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对老化碳氢化合物污染生物地球化学变化的长期酶替代疗法监测

Long-term ERT monitoring of biogeochemical changes of an aged hydrocarbon contamination.

作者信息

Caterina David, Flores Orozco Adrian, Nguyen Frédéric

机构信息

Institute of Bio and Geosciences 3, Forschungszentrum Jülich, Jülich, Germany; Applied Geophysics Unit, Faculty of Applied Sciences, University of Liège, Liège, Belgium.

Research Group Geophysics, Department of Geodesy and Geoinformation, TU-Wien, Vienna, Austria.

出版信息

J Contam Hydrol. 2017 Jun;201:19-29. doi: 10.1016/j.jconhyd.2017.04.003. Epub 2017 Apr 10.

Abstract

Adequate management of contaminated sites requires information with improved spatio-temporal resolution, in particular to assess bio-geochemical processes, such as the transformation and degradation of contaminants, precipitation of minerals or changes in groundwater geochemistry occurring during and after remediation procedures. Electrical Resistivity Tomography (ERT), a geophysical method sensitive to pore-fluid and pore-geometry properties, permits to gain quasi-continuous information about subsurface properties in real-time and has been consequently widely used for the characterization of hydrocarbon-impacted sediments. However, its application for the long-term monitoring of processes accompanying natural or engineered bioremediation is still difficult due to the poor understanding of the role that biogeochemical processes play in the electrical signatures. For in-situ studies, the task is further complicated by the variable signal-to-noise ratio and the variations of environmental parameters leading to resolution changes in the electrical images. In this work, we present ERT imaging results for data collected over a period of two years on a site affected by a diesel fuel contamination and undergoing bioremediation. We report low electrical resistivity anomalies in areas associated to the highest contaminant concentrations likely due transformations of the contaminant due to microbial activity and accompanying release of metabolic products. We also report large seasonal variations of the bulk electrical resistivity in the contaminated areas in correlation with temperature and groundwater level fluctuations. However, the amplitude of bulk electrical resistivity variations largely exceeds the amplitude expected given existing petrophysical models. Our results suggest that the variations in electrical properties are mainly controlled by microbial activity which in turn depends on soil temperature and hydrogeological conditions. Therefore, ERT can be suggested as a promising tool to track microbial activity during bioremediation even though further research is still needed to completely understand the bio-geochemical processes involved and their impact on electrical signatures.

摘要

对受污染场地进行充分管理需要具有更高时空分辨率的信息,特别是用于评估生物地球化学过程,例如污染物的转化和降解、矿物质沉淀或修复过程中及之后发生的地下水地球化学变化。电阻层析成像(ERT)是一种对孔隙流体和孔隙几何性质敏感的地球物理方法,能够实时获取有关地下特性的准连续信息,因此已广泛用于表征受烃类影响的沉积物。然而,由于对生物地球化学过程在电信号特征中所起作用的理解不足,其在自然或工程生物修复相关过程的长期监测中的应用仍然困难。对于原位研究,可变的信噪比以及环境参数的变化导致电图像分辨率改变,使得这项任务更加复杂。在这项工作中,我们展示了在一个受柴油污染且正在进行生物修复的场地,历时两年收集的数据的ERT成像结果。我们报告了在与最高污染物浓度相关的区域出现低电阻率异常,这可能是由于微生物活动导致污染物转化以及伴随代谢产物释放所致。我们还报告了污染区域的体积电阻率存在较大的季节性变化,这与温度和地下水位波动相关。然而,体积电阻率变化的幅度大大超过了现有岩石物理模型预期的幅度。我们的结果表明,电性质的变化主要受微生物活动控制,而微生物活动又取决于土壤温度和水文地质条件。因此,尽管仍需要进一步研究以完全理解其中涉及的生物地球化学过程及其对电信号特征的影响,但ERT可被认为是追踪生物修复过程中微生物活动的一种有前景的工具。

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