection is 

over five hmes Ihe previous high concentration for ihis well. 

• Vanadium was delected at anew high concentration of 1 1 jig/L during ihe First Quarter 
2007 wilhin moniloring wells BHWGW04, HWGWIOO, and HWGWIOL Vanadium 
had nol previously been delected within any Batlety Ho we/ Wagner moniloring wells. 
The vanadium detections maybe anomalous and therefore, vanadium willconhnue to be 
monitored wilhin these monitoring wells dun ng fulure quarters lodetennine if ihese 
results are i>ersi stent. 

Remaining dissolved metals results for the First and Second Quarlers 2007 al BatteiT 
Howe/Wagner wells were near or wilhin historical ranges and are not considered significant. 

4A VOC Results 

During the First Quarter 2007, samples were collected from Ihe five Batlery Howe/Wagner 
monitonng wells and analyzed for VOCs. No samples were analyzed for VOCsdunng the 
Second Quarter 2007. 

Moniloring wells BHWGWOl and HWGWIOO were the only wells with detected concentrations 
ofVOCs. Moniloring well BHWGWOl had concentrations of carbon lelrachloride (I \ig/L)an6 
chlorofonn (0.7 |ig/Lj detecled wilhin historical ranges. 1,1 -DC E was delected dunng theFirsi 
Quarter 2007 wilhin monitonng well HWGWIOO at a new lowconcentrahon of 1.2 |jg/L (Table 
A-4-3). The detecled concentration is only slightly lower than ihe previous low concentration. 
No other VOC s were detecled wilhin ihe Battery Howe-Wagner monilonng wells during this 
quarter. 



Fiisl Bitd Sccand QLiani:!^ 2007 October 2007 



5,0 CONCLUSIONS AND RECOMMENDATIONS 

Giouudwaler elevalions, gradients, and flow directions during Firsi and Second Quarters 2007 
are consislent wit]] hisloric^l values and interpretalions. The five Batleiy Howe/Wignei 
monitoring wells were samj'kled and analyzed duiing the First and Second Quarler 2007 wilhout 
any sign i fie ^n I findings. 

The majority of general chemistry and dissolved melals re^ulls were within the range of 
previously detecled concentrations for Battei"v HoweAVagner monitoring wells and are no! 
considered significant. Chloride and chromium were the only analytes delected above their 
cleanup levels during the Firsi and Second Quarlers 2007. Chloride was detecled above its 
cleanup level in HWGWIOOdunngIhe Second Quarler 2007 and chromium was detecled above 
Its cleanup level during both Ihe First and Ihe Second Quarters 2007 above its cleanup level. 
Chromium has ei'iceeded its cleanup level wilhm BHWGWOl since 1992. 

Antimony and vanadium were delected for Ihe firsi lime in Balteiy HoweAVagner monitonng 
wells during Ihe FlrsI Quarler 2007. Analysis for dissolved melals will continue to determine if 
trends develop. Only 

The VOCs results for the First Quarter 2007 are similar to historical trends with low levels of 
carbon, tetrachloride and chlorofonn delected in monitoring well BHWGWOl and a new low of 
concentration I, I -DCE detecled in monitoring well HWGWIOO. 



Fiisl Bitd Sccand QLiani:!^ 2007 October 2007 



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L - Ttk titil II ^"d iiu|rLI.Jl mahmkil jrc If jjdIj m [iiitwiDi'Ll tii'f rnlif Ii4tir 5<[ml (^bIb XOI Th' jjuIjIK'j] BfUind imiI djclig |¥rvlu] ^oliin 
lit Uxliricd Ii Itii r.-^Lllm ifj jrLff " rqurLi. 

Z-Ctonfi t'LP Ijk^i I'lniTjI^Q 'J- nite J'lvrl.vn-'irJ .r/ri'iiul.'-iiviil Clt^iiifi leitlip" 5-ii' -n^ifrrir/ I. iihv.atf ii dIt .uJ V.i^Wir II'd/'i 4 Eh] ain3:Titil' T-fi rrvFrnT liny 301b) 

3 - TEit r^ Utxxaim jinaL ri'iuli iIxh^iiluiL hhii LHimriihJ L'l iilralL J^ nliHh^fii (lUmi^nt JTiOKf DtiL'alaj Ji:^u Imi^ C'.'pini'Ll Tl>:QC Ubmi"^ 

iqxTihl iilrjL^ » IXI LHiKi'iInilTD ^iilfjl^ hi:t.| whkh bf -1434 1■<^ Jiljhff Itui iilraL-N' cmifilra Kib 
mg^L - mUllpaBi j'i'f llii 
NA - ml jjDl^ihl 
Nil - nU mn^aral 

CLmllL^ li'iK'i:^ J ^jllr fwlmL iti|4l[ar bijf>k 11.1/ v^t Lnhlhr ['BU'i] ■hirji'rv 
~— ' dniok llI I'lj III mcj'arEBi^n i.m[L inil 4diiii Frr 4tir'l KjIl uiyI \)it\li. clhithhI ^aafiti 
Tdfit 7 11 df mjliripiifl liLililt'k j J ^piuai: atl f-\t ^aafitk jimI j>14k.iiIl dicB wliilliF wl IL liHhiii ^lilihlliF, ■xn' [Dlfrilrd 

Titit I L li ll>: BJlULficL ikii ll>.'Man<.ii JixJ JiNdli il iIiIj^jIIIIlH 

mV - mllUiil^ 

C- dejif^ LHil l{|Ab 



cm jimI ^LLHHxJ r^ JHHI Kit? 



Pj^l J iM J 



Cmubtt lOH' 



Tabic A-4-2 

RrEDlliJDf DbH»l>cd Milah VhbIjah 

Itatlrr} H ou r/H B[iiEr 

Prcvulio of San Fianctico, C aliCornli 



WdL N^nc 


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DUPl 12801? A 
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DUP0S3CCIIA 


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110 


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17,900 


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37500 


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17 


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244D00 


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90jno 


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210D00 


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13,000 


110 


NA 


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36jno 


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13,000 


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110 


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05/25106 


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46 


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110 


NA 


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75J]00 


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05/25106 


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110 


NA 


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19,600 


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15 


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<2 U 


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241000 


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O3JI&06 


< Ifti UJ 


WA 


NA 


NA 


NA 


NA 


NA 


110 


NA 


NA 


NA 


<100 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


03/l5fCe 


<ioa 


WA 


NA 


NA 


NA 


NA 


NA 


110 


NA 


NA 


NA 


^300 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


CB/IBJCM 


<iin 


WA 


NA 


NA 


NA 


NA 


NA 


110 


NA 


NA 


NA 


<100 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


cii^iajcM 


<ioa 


NA 


NA 


NA 


NA 


NA 


NA 


110 


NA 


NA 


NA 


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NA 


NA 


NA 


NA 


NA 


N^ 


NA 


NA 


NA 


NA 


NA 


12^4/03 


<iin 


NA 


NA 


NA 


NA 


NA 


NA 


120 


NA 


NA 


NA 


<100 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


031? inu 


<iin 


NA 


NA 


NA 


NA 


NA 


NA 


110 


NA 


NA 


NA 


120 


N^ 


NA 


NA 
NA 
NA 
NA 
NA 


NA 
NA 
NA 
NA 
NA 


NA 
NA 


N^ 


NA 


NA 
NA 


NA 


NA 


NA 


OB/IOHJJ 


<L00 


NA 


NA 


NA 


NA 


NA 


NA 


\^t 


NA 


NA 


NA 


<IOJ 


N^ 


NA 


NA 


NA 


N^ 


NA 


NA 


01M?Jll3 


NA 


NA 


NA 


NA 
NA 


NA 
NA 
NA 


NA 
NA 
NA 


NA 
NA 
NA 


NA 


120 


NA 
NA 


NA 
NA 


NA 
NA 


NA 
NA 


NA 
NA 


NA 
NA 
NA 


NA 
NA 


NA 
NA 


NA 
NA 


N^ 
NA 
N^ 


NA 
NA 
NA 


NA 
NA 
NA 


l?APrfl2 


NA 


NA 


NA 


NA 


110 


03/?SnD2 


NA 


NA 


NA 


NA 


NA 


110 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


0&05J02 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


120 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


06fl»j02 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


120 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


ojA&ra 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


110 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


03/06101 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


120 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


OJfl&ffi 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


110 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


iijfsniL 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


140 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


ii^sroL 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


140 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


iijfsnDt 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


110 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


iB/iOtOi 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


110 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


osurwiL 


NA 


NA 


NA 


N^ 


NA 


NA 


NA 


NA 


110 


N^ 


NA 


NA 


N^ 


NA 


NA 


NA 


NA 


N^ 


NA 


NA 


N^ 


NA 


NA 


ffi/ICuUL 


NA 


NA 


NA 


N^ 


NA 


NA 


NA 


NA 


120 


N^ 


NA 


NA 


N^ 


NA 


NA 


NA 


NA 


N^ 


NA 


NA 


N^ 


NA 


NA 


1 IJI9j9B 


^lOO 


<5 


<5 


51 


<i 


<2 


20300 


117 


NA 


<I0 


21 


<100 


<i 


96200 


< LO 


<20 


<5D00 


<5 


<2 


250D00 


<2 


<I0 


21 


0IJI7j9S 


<ioa 


<5 


<5 


56 


<i 


<2 


20,700 


I4A 


NA 


<I0 


<\0 


<100 


<i 


93200 


<L0 


<20 


<5D00 


<5 


<2 


261000 


<2 


<I0 


<20 


0?/1]j9T 


<ioa 


<5 


<5 


50 


<i 


<2 


20,000 


110 


NA 


<I0 


<:o 


<100 


<i 


99jno 


<L0 


<20 


<5D00 


<5 


<2 


240000 


<2 


<I0 


<20 


l?A)2fl6 


<iin 


<5 


<5 


50 


<i 


<2 


20,000 


IID 


NA 


<I0 


<]0 


<iin 


<i 


97 000 


<[0 


^20 


^5000 


LI 


<2 


270000 


<2 


<I0 


<20 


fR/lim, 


<iin 


<5 


<5 


50 


<2 


<05 


20,000 


110 


NA 


<I0 


<i 


^IIC 


< 1 


94IKO 


< LO 


<5 


<5D00 


LB 


<05 


210OCO 
240 OCU 


<2 


< 10 


<20 


fGll^l^ 


<ICfi 


<5 


<5 


50 


<2 


<05 


20,000 
21,100 
24,000 


110 


NA 


<I0 


<i 


<I00 


< L 


93 mi 


< LO 


6 


■iSOOO 


<5 


<05 


<2 


< 10 


20 


01/12196 


<iii) 


