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首页> 外文期刊>Environmental engineering and management journal >APPLICATION OF ELECTRICAL RESISTIVITY IMAGING (ERI) TO INVESTIGATE AN OIL CONTAMINATED EXPERIMENTAL SITE
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APPLICATION OF ELECTRICAL RESISTIVITY IMAGING (ERI) TO INVESTIGATE AN OIL CONTAMINATED EXPERIMENTAL SITE

机译:电阻率成像(ERI)探讨油污污染实验部位的应用

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摘要

In this study we present time-related 3D ERI models for a site that was contaminated using waste automobile engine oil. The pristine geo-electrical characteristics of the site were recorded before the contamination was carried out. The purpose of the study was to progressively monitor the geo-electrical responses of the site for possible natural bio-transformations on the waste oil. Data were acquired once every two weeks for a period of three months using eight parallel 2D resistivity profiles. The 2D profiles were later inverted to 3D resistivity models of the contaminated site. The 3D inverse resistivity models indicated highest electrical resistivity values in zones that were heavily contaminated with the waste oil. We report progressive reduction in the resistivity of the subsurface in subsequent models after the fourth week of monitoring. The changes were potentially resulting from transformation of the waste engine oil due to enhanced microbial activity which in turn depends on optimal pH, sufficient nutrients and soil temperature. We also observed depleted nitrate concentrations and lower EC values compared to initial soil conditions, which is a sign that microbes are active and biodegradation is likely to be occurring. This study demonstrates the utility of the ERI method in monitoring hydrocarbon contaminated sites for potential degradation due to bio-remediation. Further research is however needed to illustrate the link between microbial degradation of the waste oil and the observed electrical resistivity changes, and related biogeochemical processes.
机译:在这项研究中,我们向使用废物汽车发动机油污染的网站提供与时间相关的3D ERI模型。在进行污染之前,记录了该部位的原始地质电气特性。该研究的目的是逐步监测现场的地质电反应,以获得废油的天然生物转化。使用八个并行2D电阻率分布,每两周一次每两周一次获得数据。 2D型材后来倒置为污染部位的3D电阻率模型。 3D逆电阻率模型指示与废油严重污染的区域中的最高电阻率值。在监测第四周后,我们在后续模型中报告逐步降低了地下的电阻率。由于增强的微生物活动导致废物发动机油的变化可能导致废物发动机油的变化导致,这反过来依赖于最佳pH,足够的营养素和土壤温度。与初始土壤条件相比,我们还观察到耗尽硝酸盐浓度和较低的EC值,这是微生物是活性的标志,并且可能发生生物降解。本研究表明ERI方法在监测烃污染部位在监测碳氢化合物污染部位以进行潜在的降解引起的。然而,需要进一步的研究来说明废油的微生物降解与观察到的电阻率变化的链路,以及相关的生物地球化学过程。

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