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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Temporal geophysical signatures from contaminant-mass remediation
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Temporal geophysical signatures from contaminant-mass remediation

机译:污染物质量修复的时间地球物理特征

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We have previously documented changes in bulk electrical conductivity, self-potential (SP), and ground-penetrating-radar (GPR) reflections in a field setting caused by biogeochemical transformations of hydrocarbon-contaminated media. These transformations are associated with hydrocarbon biodegradation. The results of surface geophysical surveys acquired in 1996, 2003, and 2007 document changes in geophysical signatures associated with removing hydrocarbon mass in the contaminated zone. Initial investigations in 1996 showed that relative to background, the contaminated area was characterized by higher bulk electrical conductivity, positive SP anomaly, and attenuated GPR reflections. Repeated surveys in 2003 and 2007 over the contaminated area showed that in 2007, the bulk electrical conductivityhad reverted to near-background conditions, the positive SP anomaly became more negative, and the zone of attenuated GPR reflections showed increased signal strength. Removal of hydrocarbon mass in the vadose zone over the plume by a soil vapor-extraction system installed in 2001 was primarily responsible for the changing geophysical responses. Although chemical data from groundwater showed a 3-m-thick con-ductive plume in 2007, the plume was not imaged by elec-trical resistivity. Forward modeling suggests that apparent bulk electrical conductivity of the saturated zone plume has to be three to five times higher than background values to be imaged by electrical resistivity. We suggest that removing hydrocarbon-contaminant-mass reduction by natural or engineered bioremediation can be imaged effectively by temporal geophysical surveys.
机译:我们以前已经记录了在现场环境中由于烃污染的介质的生物地球化学转变而引起的整体电导率,自电势(SP)和穿透地雷达(GPR)反射的变化。这些转化与烃的生物降解有关。在1996年,2003年和2007年获得的地面地球物理调查结果记录了与去除受污染带中的烃类物质有关的地球物理特征变化。 1996年的初步研究表明,相对于背景,受污染区域的特征是较高的整体电导率,正SP异常和衰减的GPR反射。在2003年和2007年对受污染区域的重复调查表明,在2007年,整体电导率已恢复到接近本底状态,正SP异常变得更加负,并且GPR反射衰减区域显示了信号强度的增加。 2001年安装的土壤蒸汽萃取系统去除了羽流上方渗流带中的碳氢化合物,这是造成地球物理响应变化的主要原因。尽管2007年地下水的化学数据显示出3 m厚的导电羽流,但是该羽流并未通过电阻率成像。正向建模表明,饱和区羽流的表观整体电导率必须比通过电阻率成像的背景值高三到五倍。我们建议通过自然地球物理勘测可以有效地成像通过自然或工程生物修复去除碳氢化合物污染物的质量。

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