<5 


<5 


57 


<2 


<05 
<05 


lib 

IHO 


NA 
NA 


<I0 


<i 


<IDO 


< L 


LOT 1100 
126000 


< LO 


<5 


■iSOOO 


<5 


<05 


27JOOJ 
234 OCO 
2J0O00 


4 


< 10 


<20 


I?/?0j95 


1,700 


<5 


1 


81 


<2 


15 


^ 


5260 


2 


402 


&34 


■;5 00l) 


<5 


<05 


<2 


<I0 


64 


09/?Sj9S 


<2in 


<60 


<5 


14 


<2 


<2 


17,000 


92 


NA 


<20 


■ilO 


■ilGO 


<3 


i^COJ 


<L0 


■;20 


■;5U) 


<5 


<5 


<5 


<I0 


<20 


0J/llfl5 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


l?flBj94 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


150 


161 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


WKtlf^i 


49 


NA 


NA 


NA 


NA 


NA 


NA 


■ IB 


220 


NA 


NA 


100 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


fR/15191 


615 


NA 


NA 


N^ 


NA 


NA 


NA 


144 


NA 


N^ 


NA 


1,920 


N^ 


NA 


NA 


NA 


NA 


N^ 


NA 


NA 


N^ 


NA 


NA 



Fiia and S«ond QuoKeciafl 



Miali 



OclDlffr2007 



Tabic A-4-2 

RrEDlliJDf DbH»l>cd Milah VhbIjah 

Itatlrr} H ou r/H B[iiEr 

Prcvulio of San Fianctico, C aliCornli 



WdL N^nc 


SainpLr DilIe 


E 
< 


---. 

+* 

< 


^ ; 




■a 


1 


u 


E 
E 

6 


Is 


*-* 
n 

6 


1- 

S 


1— 1 


1 

»( 


E 
"Jl 




Z 


1 


c 

= 

^ 

^ 


1- 


■a 


r- 


E 
c 

> 






Mnhid' 


SW6O20 


SW«i20 


SWfiO20 


S^VWJIIV 
SW&QO 


SW6020 


SW6020 


SftfUIOf 
SW6CF20 


SW6O20 


SW7196A. 


SW6020 


SW6020 


Sft60?0 


3^^601 IV 
SW«i20 


SW6O20 


■ SW60IIV 
SW6020 


SWOI20 


SW6020 


SW6010/ 
SW6O20 


S won (II 
SW6O20 


SW60IO/ 
SW6020 


SW601IV 
SW64I20 


EWOILtV 
SW6O20 


SW6OI0/ 
SW6O20 






fPST.) 


<W^) 


l«fl-J 


<iE/L| 


IP^^J 


1«/LJ 


ive/Li 


IPflfl.) 


l-yl-1 


(■pA-I 


<«/L) 


(■Pfl-I 


*we/L) 


fp?^) 


I-E/LJ 


i^^i 


<|.Efl-l 


(■pA-I 


iii^lLi 


l-pfl-1 


(iP^l 


IP^^) 


l.E/L, 


CLcinupl.ETrr 




l> 


10 


1,000 


4 


5 




50 






ijiim 




IS 






1IH> 




5U 


50 




2 




5,000 


DUPMQSOTIA 
DUPJ2IIT062A 


OGAI&IIT 


<ll1i 


<L 


<5 


lb 


<2 


<] 


16,000 


< 10 


NA 


<I0 


<i 


■iim 


<i 


411 lU) 


< LO 


^:o 


<5CU 


<5 


<l 


1200111 


^ L 


< 10 


<20 


OJfl6f07 


<ioa 


22 


<5 


40 


<2 


<1 


17,000 


<I0 


NA 


<I0 


25 


<100 


<3 


46jno 


<10 


<?0 


<500 


<5 


<l 


120000 


< L 


11 


<20 


0006107 


<ioa 


< t 


<5 


41 


<2 


<1 


17,000 


<10 


NA 


<I0 


16 


<1I10 


<3 


47jno 


<L0 


<M 


<500 


<5 


<l 


IIOOOO 


<L 


10 


<20 


llKfUOf, 


<ioa 


<i 


<5 


40 


<2 


<1 


17,000 


<10 


NA 


<I0 


<l 


<I00 


<3 


47J100 


<L0 


^?0 


<500 


<5 


<l 


IIOJUO 1 


<[ 


< 10 


<20 


nfonof, 


<iin 


<l 


<5 


40 


<2 


<] 


17,000 


<10 


NA 


<I0 


<l 


<]00 


<3 


47jno 


< LO 


<M 


<5in 


<5 


<l 


iiojno 1 


< L 


< 10 


<20 


OS/15ni6 


<ioa 


<[ 


<5 


19 


<2 


<1 


13,000 


<10 


NA 


<I0 


<l 


<:vj 


<3 


44J100 


<L0 


^?0 


^500 


<5 


<l 


IJOOOO 


<[ 


<I0 


<20 


ffi/?5jOS 


< l«i UJ 


< t 


<5 


IT 


<2 


<l 


<5VJ U 


< 10 


NA 


<I0 


<l 


<iiin 


<3 


19J100 


< LO 


<20 


<5in 


<5 


<l 


140000 


<L 


<I0 


<20 


OJ/15j06 


<ioa 


WA 


NA 


NA 


NA 


NA 


NA 


<I0 


NA 


NA 


NA 


<1I10 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


(B/isfce 


<iin 


WA 


NA 


NA 


NA 


NA 


NA 


< 10 


NA 


NA 


NA 


<I00 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


03JlgjO1 


<5m 


NA 


NA 


NA 


NA 


NA 


NA 


<50 


NA 


NA 


NA 


<500 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


03/1 MU 


NA 


WA 


NA 


NA 


NA 


NA 


NA 


NA 


< 10 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


I7ffir02 


NA 


WA 


NA 


NA 


NA 


NA 


NA 


NA 


<10 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


08^8/02 


NA 


WA 


NA 


NA 


NA 


NA 


NA 


NA 


< 10 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


OMtaioi 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


<10 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


0^/06/01 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


< 10 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


l1J2SnDI 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


<L0 


NA 


NA 


NA 
NA 
NA 


N^ 


NA 


NA 


NA 


NA 


N^ 
N^ 


NA 
NA 


NA 
NA 


NA 


NA 


NA 


OS/JOjOL 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


< LO 


NA 


NA 


N^ 


NA 


NA 
NA 

< LO 


NA 


NA 


N^ 


NA 


NA 


ffi/llWIL 


NA 


NA 


NA 


NA 


NA 


NA 
<2 


NA 
I7JI00 


NA 


<I0 


NA 


NA 


N\ 


NA 

51 9m) 


NA 
^?0 


NA 
^5000 


<5 


NA 


NA 


N\ 


NA 


NA 
<20 


01/13198 


<IHJ 


<S 


<5 


15 


<4 


16 


NA 


<I0 


<]0 


<100 


<i 


<2 


122 DOO 
I50OGO 


<1 


< 10 


0211 IflT 


<iin 


<5 


<5 


40 


<i 


<2 


21,000 


< 10 


NA 


<I0 


<]0 


<ino 


<3 


56J100 


< LO 


<2a 


<5000 


<5 


<2 


<2 


< 10 


<20 


l2flZj96 


<ioa 


<5 


<5 


40 


<i 


<2 


19,000 


10 


NA 


<I0 


<]0 


<I00 


<3 


54J100 


<L0 


^?0 


^5D00 


9 


<2 


120000 


<2 


< 10 


<20 


OB^Tflfi 


<ioa 


<5 


<5 


40 


<2 


<05 


20,000 


7 


NA 


<I0 


<l 


<I00 


< L 


561100 


< LO 


<5 


<5D00 


S 


<05 


IIOOOO 


<2 


<10 


<20 


ffi/?9fl6 


<iin 


<5 


<5 


10 


<2 


<05 


19,000 


13 


NA 


<I0 


<l 


<]00 


1 


53jno 


<L0 


5 


<5D00 


<5 


<05 


IIOOOO 


<2 


< 10 


<20 


OJ/12fl6 


<iin 


<5 


<5 


40 


<2 


<05 


20,fiOO 


14 


NA 


<I0 


<l 


<]VJ 


1 


5S.300 


< LO 


6 


<5D00 


<5 


<05 


115 000 


<2 


< 10 


<20 


I?^OjW 


<iin 


<5 


<5 


40 


<2 


<05 


13,100 


IS 


NA 


<I0 


3 


<]VJ 


<E 


55J00 


<L0 


<5 


<5D00 


<5 


<05 


125000 


<2 


< 10 


<20 


09^9jW 


<2in 


<X 


<5 


2ft 


<2 


<2 


16,000 


15 


NA 


<20 


<:o 


<:vj 


<3 


5ijno 


< LO 


<M 


<5in 


<5 


<5 


IIOOOO 


<5 


<I0 


<20 


iiopj^a 


leiG 


NA 


NA 


NA 


NA 


NA 


NA 


33 


36 6 


NA 


NA 


205 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


03/75J92 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


EHWGWffi 
DUPije2g02IA 


06A&0T 


<iin 


<[ 


<5 


ft9 


<2 


<1 


71,000 


< 10 


NA 


<I0 


<l 


<1I10 


<i 


74(01 


730 


4? 


