CRUDE-OIL IN A SHALLOW SAND AND GRAVEL AQUIFER .2. ORGANIC GEOCHEMISTRY

被引:102
作者
EGANHOUSE, RP
BAEDECKER, MJ
COZZARELLI, IM
AIKEN, GR
THORN, KA
DORSEY, TF
机构
[1] Southern California Coastal Water Research Project, Long Beach, CA 90806
[2] Environmental Sciences Program, University of Massachusetts, Boston
[3] Water Resources Division, U.S. Geological Survey, 431 National Center, Reston
[4] Water Resources Division, U.S. Geological Survey, Boulder
[5] Water Resources Division, U.S. Geological Survey, Denver
[6] Department of Earth and Space Sciences, University of California, Los Angeles, CA 90024
关键词
D O I
10.1016/0883-2927(93)90013-7
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
Crude oil spilled from a pipeline break in a remote area of north-central Minnesota has contaminated a shallow glacial outwash aquifer. Part of the oil was sprayed over a large area to the west of the pipeline and part of it accumulated in an oil body that floats at the water table to the east of the point of discharge. Total dissolved organic carbon (TDOC) concentrations in shallow groundwater collected in the oil spray area reach 16 mg/l. This is nearly an order of magnitude higher than the TDOC concentrations of native groundwater (approximately 2-3 mg/l). The additional TDOC derives from the partial degradation of petroleum residues deposited at the land surface and transported to the aquifer by vertical recharge. In the vicinity of the oil body, TDOC concentrations in groundwater are 48 mg/l, 58% of the TDOC being composed of non-volatile organic C. The majority of the volatile DOC (63%) is a mixture of low-molecular-weight saturated, aromatic and alicyclic hydrocarbons derived from the oil. Downgradient from the oil body along the direction of groundwater flow, concentrations of all measured constituents of the TDOC pool decrease. Concentrations begin to decline most rapidly, however, in the zone where dissolved O2 concentrations begin to increase, approximately 50 m downgradient from the leading edge of the oil. Within the anoxic zone near the oil body, removal rates of isomeric monoaromatic hydrocarbons vary widely. This indicates that the removal processes are mediated mainly by microbiological activity. Molecular and spectroscopic characterization of the TDOC and its spatial and temporal variation provide evidence of the importance of biogeochemical processes in attenuating petroleum contaminants in this perturbed subsurface environment.
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页码:551 / 567
页数:17
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