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t <br /> 3 w <br /> TABLE OF CONTENTS (cont.) { <br /> Page f <br /> r <br /> 6o GROUND WATER,REMEDIATION ALTERNATIVES 12 <br /> 61 IN-SITU AIR SPARGING 12 ' <br /> 611 PRINCIPLES 12 <br /> " 6 12 BASIC SYSTEM DESIGN 13 <br /> i ' 6 1 3 MONITORING ACTIVITIES J3 <br /> 614 FEASIBILITY 13 <br /> 615 DURATION c 14 <br /> tE 616 COST 15 <br /> s' <br /> 62 'GROUND WATER EXTRACTION 15 <br /> 6 2 1 ,BASIC PRINCIPLES' 15 <br /> 6 2 2 TREATMENT METHODS , 15 <br /> 6 2 3 FEASIBILITY TESTING 16 <br /> ' 6 2 4 DURATION 16 <br /> 6 2 5 COST 16 <br /> 63 IN-SITU BIOREMEDIATION/BIOENHANCEMENT 16 } , <br /> ' <br /> 63 1 BASIC PRINCIPLES 16 <br /> 6 3 2 NUTRIENT REQUIREMENTS AND TOXICITY 17 - <br /> ' <br /> 63 3 MONITORING ACTIVITIES 17 <br /> 634 FEASIBILITY STUDIES 17 <br /> 63 5 DURATION 17 <br /> 63 6 COST- is <br /> 64 NATURAL ATTENUATION is <br /> 70 RECOMMENDATIONS FOR REMEDIATION OF HYDROCARBON- <br /> IMPACTED SOIL 19 <br /> 80 RECOMMENDATIONS FOR REMEDIATION OF HYDROCARBON- ' <br /> ' ,IMPACTED GROUND WATER 20 <br /> ' 9 0, LIMITATIONS 20 <br /> ' FIGURES <br /> , <br /> Figure 1 - Location Map <br /> Figure 2 -Site Plan - - <br /> Figure 3 - Cross Section A-A ' <br /> Figure 4 - Cross Section B 2B' J <br /> ' Figure 5 - Extent of Impacted Ground Water <br /> a <br /> , r <br /> y s <br /> V <br /> t ' i <br /> h r <br /> J <br />