1,L00 


<5 


<l 


200D00 


< L 


< 10 


<20 


OJjl*SjllT 


<iii) 


<l 


<5 


92 


<2 


<1 


77,000 


< 10 


NA 


<I0 


<l 


<lllll 


<3 


59cnn 


520 


10 


IfiOO 


<5 


<l 


2ioom 


< L 


< 10 


<20 


l?A)7nJS 


<iii) 


<l 


<5 


TT 


<2 


<1 


65,000 


<I0 


NA 


<I0 


<l 


^ICU 


<3 


50CUII 


350 


26 


HXHJ 


<5 


<l 


J20UJI J 


< L 


< 10 


<20 


OB/ia/06 


<iin 


<l 


<5 


ft5 


<2 


<1 


70,000 


<I0 


NA 


<I0 


<l 


<:vj 


<3 


79jno 


410 


27 


1200 


<5 


<l 


210D00 


< L 


< 10 


<20 


05/25106 


<l«i U] 


<f 


<5 


90 


<2 


<1 


63,000 


<10 


NA 


<I0 


<l 


<]VJ 


<3 


75J100 


560 


11 


1,700 


<5 


<l 


210D00 


<L 


< 10 


<20 


03116/06 


< l«i UJ 


NA 


NA 


NA 


NA 


NA 


NA 


<I0 


NA 


NA 


NA 


<]00 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


03/1 ^jffi 


<ioa 


NA 


NA 


NA 


NA 


NA 


NA 


<I0 


NA 


NA 


NA 


150 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


oj/isnii 


<iin 


NA 


NA 


NA 


NA 


NA 


NA 


< 10 


NA 


NA 


NA 


140 
NA 
NA 
NA 
NA 


NA 


NA 


NA 
NA 
i NA 
NA 
NA 


NA 
NA 


NA 


NA 


NA 


NA 


N^ 


NA 
NA 


NA 

' NA 

NA 

NA 


0J/12jtG 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


<I0 


N^ 


NA 


N^ 


NA 


NA 


N^ 


NA 


NA 


N^ 


I2JIPj02 


NA 


NA 


NA 


NA 


NA 

NA 


NA 
NA 
NA 


NA 
NA 
NA 


NA 


<kO 


N^ 


NA 
NA 
NA 


N^ 
N^ 


NA 
NA 


NA 
NA 
NA 


NA 


N^ 


NA 
NA 


NA 
NA 
NA 


N^ 
N^ 
NA 


NA 
NA 


05/?SnD2 


NA 


NA 


NA 


NA 


NA 


< 10 


N^ 


NA 


N^ 


05/?SnD2 


NA 


NA 


NA 


NA 


NA 


NA 


<10 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


06fl»nD2 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


< 10 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


ojfl&m 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


<10 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


ll^S/Ot 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


< 10 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


OB^O/OI 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


<10 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


ffi/IO/OL 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


< 10 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


0I/I3j9B 


<ioa 


<5 


<5 


47 


<i 


<2 


57,000 


<10 


NA 


<I0 


<:o 


100 


<3 


7IS00 


461 


14 


5020 


<5 


<2 


230J)00 


<2 


<I0 


<20 


07/1 Ij9T 


<i™i 


<5 


<5 


40 


<i 


<2 


57,000 


<I0 


NA 


<I0 


<:o 


<100 


<3 


76noo 


150 


20 


<5000 


S 


<2 


2HD00 


<2 


< 10 


<20 



Fiia and S«ond QuiuIce. 20)7 



P^?2aE3 



OclDlffr2007 



Tabic A-4-2 

RrEDlliJDf DbH»l>cd Milah VhbIjah 

Itatlrr} H ou r/H B[iiEr 

Prcvulio of San Fianctico, C aliCornli 



WdL N^nc 


SampLr UilIe 


E 






1 




1 


u 


E 

6 


Is 


*-* 
n 

6 


3_ 

s 


1— 1 


1 


E 
"Jl 




•z. 


E 


if 


1- 


Tl 


r- 


E 
c 

> 






Mnhid' 


SW6O20 


SWfBlO 


sw6o:u 


SW&QO 


SW6020 


SW«J?II 


SW6Cr20 


SW6O20 


SW7I96A. 


SV'ti.'GO 


5W6020 


SW6070 


SW60I& 
SW6CEZ0 


SW6OJ0 


■ SW60IIV 
SW6U20 


SWOI20 


Sft6020 


SW601U/ 

swano 


SWOIIO/ 
SW6020 


5W60IO/ 
SW6020 


swano 


£A™L(V 
SW6O20 


SW6OI0/ 

SW6020 






fpsl.) 


i^e'Lt 


i«fl-j 


<iE/L| 


IP^^J 


IBP/LJ 


JUP^) 


IPflfl.) 


l-£fl-l 


(■pA-I 


iWf^ILt 


(■Pfl-I 


<iP/L| 


ll.?^) 


I-P/LJ 


it^elLt 


lUPfl.) 


(■pA-I 


ivrilL, 


(■Efl-1 


<iP/L| 


IPfl^) 


l.E/L, 


CLcinup] Vict 




l> 


10 


l,DCi(i 


>■ 


5 




50 






1^00 




15 






100 




50 


50 




2 




5^D0 


EH^VGWlfi 


llil>2-16 


<iin 


<5 


<5 


40 


<i 


<2 


52,000 


< 10 


NA 


<I0 


<I0 


<100 


<3 


6?J)00 


140 


20 


<5000 


12 


<2 


210 ocn 


<2 


<I0 


<20 


atf27f^ 


<ioa 


<5 


<5 


40 


<2 


<05 


53,000 


1 


NA 


<I0 


i 


<100 


<l 


JOflOO 


160 


21 


6000 


21 


<05 


210D00 


<2 


< 10 


<20 


ffi^9j96 


<ioa 


<5 


<5 


40 


<2 


<05 


53,000 


<l 


NA 


<I0 


I 


<100 


< I 


j5jno 


210 


21 


<5D00 


<5 


<05 


250D00 


<2 


<]0 


<20 


03I17J96 


<ioa 


<5 


<5 


52 


<2 


<05 


66,900 


2 


NA 


<I0 


2 


<I00 


1 


74 MO 


eo 


IT 


uirxf 


<5 


<05 


27OD00 


6 


< 10 


<20 


nf2tH9i 


<iin 


<5 


5 


11 


<2 


<05 


50,000 


<5 


NA 


<I0 


4. 


<100 


<l 


J4J00 


130 


2J 


7,710 


<5 


<05 


266000 


<2 


< 10 


2E 


Wf27f9i 


<2m 


<i50 


<5 


IS 


<2 


<2 


15,000 


<]0 


NA 


<20 


<]0 


<100 


<3 


J4JnO 


250 


22 


5J00 


<5 


<5 


22OD00 


<5 


<I0 


<20 


llflPj94 


■ 480 


NA 


NA 


NA 


NA 


NA 


NA 


27 


t6l 


NA 


NA 


?,020 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


03/?5fl2 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


HWGWIOO 


O&flTO? 


<ioa 


<l 


<5 


27 


<2 


<1 


15,000 


|] 


NA 


<I0 


12 


<100 


<3 


170000 


S6 


<20 


1,700 


<5 


<l 


■I4IJIIHI 


< L 


<I0 


<20 


0Jfl&07 


<ioa 


<[ 


5 1 


<I0 


<2 


<1 


16,000 


15 


NA 


<I0 


<l 


<I00 


<3 


^60000 


19 


^20 


1,900 


<5 


<l 


llOUiXi 


<l 


]| 


<20 


n/aitof, 


<ioa 


<l 


57 


12 


<2 


<1 


10,000 


13 


NA 


<I0 


<l 


<100 


<3 


140000 


60 


<20 


1,700 


<5 


<l 


290JnO 1 


<[ 


<]0 


<20 


iBIlitOf, 


<ioa 


<i 


61 


12 


<2 


<1 


24,000 


20 


NA 


<I0 


IS 


<]00 


<3 


3]J»0 


36 


<20 


2000 


<5 


<l 


240000 


< L 


<I0 


<20 


ffi/?5j06 


<]CC L'J 


<l 


7ft 


<I0 


<2 


<1 


<500 U 


24 


NA 


<I0 


14 


<100 


<3 


j^jno 


<10 


<20 


2,900 


<5 


<l 


27OD00 


<L 


< 10 


<20 


0J/]5j« 


<iin 


NA 


NA 


NA 


NA 


NA 


NA 


32 


NA 


NA 


NA 


<I00 


NA 


NA 


NA 


NA 


NA 


N^ 


NA 


NA 


NA 


NA 


NA 


01/] 5ns 


<iin 


NA 


NA 


NA 


NA 


NA 


NA 


33 


NA 


NA 


NA 


<I00 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


ojiisnji 


<ioa 


NA 


NA 


NA 


NA 


NA 


NA 


49 


NA 


NA 


NA 


■ilGO 


NA 


NA 


NA 


NA 


NA 


N^ 


NA 


NA 


NA 


NA 


NA 


06/1 rwjj 


<l(0 


NA 


NA 


NA 


NA 


NA 


NA 


46 


NA 


NA 


NA 


<]Vt 


NA 


NA 


NA 
NA 
NA 
NA 


NA 


NA 


NA 


NA 


NA 


N^ 


NA 


NA 


0J/12jUJ 


NA 


NA 


NA 


NA 


NA 
NA 

NA 


NA 
NA 
NA 


NA 
NA 
NA 


NA ' 50 1 


NA 


NA 
NA 


NA 


NA 


NA 
NA 
NA 


NA 
NA 
NA 


NA 
NA 
NA 


NA 
NA 
NA 


NA 
NA 
NA 


NA 
NA 
NA 


NA 
NA 
N^ 


NA 
NA 
NA 


NA 
NA 
NA 


0*a4flT2 


NA 


NA 


NA 


NA 


NA 


40 


NA 


NA 
NA 


NA 
NA 


ojji&m 


NA 


NA 


NA 


NA 


NA 


50 


NA 


NA 


05/10/01 


XA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


<I0 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


07^5nx 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


40 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


Hwawioi 


O&U&OT 


<ioa 


<l 


<5 


<I0 


<2 


<1 


17,000 


20 


NA 


<I0 


<l 


<I00 


<3 


23 000 


<[0 


^20 


660 


<5 


<l 


200000 


< [ 


<I0 


<20 


OJA&UT 


<iin 


<l 


<5 


<I0 


<2 


<] 


11,000 


2] 


NA 


<I0 


<l 


<I00 


<3 


?sjno 


< LO 


<20 


810 


<5 


<l 


210000 


<L 


11 


<20 


iiianof, 


<ioa 


<[ 


<5 


<I0 


<2 


<1 


17,000 


15 


NA 


<I0 


<l 


<100 


<3 


isaxf 


<[0 


<20 


7ftO 


<5 


<l 


2iojno 1 


<l 


< 10 


<20 


03/15/06 


<ioa 


<l 


<5 


<I0 


<2 


<1 


15,000 


17 


NA 


<I0 


<l 


<100 


<3 


25 IXC 


< LO 


<20 


900 


<5 


<l 


210000 


<l 


<]0 


<20 


05,125/06 


<ICC U] 


