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Non-intrusive characterization of the redox potential of landfill leachate plumes from self-potential data

机译:根据自势数据对垃圾渗滤液羽流的氧化还原电势进行非侵入式表征

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摘要

Contaminant plumes (e.g., associated with leakages from municipal landfills) provide a source of natural electrical potentials (or "self-potentials") recordable at the Earth's surface. One contribution to these self-potentials is associated with pore water flow (i.e., the "streaming potential"), and the other is related to redox conditions. A contaminant plume can be regarded as a "geobattery": the source current potentially results from the degradation of the organic matter by micro-organisms, which produces electrons. These electrons are then carried by nanowires that connect bacteria and thorough metallic particles that precipitate in areas of strong redox potential gradient. In the case of the Entressen landfill (South of France), reported here, the hydraulic head differences measured in piezometers outside the contaminant plume is strongly linked to the surface self-potential signals, with a correlation coefficient of -0.94. We used a Bayesian method that combines hydraulic head and self-potential data collected outside the contaminated area to estimate the streaming potential component of the collected self-potential data. Once the streaming potential contribution was removed from the measured self-potentials, the correlation coefficient between the residual self-potentials and the measured redox potentials in the aquifer was 0.92. The slope of this regression curve was close to 0.5, which was fairly consistent with both finite element modelling and the proposed geobattery model.
机译:污染物羽流(例如,与市政垃圾填埋场的渗漏有关)提供了可记录在地球表面的自然电位(或“自电位”)来源。对这些自电位的一种贡献与孔隙水的流量(即“流动电位”)有关,另一种与氧化还原条件有关。污染物羽流可被视为“地球电池”:源电流可能是由于微生物降解有机物而产生的,该微生物会产生电子。然后,这些电子由连接细菌和沉淀在强氧化还原电势梯度区域中的彻底金属颗粒的纳米线携带。在这里报道的恩特雷斯(Enressen)垃圾填埋场(法国南部)的情况下,在污染物羽外部的压力计中测得的水头差与表面自势信号密切相关,相关系数为-0.94。我们使用了贝叶斯方法,该方法将液压头和在受污染区域外收集的自势数据相结合,以估计所收集的自势数据的流动势分量。一旦从测得的自电势中除去了流电势的贡献,含水层中残余自电势与测得的氧化还原电势之间的相关系数为0.92。该回归曲线的斜率接近于0.5,这与有限元建模和拟议的地电池模型都相当一致。

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