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A <br /> TPH-G-I3,000 PH-G-7,800 A TPH-G-9 9 TFH-GL 820 D B' <br /> t� B-3 1 B-93 8--0 3 B-12 B <br /> T-BSO T-660 (EAST) T-52 <br /> E-370 E-19Q T-011E-15 (NORTH) <br /> (SOUTH)(WEST) X-1,900 X-980 X-0 <br /> a <br /> B3 X-81 I SB1/ASB5 0• <br />' SB4 k ASB1 B6 MW- T EW-1 _ - SB2 MW-3 -- - �SB3 _ ASBB VW-1 - _ - T <br /> d, AS - - _-•_ -_ _ _ - _ _ _ �- 0 Q <br /> - - _ � _ - -T _ --'• H-G--4,900 - _ _ - - <br /> - -. _ - _ _ _ � r �_� - -_ _ 8-110 - _- - - _ _ - - ~- -_--�- - 10' <br /> -... -— - - - - _-- _ _ - - - - - —-- _- T-360 _ _`^__- - _ �_ <br /> 10' E-100 <br /> LVD — — — — X-500 a d 015 B—Q 34 — _ _ TPH—G-280_ " — TAH—G-2,90 �- cV <br /> - _ ro 4) x <br /> - - - - - - ~_- _ _ T-0 006 _ _ _ _ _ _ _ - B-82- - ND G1 <br /> X-0 009 X O 02Q _ _ B-4B - - - <br /> _ <br /> E-70- <br /> 20!-- <br /> -7 0 TM_ _ E-89 = <br />' 20' ND - - - - - Y_ T - _ `;_ - - - -- X_5 6- = - - X=350_ _ z <br /> 2000 SZ - - - - - - _ �^ _ _ - - _ TM __ _ _ ___ - - - - - - - m <br /> - - - _ _ __ - ___-_ _ D <br /> , .--^-.. ... -_ -_- _ _- - -- - - D 30' <br /> 30' _- - - - _ - j B-Q 055 _ - - - - B-062 _ _--_ - w a <br />' _ _ _ T-0 038 _ _ _ - T-0 58 - - ___ -_ - A-12 <br /> i X-Q 020 E-Q 2= - - E-0 BB <br /> B-0 025 -__ -- - - - - - - - - _ - _ - - X-0(38 - - - 40' <br /> - _ _- - - - -- - - 1 _ _ ND <br /> 40' �_ - X-0015=_� - _ _ - - - �- -- B-O 26 _- - - <br /> X - 0 064 Y- T-0 Q35 'PH- <br /> - ND _- -_ _ -_-_ - _ __ - <br /> - E-0 01 T-0 5 ` _ 50' <br /> -_ �_-_- X-0 035 i X-01 2 <br /> -012 <br /> 50' - _� _ --_-- - - - - - - <br /> 1891 w TPH-G-100 - -- --_- F- --Y-- --» —� TPH-G-3 8 NO `� - -� _ <br /> B-0 3 �� - - _ — _ -/ B-0 12 - H-G- 130.000 E—I 'Z <br /> T-0 45 TPHTBE- - MTBE-02,500 60' w EPq <br /> T-2 0 - - - - MTBE- - _ w B-17 000 <br /> BO' E-1 B - - - - _ -T -- <br /> E-010 B-03 i T-2BA00 <br /> X-5 9 X-0 47 T-2 0 ,E-16 * E-3 500 <br /> 8 _ _ - - X-5 S +f X-16.0010 70 Q" Q 0 <br /> TPH-G 4 - <br /> T-0 015 B-0 009 <br /> 70' t_ = T-0 028 TPH-G--4 87 4 z, <br /> X-0 016 `� X-0 036 E-0 008 B-O 005 �� 80 0 O <br /> T-0 015 E4 Q <br /> 80 TPH-G-13 TPH-G-180 TPH-G-B 8 E-0 013 w <br /> B-0 14 B-0 88 B-0 57 PH-G-26,000 X-0 01B <br /> T-0 56 T-5 2 T-13 MTBE-0200 <br /> E-0 24 E-3 0 E-3 0 H-G- 1,600 B-3 900 TPH-G-13 <br />' MTBE-<5 0 T-2.400 MTHE- _ <br /> TPUTB-180 I U) x E-+ <br /> X-11 X-12 X-12 <br /> B-21 E-810 B--O 14 MTBE- - U) � <br /> + C� <br /> E- <br /> B-002 T-9 4 X-1.400 T-0 58 B-0 88 PREDOMINANT GROUND <br /> T-0 006 E-59 E-024 T-5 2 <br /> Ec0 014 X-66 X-11 x is WATER FLOW DIRECTION w o o <br /> I- <br />' {EAST, INTO CROSS O 04 <br /> PREDOMINANT GROUND SECTION) o o co <br /> ' W w co <br /> WATER FLOW DIRECTION <br /> (EAST) <br /> ' LEGEND <br /> SC/SM - SILTY SAND AND CLAYEY SAND <br /> ML - GILT MONITORING WELL SCREEN INTERVAL y <br /> GROUND WATER SAMPLE LOCATION fi <br /> CL - CLAY LOCALLY CONTAINS SAND MTBE-<5 08Q0 <br /> B-21 l <br /> T-9 4 I <br /> EXTENT OF SOIL BORING E-59 <br /> ' X-56 <br /> NOTES --' EXTENT OF SOIL COMPOSTION DATA GRAB GROUND WATER SAMPLE LOCATION JJ TPH-g TOTAL. PETROLEUM HYDROCARBONS QUANTIFIED AS GASOLINE APPROXIMATE LITHOLGIC CONTACT TPH-G- 1 600 1 <br /> B BENZENE MTBE-<5 0 HORIZONTAL s <br /> T TOLUENE • SOIL SAMPLE LOCATION B-2 1 0 <br /> Iq OF E ETHYLBENZENE T-9 4 0 2 40X XYLENE '� APPROXIMATE DEPTH TO GROUND WATER {JANUARY 19SB) E_5g <br /> ' FT <br /> ND NON DETECTED (LESS THAN REPORTING LIMIT) X-SB <br /> .ALL UNITS REPORTED IN mg/kg MILLIGRAMS PER HILOGRAM (PARTS PER MILLION) I <br /> SCALE AS SHOWN <br />