<l 


<5 


<I0 


<2 


<1 


<5VJ U 


23 


NA 


<I0 


<l 


<]|]0 


<3 


?6jno 


<[0 


<20 


■ 600 


<5 


<l 


260000 


< L 


< 10 


<20 


03/1^/06 


<iin 


NA 


NA 


NA 


NA 


NA 


NA 


22 


NA 


NA 


NA 


<I00 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


03/15/05 


<ioa 


NA 


NA 


NA 


NA 


NA 


NA 


27 


NA 


NA 


NA 


<I00 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


oj/ism4 


<mi 


NA 


NA 


N^ 


NA 


NA 


NA 


35 


NA 


N^ 


NA 


■;]HI 


N^ 


NA 


NA 


NA 


NA 


N^ 


NA 


NA 


N^ 


NA 


NA 


03/?injj 


<iiij 


NA 


NA 


N^ 


NA 


NA 


NA 


35 


NA 


N^ 


NA 


130 


N^ 


NA 


NA 


NA 


NA 


N^ 


NA 


NA 


N^ 


NA 


NA 


06/1 0/OJ 


<iin 


NA 


NA 


NA 


NA 


NA 


NA 


35 


NA 


NA 


NA 


<100 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


03/1 MU 


\A 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


50 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


0B^9/02 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


40 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


06/auoi 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


50 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


OJfll6/02 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


NA 


110 


NA 
N^ 


NA 
NA 


NA 
NA 


NA 


NA 


NA 
NA 
NA 
NA 


NA 
NA 


NA 


NA 


NA 


NA 


N^ 


NA 
NA 


NA 

' NA 

NA 

NA 


ii/2sn]i 


NA 


NA 


NA 


N^ 


NA 


NA 


NA 


NA 


10 


N^ 


NA 


NA 


N^ 


NA 


NA 
NA 
NA 


N^ 


03/ionj[ 


NA 


NA 


NA 


N^ 
NA 
NA 


NA 

NA 
NA 


NA 
NA 
NA 


NA 
NA 
NA 


NA 

NA 


20 


N^ 


NA 


NA 
NA 
NA 


N^ 
N^ 


NA 
NA 


NA 
NA 
NA 


NA 


N^ 


NA 
NA 


N^ 
NA 


NA 
VA 


05/1 on) 1 


NA 


NA 


NA 


20 


N^ 


NA 


N^ 


Ol/iStOD 


NA 


NA 


NA 


NA 


40 


NA 


NA 


NA 


NA 


NA 


N^ 


NA 


NA 


NA 


1 NA 



I - Tlie idcDl iC]i:i] !ii] jL^huL no hnH'v? di? In iiBiily'iL-' pcifimnixl hc" luuiif ]■ Llii: ^ccjiid Qu jK? r 2001 Th? jbiiI^I icdl ma liuls is::!] d iinng pl?vuLl^ qbnrrk ^iic idcnLjlJ«l id I lie iL-'ir^ii-c qimH criy rcpjn^ 

2- CLejn u p kicLs [iilicn Emm TjHl' 7-fi Ln ( In: D^slifi*ni"i' i/^ Ffitiifip-wii^ CieuiBi^i it\'r Is Jif Siil, SeJiinsn'. Gi-ffnlvMitcr, isiTifSuifucr lluJrr 'E K[, 2002 , Tsiblc 7-fi Gcvt-rd Wiiv2l06). 

Pf/L- DiiciiignDL' per IiLl'c 

NA - ni4 ^iDjIv/al 

ND- nudacaal 

C L Halfix dcni^L-^ d qimliy {onlml d D[ilii:3 c !imipt '^!bv s^V lo lln: {onlml l!ibcinor> Tabr?T in I be main ic[U[l KlcDliri::^ !ill d Dpliiiilc !ihI ^i ^ionpt'v hhI JiccEle rlieiii 0^1 b Ike hicll fnwi wh k h I bey i«'?k coMmol. 

Gmu ndivUrr ^iinplrs oiLleUrd Eiuin jII iiUe miDUmiDS f It '^eie Cirld lilleiol Jhl diiu]> zed lordEbjIved nOuli Table 1 1 iBlkeniiii irjun ideH ifiSk cineH and lunurhal 4ldla 4|d jliliea 



Fiia and S«ond QuiWeE. 20)7 



Pi«eluE3 



OclDlffr2007 



Tabic A-4-3 

KbIIti} H flnc/ Warner 

Prcfi[c6D of S ail FrarK;LM7i> Ciilili>m[» 



W«ll r^DDK 


SanpL<DDW 






Voblili' Ojl^nk C< 


D oipciu nili 4 VO Ca> 




Ijl-DCE 


B«BI«Bf 


CnrhoB 
T<lni[ blarJilf 


CblDinfacn 


MTBE 


TcllKIIE 


AllOrbir 




Aaalriicjl 
MclliHl' 




s^ir3bD 
M 




S*Hl6aB/ 
IA'II3fh1hM 


SWII31h1hB.' 
SWB2QDM 


IA'H3baB/ 
S^B360M 


i'AM3frfhB' 






iNfrT-) 


<HfiT-) i 


lliF/LI 


rnpL, 


(|.5/L> 


IH^LI 


II.F/LI 


ClruBur 1 


.1 


D.lh 


1 


- 


BD 


13 


L5C 


- 


DUrtHLICUIA 

DURHa6a2JA 
BHftCWOlCL 

DUI"ILlHai?A 
BHftCWOlCL 

DUPOB300IIA 

1 


4H1)0T)3 


<i) ^ 


<as 


L 


WT 


<05 


^ D5 


Ml 


031 IQW 


<0.i 


<as 


i L 


OT 


<DJ 


^05 


r^D 


03II5TJS 


<0i 


<as 


1 1 


OT 


<i)J 


^05 


ND 


aj'ld/lkl 


<(l.i 


<as 


IJ 


09 


<05 


^ D5 


NO 


a]>]B4l 


<0i 


<as 


]J 


09 


<i)J 


^ D5 


ND 


HlWUti 


<(l.i 


<I\S 


IJ 


OB 


<i)5 


^ D5 


ND 


UBIl \'0i 


<0.i 


<as 


1 


OT 


<i)i 


^ D5 


ND 


ab/iaivi 


<(l.i 


<I\S 


22 


OB 


<i)J 


^05 


ND 


ai'iiivi 


<0i 


<as 


1.3 


105 


<i) 1 


^ |l ' 


ND 


IDOii'Dl 


<0i 


<as 


] 1 


07 


<D5 LI 


^ !■ ■. 


ND 


OBTJE'D? 


<(li 


<I\S 


1 1 


OT 


<i)J 


^05 


ND 


o&iDsm 


<0.i 


<as 


14 


OT 


<QJ 


^05 


ND 


Wi^ssai 


<0i 


<as 


14 


OT 


<QJ 


^ D5 


ND 


03n)QTt3 
03n)QT)3 


<0.i 


<as 


D.Q 


09 


<i)i 


^ D5 


ND 


<0.i 


<as 


D£ 


OB 


<i)i 


< D5 


ND 


03flQTt? 


<(l.i 


<as 


IQ 


< I 


^ S 


^ D5 


ND 


IL<?B^I 


<0.i 


<as 


1 1 


OB 


<QJ 


^ D5 


ND 


IL>?B^I 


<0i 


<as 


IJ 


OT 


<i)5 


< D5 


ND 


IL/?S^I 


<0.i 


<as 


1 1 


< 1 


< i 


<D5 


ND 




<0i 


<as 


14 


09 


<i)i 


^ D5 


ND 


<0i 


<as 


1 3 


09 


<i)5 


^ D5 


ND 


Oil\0'0l 


<0.i 


<as 


14 


L 


<QJ 


^ D5 


ND 


ILIIQ^QH 


<0i 


<as 


1 1 


Q.JJ 


NA 


^ D5 


ND 


Obll?l9H 


<0.i 


<as 


IJ 


Q.JJ 


NA 


^ D5 


ND 


Olfl IfflJ 


<0i 


<as 


1 1 


OT 


HA 


^ D5 


ND 


IlKi?^ 


<0i 


<as 


1 2 


OT 


HA 


^ D5 


ND 


OBrZ7n6 


<0.i 


<as 


DB 


OQ 


HA 


3B 


ND 


05j?E'96 


<0i 


<as 


1 1 


09 


HA 


^05 


ND 


0311?^ 


<0.i 


<as 


DB 


05 


HA 


^ D5 


ND 


ll/IOfflS 


<0i 


<a 5 


DQ 


<*t5 


HA 


^ D5 


ND 


nrii ii?s 


<0i 


<as 


1 1 


<05 


HA 


^05 


ND 


NA 


NA 


XA 


0^ 


HA 


XA 


ND 


ILKiSfflJ 


NA 


NA 


XA 


WA 


HA 


XA 


NA 


IL1)Tn^ 


NA 


NA 


XA 


XA 


HA 


VA 


NA 


4BI'25^3 


NA 


NA 


CB7 


XA 


HA 


yA 


NA 


BfCAGftCiJ 
DUPUJOMTJA 


U31)QTtJ 


<0.i 


<as 


<DS 


<*t5 


<DJ 


^05 


ND 


03flQTJJ 


<0.i 


<as 


<D5 


<*t5 


<DJ 


^05 


ND 


03115™ 


<0i 


<as 


<D5 


<*t5 


<05 


^ D5 


ND 


03II5TJS 


<0.i 


<as 


<DS 


<*t5 


<i)J 


^ D5 


ND 


03IIB^IU 


<(l.i 


<I\S 


<05 


<*t5 


<QJ 


^05 


ND 


03II?T)J 


<0.i 


<as 


<DS 


<*t5 


<QJ 


^ D5 


ND 


ILKi5Tt3 


<(l.i 


<I\S 


<05 


<*t5 


<i)J 


^ D5 


ND 


0S>?B^3 


<0i 


<as 


<05 


<*t5 


<05 


^ D5 


ND 


Ot 1041)3 


<0i 


<as 


<05 


<*t5 


<05 


<05 


ND 


W31)0T)3 


<0i 


<as 


<D5 


<V5 


<05 


< D5 


ND 


IL/?S^I 


<i) 4 


<as 


<DS 


<V5 


11)5 


< D5 


ND 


vt'iosai 


<(l.i 


<I\S 


<05 


^05 


<i)J 


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ND 



Fial J ml IccuhL l>B nc B TOOT 



PaHi^ ■ i*''^ 



OaObuwiaOl 



Tabic A-4-3 

KbIIti} H flnc/ Warner 

Prcfi[c6D of S ail FrarK;LM7i> Ciilili>m[» 



Y!tU »DDi< 


SamtfitDalt 






Voblili' Ojl^nk C< 


D oipciu nili 4 VO Ca> 




Ijl-DCE 


B«BI«Bf 


CnrhoB 
T<lni[ blarJilf 


CblDinfacn 


MTBE 


TcllKIIE 


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^■alriicjL 
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lA'HZMB/ 


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iAMJfrfhB' 






lNfrT-> 


ipi/L, 


lliF/LI 


Thi^li 


(|.9/L> 


IHB'I-I 


II.F/LI 


CIruBup L<v«r 1 


D.O 


1 


- 


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13 


LSC 


- 


BILAGV^a-L 


1h5^ 1(1^1 


<0i 


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<i)S 


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niiij^^ 


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ND 


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NA 


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ND 


rnQsmi 


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<i)S 


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m-issDi 


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ND 


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<0i 


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ND 


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ND 


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<i)J 


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0913(1^1 


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<*t5 


<i)i 


^ OS 


ND 


0511(1^1 


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ND 


OLII3^9H 


N4 


NA 


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NA 


XA 


NA 




<0i 


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<*t5 


NA 


^ OS 


ND 


<0.i 


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<*t5 


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ND 


0E1?T^ 


<0i 


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<05 


NA 


^ OS 


ND 


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<*t5 


NA 


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ND 


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<*t5 


NA 


^ OS 


ND 




<0.i 


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NA 


^ OS 


ND 


<0.i 


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<05 


NA 


^ OS 


ND 


NA 


NA 


PA 


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NA 


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NA 


1ffl'25W3 


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NA 


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NA 


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N\ 


HAG* laa 


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ND 


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ND 


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Fial J ml IccuhL l>B nc B 7007 



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OaObuwiaOl 



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KbIIti} H flnc/ Warner 

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YItU »aint 


SanpL<DDW 






Voblili' Ojl^nk C< 


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Ijl-DCE 


B«BI«Bf 


CnrhoB 
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CblDinfacn 


MTBE 


TcllKIIE 


AllOrbir 




^■alriicjL 
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1 


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L5II 


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HWG* LQL 


tnobmi 


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^05 


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UIID^I 


<(l.i 


<I\S 


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105 


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01125/00 


<.s 


<.s 


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< 1 


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L - Tbc nkilLllccI jHiljLn jl m[Lbhd(i| iiz Rir jnjI^Ki pcrhiBcd bcglaniBp iBtk SccdhI f^Lii rLri 7I>0 I Tk jBjl]l>;al mcLbHJt uicd ikiiin^ 

piEikiut ^LLj:4<n J IE ulcnLifKd \m Lkc lEipccLjhc qiundl] npDili 

Z - Clcjnuji l[i(li Ljk(D liDiD Tjbic 74 la I be 'lr\I^lI^/^l"r^'l iif P reiiJro- -/iJr Cte/nnp l^trtsjo' Sail, Sniiinnr', ^!'llll1ti<vllle^ , iril Scijtice 

V^u\r' |EKr,2W]l.rAbk 7-b R«.vnal FfI ly ZQQbl 

(if/L - ■ i[ mf m nit pre lice 

N ^ - Diia anjl^icd 

ND- HH4kl<ll[ll 

VO C - I \!bl l1[ 1 ffj DIE <DB pmiHl 

L.l-DCE- l,]-il.i.}ilih:<h[lk'i][ 

MTBE- ■<■ bL] L[ n-hiK] I <■ Ik c 

CL iuIFla d(»nL[t i qujIiL t-hiinil diiplLcn^c h.jmpk v Ji ncV 4i 4b( [onlPhl blKialirr 

CmuiulivjK c h.j m pki ii^lktlcJ Imm jLI tic muDlunnj; ^cllt i/iitz l>;IJ Ijicml jnil jbjIjiciI Fc r diikDlvcd mdjt 

Tjhir 7 m Lhc mjui ccpoil id(iujl>;] j|] ihipLitJic anil tplU h.jmpl:i anil juikbIc ibcm Lvlktk ivrl Fna ivfaih ihc] \-ciu CDlkilcd 

Tjhk I ] LD ih[ main npon ulcnLlikn LLurcnl jnil hiV'irKjl ilaLa qLulilicn 



Fial J ml IccuhL l>B nc B 7007 



Fa^L iDf] 



0[a]bi.rim7 



Tabic \-4-4 
CnuDdHalcr t^hvallon Suoimjirf 

Prrsidia af Sin Fiincisco , C ijilaini b 



VVrllll) 


]?^lL 


Avrrajv Drplbilo 
Wairr ' 


Top of Cating 

Elrvalinu 
IfcflPLLW) 


G TDU ud water 

Elc*alLDn 
jrfrlFLLSVl 


Well Tjpf 


BHwawoi 


O&tWOT 


30.75 


178 04 


157 29 


MW 


n2/?f.'fi7 


IS 75 


I7K 04 


159 26 


M^ 


L:AI4/II£i 


:o 55 


I7K 04 


157 49 


Nm 


03J 14/06 


19 90 


178 04 


153 14. 


Mft 


05n2IOf, 


Hit 


178 04 


160 65 


Hft 


0JJO6/06 


15 19 


178 04 


162 S5 


MW 


L1/2M6 


:i 69 


178 04 


I5f.35 


M^ 


fi&/?y/l6 


:o40 


178 04 


157 64 


^^^^ 


05J?1/(B 


Ui2 


178 04 


160 72 


MW 


CU/I4/(B 


16 IS 


178 04 


161 S6 


MW 


t?/ll/Oi 


?0 65 


I7S04 


157 39 


MW 


faitfilOi 


22 13 


178 04 


155 S6 


MW 


CB^4/0± 


20 91 


178 04 


157 13 


MW 


03/CB/CU 


17 [5 


178 04 


160 S9 


MW 


17/oi/m 


23 10 


178 04 


154 94. 


MW 


03JI llOi 


21 46 


178 04 


156 58 


MW 


0&02™ 


19 39 


178 04 


155 65 


MW 


OJ/HVM 


1906 


178 04 


155 98 


MW 


13/02/02 


22 90 


178 04 


155 14 


MW 


CB^6/02 


21 85 


178 04 


156 19 


MW 


osnsiiti 


19 95 


178 04 


155 09 


Hft 


0JAI4/IG 


17 71 


178 04 


160 33 


Nm 


L1/26/IIL 


22 75 


I7K 04 


155 29 


^i^^ 


05/2 7/0 L 


23 15 


178 04 


154 S9 


MW 


OiAIH/OL 


20 6? 


I7K '14 


I.'t7 41 


M^ 


BHWGW04 


06jn4/ll7 


13 25 


.'i~ " ^ 


I!I4 45 


^■■h^ 


02/26/117 


12™ 


I'l; 7i 


n'-ii 


MW 


L?rtl4/Ce 


1421 


197 73 


I!I3 52 


Nm 


05/I4/C6 


13 69 


197 71 


IH4 04 


MW 


05/22/06 


10 99 


197 71 


Ift6 71 


MW 


OJfl36/06 


12 S3 


197 71 


184 S5 


MW 


ll^ft/05 


14 L4 


197 71 


lftJ59 


MW 


CB^9/05 


23 37 


197 71 


174 36 


MW 


CB^J/05 


13 54 


197 71 


114 19 


MW 


03/14/05 


13 64 


197 71 


\S^rfl 


MW 


[?/]l/01 


14 97 


197 71 


112 76 


MW 


08/09/04 


16 04 


197 71 


Iftl 69 


MW 


CBJ^4/0i 


15 77 


197 71 


Ifti 96 


HW 


03/CB/04 


15.45 


197 71 


182 28 


MW 


17/01^ 


ISJ7S 


197 71 


179 65 


MW 


OS/II/OJ 


15 72 


197 71 


182 01 


MW 


06JD2/0J 


15 57 


197 73 


IH2 16 


MW 


05/IO/OJ 


1630 


197 73 


l!ll 41 


Nm 


L7J1D2/02 


IS L4 


197 71 


179 59 


MW 


03^6/02 


16 35 


197 71 


181 38 


MW 


05/2ft/02 


14 15 


197 71 


I8J58 


MW 


01/04/02 


12 55 


197 71 


185 18 


MW 


11/26/OL 


1731 


197 71 


180 40 


MW 


05^ 7/0 L 


16 95 


^■jT t: 


IHIJ7SI 


MW 


O'iJilH/IIL 


14 43 


. '1 ~ ~ ^ 


l!li ?<l 


Nm 



FiDl and Snoiil Qiail?is2007 



Pagr I ar4 



O[li*fr2007 



Tabic \-4-4 
GrDUDdHalcr t]lcvallDn SuDimar^ 

Prrsidia af Sin Fiinc lsco , C ijilaini b 



VVrlllD 


DaU' 


Avrraj^ Drplbilo 
Wairr ' 

IFfrll 


Top of Cating 
Elrvalinii 

ifwiPLLW) 


G TDU ud Hulcr 

EkyalLon 
irfflPLLSVl 


Well Typf 


BHWGWffi 


06/04/OT 


2S t2 


202 95 


174 33 


MW 


0:/2MlT 


23 45 


2IJ2 95 


174 47 


M^ 


L?T)4/r6 


2Si5 


202 95 


174 60 


Nm 


OS/ 14/06 


27 69 


202 95 


175 26 


MW 


05n2IOf, 


27 85 


202 95 


175 10 


Mft 


0JJO6/06 


27 S3 


202 95 


175 37 


MW 


LI/2H/I6 


23 J5 


202 95 


174 6^1 


Nm 


0&/?y/ll5 


23 01 


202 95 


174 94 


M^ 


osmioi 


26 S3 


202 95 


176 37 


HW 


OJ/I4/0S 


27 06 


202 95 


175 39 


HW 


t?/ll/Oi 


23 05 


202 95 


174 90 


MW 


ca/09/01 


29 i5 


202 95 


17160 


MW 


CB^4/0± 


2911 


202 95 


1716* 


MW 


03/CB/OJ 


23 46 


202 95 


174 49 


MW 


17/OI/OJ 


29 66 


202 95 


171 29 


MW 


03/1 llOi 


29 19 


202 95 


171 76 


MW 


06/02/OJ 


29 E3 


202 95 


171 77 


MW 


OJ/IO/OJ 


29 J9 


202 95 


171 56 


MW 


13/02/02 


10 ri 


202 95 


172 32 


MW 


0B^6f02 


29 25 


202 95 


171 70 


MW 


osnsioi 


23 10 


202 95 


174 35 


Hft 


0JJII4/IG 


27.1? 


202 95 


175 62 


Nm 


LI/26/IIL 


10 LI 


202 95 


172 34 


^i^^ 


05/2 7/0 L 


29 S6 


202 95 


171 39 


MW 


OiAIH/OL 


23 :r^ 


202 95 


l"'4 75 


M^ 


HWa Willi 


OMI4/II7 


27 'I-; 


21'" .5 


I!I2 61 


^■■h^ 


02/26/07 


2? LI 


21" 03 


I!I2 57 


M^V 


I?rtl4/0S 


27.10 


209 65 


IH2 3K 


M^ 


05/I6/C6 


23 L5 


209 63 


156 53 


MW 


05/22/06 


19 71 


209 63 


159 97 


MW 


OJfl36/06 


22 ei 


209 63 


156 35 


MW 


ll^8AB 


27 92 


209 63 


151 76 


MW 


CBJ39/0S 


24 24 


209 63 


155 41. 


MW 


CB^J/05 


20 75 


209 63 


153 93 


MW 


03/14/05 


23 63 


209 63 


156 CO 


MW 


[?/]l/01 


29 61 


209 63 


150 05 


MW 


08/09/04 


23 [5 


209 63 


151 53 


MW 


CBJ34/0i 


26 37 


209 63 


I5J3E 


HW 


03/CB/04 


25 90 


209 63 


I5J7S 


MW 


17/0 l/OJ 


D:y 


209 63 


173 68^ 


MW 


03/1 llOi 


23 LI 


209 63 


151 55 


MW 


0a02/0J 


27 32 


209 63 


152 36 


MW 


03/iora 


26 73 


209 63 


152 90 


MW 


12/02/02 


Dry 


209 63 


I73 6S' 


MW 


oanb/oi 


23 i9 


209 63 


151 49 


MW 


1 CBJ38/02 


26 00 


209 63 


I5J6* 


MW 


01/04/02 


26 40 


209 63 


153 28 


NfW 


LJ/26/0L 


Dry 


209 65 


I75 6S' 


H^^ 


03^7/01 


Diy 


209 63 


I73 6S' 


MW 


O'^^IH/OL 


23 HI 


209 65 


IHIJ37 


Nf^V 



FiS and Snoiil Qiail?is2007 



Paec2ar4 



Odobf 7 2007 



Tabic \-4-4 
GrDundHalcr t]lcvallDn SuDimar^ 

Ballrr^ HoivcA\^nf r 
Prrsidia af Sin Fiincisco , C ijilaini b 



VVrlllD 


DaU: 


Avrragr Drplbilo 
Wairr ' 


Top of Cating 
Elrvalinii 

ifwiPLLW) 


G TDU ud Hulcr 

EkyallDn 
irffl PLLWl 


Well Typf 


HWGWLOI 


06/04/OT 


?6 46 


21424 


117 78 


MW 


0:/2MlT 


?ft TO 


21424 


IH7 54 


M^ 


L?T)4/r6 


?7gfp 


21424 


IH6 38 


Nm 


OS/ 14/06 


25 SO 


214J24 


IBS 74 


Mft 


05n2IOf, 


22 52 


214.24 


I9J 72 


H» 


0JJO6/06 


24 40 


21424 


ia9g4 


MW 


Ll/2H/li:i 


23 J4 


21424 


IH5 9fl 


M^ 


0&/?y/ll5 


26 22 


21424 


IH&II2 


M^ 


osmioi 


23 4J 


21i24 


190 S[ 


HW 


OJ/I4/0S 


25 22 


214.24 


ia9 02 


HW 


t?/ll/Oi 


2952 


21i24 


ia4 72 


MW 


, CB/09/01 


2S 31 


21424 


ia5 93 


MW 


CB^^4/0± 


26 Tl 


21424 


ia7 53 


MW 


03/CB/OJ 


26 31 


214.24 


ia7 9[ 


MW 


17/OI/OJ 


29^5 


214.24 


ia4 39 


MW 


OS/II/OJ 


27 31 


214.24 


IH69[ 


MW 


06/02/OJ 


25 TS 


214.24 


18S46 


MW 


OJ/IO/OJ 


26 es 


21424 


117 36 


MW 


13/02/02 


29 80 


21424 


IH4 44 


MW 


CB^6/02 


2S 10 


21424 


116 14 


MW 


osnsioi 


26 05 


214.24 


lis 19 


Hft 


0JJII4/IG 


26 41) 


21424 


IH7S4 


Nm 


L1/26/IIL 


30 22 


21424 


IH4II2 


^i^^ 


05/2 7/0 L 


29 09 


21424 


115 15 


MW 


OiAIH/OL 


27 31 


21424 


11691 


MW 


HWGWL02 


06jn4/IIT 


Dry 


21L44 


174 44' 


MW 


02/26/OT 


Dry 


21L44 


174 44' 


Nm 


l?rtl4/06 


Diy 


21L44 


174 44' 


MW 


OS/ 14/06 


Diy 


21L44 


17444' 


MW 


05/22/06 


Dry 


2] t 44 


17444' 


MW 


0JJO6/06 


Dry 


21L44 


17444' 


MW 


L1/2H/0S 


Dry 


21 [44 


17444' 


Mft 


05^y/l6 


Dry 


21L44 


17444' 


M^^ 


05^1/05 


Dry 


21 [44 


17444' 


MW 


01/14/05 


Dry 


21144 


17444' 


MW 


L?/ll/01 


Dry 


21144 


17444' 


MW 


0Sjn9/O4 


Dry 


21 [44 


17444' 


MW 


05J34/01 


Diy 


21144 


17444' 


MW 


OJjOft/01 


Diy 


2] 144 


17444' 


MW 


L2rti|/0J 


Dry 


2] 144 


17444' 


M» 


OS/II/OJ 


Dry 


21 [44 


17444' 


MW 


06AI2/0J 


Dry 


21144 


17444' 


MW 


OJ/IO/ID 


Diy 


23 144 


17444' 


Hft 


r?A)2/02 


Diy 


2M44 


17444' 


MW 


OS/26/02 


Diy 


21144 


17444' 


MW 


CBJ38/02 


Diy 


21144 


174.44' 


MW 



FiS and Snoiil Qiai1?is2007 



Paer:3ar4 



Odobf 7 2007 



Tabic \-4-4 
CnuDdHalcr t^hvallon SuDimar^ 

Prrsidia af Sin Fiinc lsco , C ijilaini b 



VVrlllD 


DulL 


Avrragr DrplFilo 
Wairr ' 


Top ol Cai^m^ 
FIrvaliitii 

IfwlPLLW) 


EkyallDn 
jrffi PLLWJ 


Well Typf 


HWGWIU2 


01/04/02 


Diy 


21L44 


174 41^ 


MW 


I1J?6/0I 


Dry 


21 [44 


1T4 44" 


MW 


03^7/01 


Dry 


21L44 


LT4 44' 


MW 


C6/0ft/0l 


nry 


21L44 


174 44' 


^+^^ 



1 - All d £[■ k Id '^!Dcr HiriEiir m? nca !iir ai avcjagr of I kir? ncubiarrnrila :rcDnlal nikc CicUl 

2 - Elc-uiLiii iDd icjc' lx:<lan dF cibiiDf rle-nriii 
MW- MoniurinE Well 

tta PLLW - Cei:i alio- c Piciud n Loucr Low Wacr vcH ical da u n 



Fits and Snoiil Qiail?is2007 



Page Jar4 



Odobf 7 2007 




LEGEND 



Appniii inifllc Uiitcliun 

afGrtiUTidvHjlLT Hnv. \ HWGW1D1 TrrtiUTidvHLiln- Mimilnriii!' U'dL 

167 54 htbni jr>' ?00 V 1 JTu [Did^Lilcr FLcVflhon 
Grnujid *aLiJ CJiinlii lit 

{Ciijnuiir [jiLj-,'liL i r\| 174 44" Value [ndic^K UuHDniaf 

Casing lili:viiliiiTi m fed PLL*^ 
I DpagTjphic Conlii ur 

iCanlDiir bln^'iiL 10 fll M213GW1CH AdiJicail Sludy Aim WcU 

1 97 2D F'cbniiirj 21fl) 7 lira undwiilcr ELcValUiii 



>li' & LiJ Id lug Jiud Number 



GiciuL^'dhi dH:v£libii hIbS colltclrit 
on 26 h:biiiM> 2007 

HojizciHal Dflliini NAD27,CASBV 

Voli^l EUHinii 1f]CPitiiiwfilLj| Pns\dKi 
Lh>ivh:iLh>iv WaH]{ft.PLL\VJ 
lEiwEiBph^) Nftilh AimjuBn Von<a I 
DaHuiiNAVDEa 



BATTERY HOWE/WAGNER 

SITE PLAN AND 26 FEBRUARY 2007 

GROUNDWATER ELEVATION MAP 

T^^adwell&RoiJo 




PresLdLO Trust 

P.O. 6n ^W? 

OiMM-HO' 

FIGURE A-4-1 




LEGEND 



AppriHiinfllc Uiiccliun 
D rOruujid^ jli:r Hiiw 

Grnujid *liLij CJiinlii lit 
{Ciijnuiir [jiLj-,'liL i R) 

TDpagrjphic Conlii lit 
iCanliiiir blfl-,'iiL EO HI 

& LiJ Id lU]; Jiiid Number 



\ l-WGWIOl 1>iiiiiiclv.dlcr MumlLuini! ^cll 
1&7 78 fane 2<Hl ' Gni inid^alcr lili:yiilinn 

174 44" VjLuc IndicJilK UuHuintif 

Cjiing l:Lc\3liuii in feci E* LL"^' 

MaiiQWlDI AdliKHllSludyArtiWcLL 

19353 Jiiiic;(lll7GiuLnid*jilCTblc™LiiiTi 



NM 



Nal McoMircd 



Gibimdii'dU] dfvaiDn 4lB collccCit 
on A June 2007- 

HoiuciHfll Dflliini NAD 27, CA SBV 

VljIKSI DaHULQ ^OIt1ldWfilLj| PKi\dKl 

<H'pJEraph>) Nftilh AimTnan Vali<a I 
DaHuiiNAVIMa 



BATTERY HOWE/WAGNER 

SITE PLAN AND 4 JUNE 2007 

GROUNDWATER ELEVATION MAP 

T^^advvell&Roiio 




PresLdLO Trust 

P.O. 6n ^W? 

OiMM-SXl' 

FIGURE A-4-2 



rirst Quarter 2007 



MONiTOR/NG WELL SAMPLfNG LOG (Normal, Low Flow, and Low Yield) 






8..HV 



ifr^y 



^ 



M. 



SamcJsd by 



Wei! Wo. 
Well Tyos 



jm. 






WliLL PURGING 



jPUHGF VPLUMJ" 



PURGF UlETHOD 



Wei u^rrg mainolqE 

Q 3-Vich □ Jrmdi QoinBr 

WWI TD?ai DapUi {TC, rt, bflloiw TOC) : ^^^H 
Deptlira Wdipr {ivL.it beiDwTOC}: 7'^''*u 

0»ptli [B bee piiBse (FP, fl, bclow TOC) j 
riurCar a' tmraho'e valUnH m ba pmnHl 



Liquid Inir Po^r SviiQiu> nf ^ Bniuig {jjlfgn?! 



gi^ 



PURGE VOLUME CflLCULAfiDN 



TaW Purga TTitib V^ ^--< — 




[jf^fntll 



[]esirBr\T,Dir 

Sihrr _ 



"Vr.tJ^ 



pump iNTnartE 



lEBrBniQiTi 
caw 






i^' 



tVala-Varrjitiult 



gji^ 



Purge flain ^fJjy ^tfl^ 



g^LQ\JlAJED PURGE ^DLUWE 



ACTJALPURGc VOLUME 




WELL SA;ij1FL?Ha 



\ BflHPUMS METHOO 



DalpJThiH SairplEd 



EflLlipBIHtll 

Sampla FIIIei?!^ 



r'No FillarBi] Sairpta AnalfBia: 



-TVna 



CDia- 



EAMPUHG PROGRAU 



SmiobNa. 


Cuililipr lfVa\ume 


JjbrralQrv 1 


coca 


CotnrMPti 


1 


HwtrWLOu 


"i itLiO i^V. MH.J 


_- _^'^ 


iny 




1 




l^n+6 |*.fl^y^ 


/vr 






' 


i^yVt aV 1 ^ ' 1 








1 1 







OUALITT COrJTRUL SAAlPLES 





OMIdMB Slmdn 


Grandl 3amD<t Ho. 


1 Dv^caLa ^amala Nd. 


1 


-__^ ... _ . .. _.... 



^bcik ?2iiiDlei 






_T^^ 



rnu 



RdrmlG 



larafar 



IShBT 



^dlLlull' ^H- 



MONJTOniNG WELL SAMPLING LOG {Nomal, Low Flow, and Low Yield) 



RscotdBd 5y 



ejv, 



t^z 



SiirnrJ^iJ bv 



Wed No. 
W9ir Type 



HWL-^ \oi 



0Mur*ir [JexfjacUon []ou,. 



Date J?/_i/o^ 



Wr±L PURGING 



[PjJflGF VOlUJWE 



^(^ S-liKfi Q J-mi:fi Qoilrer 

Wen TotaJ CepDi [TD, rt. \a\aa TOCJ : 1 f*^ "" 

□epTlilaWattrOVL,(l.beroWTO[:): ^t t' 
□aprri to fias plia£e (FP, ft. belQw TOC) : 

^Untara; Bnrellorf vartmBS m iia puroflif 



LIquii] fn a f ^QoE QfEEfDii a1 i Qujing IgiillDnB^ 



a E 

ID 4 



JJ3 



_LIJf^CE METHOD 






Da 




PUWP rH7;iHE 






JPUHGE VOLUME CALCLJLjXrCOH 




TflHBl PUips Tma [1, ^^ 



bValETiTDlumHrf 



Wo. Vjis 



PumE Rala 



y,x>->^ 



iGRDUrjgW^TEP PdH*^flTErEP[ PAgASUREaiEHta 





1 




nal^ 1 1 




i^L"lj' -TiiD F'jPtE ■.■Ul/Jrfl6 


^ 




' L-r. . HBi. 1 j 




ACTUAL PURGe '/GLUME 


Zf 




feWrTvpfl Hi' >^ ^.^ 


'^/f" 1 







dH 


TfliTO 


1 DO Sj, HJUD 


DRP 

l-nilh 


ruroiaTiv 


CDiiirn^nli 


■ 














1 








i:.^ 

A.'^ 


U 1 r, / 




06 












1 


























/ 










1 














1 
























1 






















/ 1 




















1 1 \ 






' 1 






J 








; 




■ 1 


1 










1 


1 








COmnianl? PbirgS Wfllrf r JfOiaUffMI&posal ^ 

q 1 F i~ i i ■-■■qxJr^i ibi#-^ 


^nniiT— rn 


•^ feifw^ ^i,h^ 





SAMPLING WETHOD 



^reflTmB aBinplatr 



"vU^ 



TT 





BaMr-l^a 




p 


Otfiar 






famplB FllreiQi-: ^,'Sio 


FiltoiQd SdinplH PiHJyaiE 






1 


E4A1PUHG PROGHAIA \ 








SaPDiO Pbr ! '^'nurnerJUVauniB 


LECeramv 


1 CtJCiH I CarwriMle 








HL^'^^I& I 


1 ^^'l" vL 


/ -^ 


■M^ii 1 1 






<^J1J0 il^i 


C-i^ 




— . ii— '-- ' — 1 






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r □UALETYCUNTnOLSAVfLES 1 






Bbi* Qanphi 






DudIIe3ID Sdnmlca 








Cimud SfnSJa Nj. | UtwIoalB SamrJv 


No. 




1 Typp 1 


1 SJinalP rje. 






1 




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1 . . — — — ..-^ ' ■ 




J 




PinHir 


- 




TreaoweK^jftjiio 




JianS'Bl 






EnuvgnnTcUT^ JTiif (la!lae'\rVca' lucrum 


JanF 










-. J 


1 



IVlONfTOR/f^G WELL SAMPLING LOG (NoriTiai, Low Flow, and Low YieJd) 



HeCnrdpd B/ 



»?^ 



Samcifld by 



D^tB 7^^/^^ 



W^LL PUHGING 



jPEfRGE VOLITMH 



PURGE METROD 



^ 



^siT uilng oTanicrcr 

□ J-incJi J^ fl fr^ []Qi^aF 

WsEF rtridP DflpIPi (TD, II. belan roq : J^ i^ 

D?plh [0 Wa[sr [WL, Tr. bdmir TOC) : ] ^ . Cf^ 

DflpTli to ITBB phase [FP, ». b^Jaw TOq ; 

NurrburorbDr^Dlf nUltinlBS Id bo Durrad 
Qa Q Ndi D«ii^jbis [jgiiicr 

IPUBSF irOLIJMgQAiCUIj^rtOM 



UiTTiia m 


a 1 foci ??cl4an nf i 


1 Soring Igalfuni) 


aoreriDl? . 


3l£9 


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B 




E 


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10 




4 


1.SB 


13 




4 


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(0f« Flov^ QeailBF 1 T,pg 

FirilP INTAKE I 



t- 



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jMraric^ 



l>spli(ll} 



IF QDimni De(]IJi (II] 
fairipr 



2r 



WflrerCrtumnipniiili 
TcBeI PuFga T*tw j ^ hnj% 
nacHHr^H Hh» 



IVareTValliiriff'Jr 



Nit. VjIs 



PuFQa 



\^' 



-fc 



tr 



qai9 



Cai njLjJvgi: h^i "TV'^i.LJi^i; 



^^_a 



na? 



flCl[Wi,FUFGI: ■'2L"-JrulE 



GROUNDWATER PARflMETBl MEASU REMEPJTS 



WprlMT>Da 



1"^^ $n \h,i^ lio^ 



Tine 



Salkma ' 



pH 



2^ 



i^ 



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n^f 



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j'>j^- rr "'^ 



CairmHil; 



Pug^ vialv alDFagaiHlinnal 



/:?6-.iiEtR^Z:Ji 



sc 



WELL BAM PUNG 



PuFgInq 
EqufprnHtil 

SamplB rlll°iEc; 



□alaiTlniB San^ad 



1£^ 



y^.'tlD FllteistfSaniplE/^lvSit: 






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ja^f^uL 



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//IV^ J^p^ 



7a jVl' .^/" 



OUALITT COTJTFIOL SAMP^B 



J 



ChipJCaW SamQlw 



Qljnk ^AiM'ei 



Qn^nal jai"tfa i^p. 



Ol]p|[cJM SBFTlPJa ^o. 



ijreauweKjjmlo 



Jo.*' 



Tnp 



JiE? 



ninn 



TrunslH 



Diher 



^nrili? Na. 



gHiMf-i^uffffii?tfK^H^°r 



MONiTORJNG WELL SAMPLING LOG (Nc^^ma], Lov/ f]ow, and Low Yield) 



sua / Arsa 



D.t. JJJMjO. 




WELL SAf.iPUNU 



"^^Qlliec S^-g-g-^ 



PUr^ng 
Eqlifpininl 

SEirpii FttHrMT: 
I SAMPUffG PPOGnAm 



Pumii'typa * ^^t'^^i fay BailBr'1\[» 

^J»3 Fiend aampla taalysiK Ae/lfj" 



OiriBr 



Sumil? Nil. 



ffll^^tr^^OH 



I 



■"jT^ 



CpiqajiEr IfPI'^ape 



lAf4WD 






■i^5T^,.,L ;/7 



^ 



<Blpry 



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Cofflm-jii^ 



-tllZ 



■^VfVi-0 tZ-h^L 



aUAUIY COHTHOL S4^TPLEB 



DupucaleSBriiora^ 






^Isnli SdmcJBS 



lJijp|[cjr# jamala ^Jth 



^M^Sm 






Tm [ S jinDlff r<4o. 


rriD 1 


"irtiiLa 




Tr^EislBr 




aihffn 





ProfEcJ Numnef 



MONlJQfWUQ WELL SAMPLING LOG (NorrTiaJ, Low Raw, and Low Yie'd) 



h 



ft^ 



^limtled Dv 



Vi-?i| ryjEi 



^Ww^h-oi" 



_^_^ Dare 7/^e:>1 



m-LL PURGfWG 



FiJRGE VDtUME 



PuriGE METHOD 



Wvl Tsf Jl Dppfh (TJJ, n. Jralo?; TDq ; 7/-^^ 
DapUi [a ivaMT {WL. ft. b^Foiv 7DC| ■ jl Sr | 
DapTIi Hj rrps pliaia (]^P, J|, belnivTOCJ - I 

Ql eS NDHpnllMQlfl QarrtBT 
iPLTflaS VULUME CALCTJLATJQH ^ 
S 

Tolal PufgB Tinj ' ^ r-_, 



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jMajf roD 



i>Ep:n (n^ 



rirBcmum Dgilh(n) 7^' 
ICtlw 



LVarET i|af[jmcrr( 



"ufllT" 



No *35 



^>^4^'Vm^ 






gar^ 



AC7TLWL.Pi-n![i5 VE^LLME 





JGRDIPHD WATER PflRAHETEHijieftSUREllIEfJIS 


1 


nrtBlnrrvflt *'>' i'J* 


'A.tt l^t"^ 




TiruB J ppjgior 


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t'q' 'F 


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gai^D^al ^ 


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1 


J SAMP1.IMG METHOD j 
Pirnilng 
EqirlpinErl Purnp'tjTd 


DarEjrriiH SamplEd 
FiltsiraT Sdmpl? AhhI^o: 




> ^-rj 


oh™ 






Sanipls BlBrefl; ^^0 








1 SAMP UfJG PUD GPflU J 






Sn^nul; fia. 


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coc* 


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1 




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1 
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QUALITY COr^TROL SAiUPLH 


9 1 






Slcnk Sdinpl^E 




Djd 


|j:.dtr ^n^H 










DiiF^Tcsrs SaincJe 


No. 




1 Tvpa 


aamolp ric. 






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1 


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ireailweii^m 


IfO 

'1 'J 




Transfer 






firivViTfimpMiTJ ami Oeaiaelii^ CchTJin 




1 


aihEr. 1 







Second Quarter 2007 



MON/TORING WSLL SAMPLING LOG {Norma!, Low Flow, and Low YieJ^J 






fi^ 



Sjmc^^^TJi' 



1V?II Tyss 



-g 



IIUtniLor 



jjcilcacacr" 
Date 



□ 



Icih^r 



d-A-'^^ 



i 



WE-LL PURGfHG 



tPURGE VOmWE 



Viell T<ji3\ Ospth (TD, ir, titton TOC) . if. 15 

Nwrlafs^OOffnDltvnilinBsrjia iMraed 



LTquld In d I J^d^I 5Bi:niin ul a Samq I.g3'ia--'sl 



Boolia*eS?e 


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1 511 


13 


1 


343 



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PUMP INTArCE 




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:«i: 



C^L^ULATED PLflGE VCl.li:,l = 



fL ^ 



ACUWL P'JRG E VOLLiME 



iGRDUNDWflTEH PARAMETER WEASUHEMEFnS 



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WELL SAMPLWG 



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BUILDING 1349 STUDY AREA 

APPENDIX SECTION Ao 

SEMI-ANNUAL GROUNDWATER MONl'I'ORING REPORT 

FIRST AND SECOND QUARTERS 2007 

Presidio of San Francisco, CBLifornia 

1^ INTRODUCTION AND BACKGROUND 

The Building 1349 Sludy Area i? localed in the western porlion of the Presidio (Figure I). 
Building 1349 is east of Washington Boulevard, we^t of Harrison Boulevard, ^nd soulh of Kobbe 
Aveuue (Figure A-5-1 j. The Building 1349 Area is approxiinalely310lo320 feet above the 
PLLW d^lum. 

Building 1349 was ^ IOO,0(X)-gallon sleel aboveground storage t^nk (AST) built in ihe 1 950s and 
used in the base-wide fueldistilbulion system (FDS). The Building 1349 location 
(Figure A-5-1) was previously occupied by an AST of similar volume, which was buill in 1906. 
A network of pipelines distribuled the fuel lo various areas Ihroughout the Presidio. Use of the 
EDS w^s slopped m ihee^rly 1960s and the pi jie lines were left in place. The Anny begau an 
EDS pipeline removal and abandonmeni projecl in 1996, which removed uiost of ihe FDS 
pil">elines. After the FDS was laken oul of service, Ihe AST associated with Ihe FDS was used to 
store diesel ftiel, which was off-loaded to lanker trucks for Iransporlation lo various locations iu 
the Presidio [ M on igomeiT Watson, 1996c). The Inlern^lion^l Technology' Corporation (IT) 
removed Building 1349 in 1996. The Building 1349 monitoring wells are associated with former 
fueling oi>erali on s at the Building 1349 Area. 

Since Ihe Second Quarter 2001, enisling Building 1349 wells have been sampled and analyzed 
for general chemishy parameters, TPH, VOCs, OCPs. PCBs, PAHs. TDS. chlorinated 
herbicides, ^nd/or dissolved metals. Summanes of Ihe analytical results are presented in 
Tables A-5-1 through A-5-7. 

The Final Corfecltvc Aclion Pitsn. Biiild'mg 1349 Sfiuly Aiea, Presidto cf Siiri Fiancisco (CAP) 
(BBL, 2006) was submitted to the stakeholders in Eebru^iy 2006. Groundwater sampling at Ihe 
Building 1349 Area will be conducted in accordance with the CAP following the CAP's 
implementation. The CAP is currently scheduled to be implemented in Ihe fall of 2007. The 
recommended conective actions for the Building 1349 Area are discussed in Section 3.0. 
Cleanup levels proposed in the CAP are presented m Tables A-5-2 Ihrougli A-5-7. 

IM SITE DESCRIPTION AND GEOLOGY 

The Building 1349 Area is located on a topographic high point on the boundary of the Manna 
Groundwater Basin and the Coastal Bluffs Groundwater Basin (Figures 1 and A-5-1). Surface 

A-5-1 
Fiial and Sci:and Quiilcis 2007 October 2007 



^nd groundwaler flow directions vary across the Building 1349 site. Building 1349 moniloring 
wells I394MW103, 1349MWIMand 1349MWI05are located within the Marina Groundwaler 
Basin. The six remaining Building 1349 wells are located within the Coastal Groundwater 
Basin. 

Since the Second Quarter 2001, ground water depths benealh the site in wells localed in the 

Coastal G round waler Basin have ranged from aj'iproMinately 23 to 38 feel bgs. Groundwater 
flow direc lion at Building 1349 follows Ihe general lopogiaphic trend. Previous giound waler 
elevalion measuremeuls indicate Ih at ground waler beneath Ihe westeni pari of Ihe sile 
consislently flows lo the wesi and soulhwesi lowards Fill Sile 5 (FS 5) wilhin Ihe Coastal 
Ci oundwaler Basin (Table A-5-8). Groundwater elevation measuremenis from wells 
1349MWI03, I349MW104, and I349MW105 indicate Ihat groundwater in this area generally 
flows in a northeaslerly direction within the Marina Grouudwaler Basin [Table A-5-E) Ihough a 
northwesterly flow direction was present m the Fourlh Quailer 2003 and Tlurd and Fourth 
Quarters 2004. 

Soil unils beneath mosi of Ihe Building 1349 Area consist of Quaternary slope debris and ravine 
fill. Sillsloue, sandstone, shale, and serpenrtnile of the Franciscan Formation underlie Ihe 
Quateniary deposils. The slope debns and ravine fill layer is highly variable, consisting of 
differing combinations and percenlages of sills, clays» sands, andgi"avels and varying in 

thickness from less than 5 lo over 25 feel. 

A high -resolution seismic reflection study was previously conducled by Montgomery Walson at 
the study area [Monlgomeiy Walson, 1996b). The purpose of the sludy was to assess thedeplh 
to bedrock and whether seismic faults and fraclures at the site could affect subsurface migration 
of contaminants. The sludy idenh tied eight bedrock lineaments or weak zones thai transect the 
site. Treadwell and Rollo conducled a two phase Sile Inveshgation (ST) in 2002 and 2003. 
Based on ihe field observations from the first phase of the SI (Phase I SI) and previous boring 
logs, Ihe underlying bedrock is highly fraclured and weathered with varying degrees of haidness. 
In many of Ihe fracture zones, pailicularly in the serpentinile units, clav and silt fault gouge wilh 
clasls or fragmenis of more competent rock were obsei"ved. Due lo the lateral discontinuity and 
the varying elevations at which they were observed in the soil borings ihe exient of these bedrock 
fraclures appears lo be limiled (Treadwell Ss. Rollo, 2003d). The lineaments and an inlerred faull 
from the M on IgomeiT Walson sludy are shown on Figure 4 of Xhe Dftip S!le hiveatigalkm Repoif 
fSl), Btiilt/ing ! 349 Slmiy Ai eii, Presidlaoj Sun Ficinc\sc<>, Ciiltjcriiiti^ which was submilted to 
stakeholders in October 2003 (Treadwell & Rollo, 2003d). 

Soil borings advanced during the Phase 1 SI generally encountered wet soil samples in the 

bedrock at de]"Hhs ranging from aj'iproMmalely 30 lo40 feet bgs. After leaving the borings open 
for at most 48 hours, water levels were measured at deplhs ranging from 29lo43 feel bgs, 
depending on the boring location. In several of the Phase 1 SI borings drilled to 40 feet bgs and 
into Ihe bedrock, gioundwaler was not j'lresent or only a few inches of water had accumulated in 
the borings after approximately 48 hours. Based on these findings, gi'oundwater appears lo be 

A-5-? 

Fiial and Sci:and Quiilcis 2007 Octob