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Pilot-scale field model tests for detecting landfill leachate intrusion into the subsurface using a grid-net electrical conductivity measurement system

机译:使用网格网电导率测量系统的中试场模型测试,用于检测垃圾渗滤液浸入地下

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The grid-net electrical conductivity measurement system for detecting exact locations of landfill leachate intrusion in the subsurface was developed in this study. Laboratory and pilot-scale field model tests were performed to evaluate the direct application of a grid-net electrical conductivity measurement system for the detection of landfill leachate. A significant increase in electrical conductivity of soil was observed by adding landfill leachate. This can be explained as an increase in electrical conductivity of pore fluid due to an increase in leachate constituents as charge carriers. In pilot-scale field model tests, leachate intrusion locations were accurately identified at the initial stage of landfill leachate release by the grid-net electrical conductivity measurement system. The electrical conductivity of the subsurface before leachate injection lay within a small range of 24.8-43.0 μS/cm. The electrical conductivity values in detected points were approximately ten times more than the conductivity values of the subsurface without landfill leachate intrusion. The results in this study indicate that the grid-net electrical conductivity measurement method has a possible application for detecting locations of landfill leachate intrusion into the subsurface at the initial stage, and thus has great potential in monitoring leachate leakage at waste landfills.
机译:本研究开发了用于检测地下渗滤液渗入入侵确切位置的网格电导率测量系统。进行了实验室和中试规模的现场模型测试,以评估用于检测垃圾渗滤液的网格网电导率测量系统的直接应用。通过添加垃圾渗滤液可以观察到土壤电导率的显着提高。这可以解释为由于作为电荷载体的沥出液成分的增加而导致的孔隙流体的电导率的增加。在中试规模的模型测试中,通过网格网电导率测量系统在垃圾填埋场渗滤液释放的初始阶段准确地确定了渗滤液的侵入位置。注入渗滤液之前,地下的电导率处于24.8-43.0μS/ cm的较小范围内。检测点的电导率值大约是没有垃圾渗滤液侵入的地下电导率值的十倍。研究结果表明,网格电导率测量方法在初期阶段可用于检测垃圾渗滤液渗入地下的位置,因此在监测垃圾渗滤液渗漏方面具有很大的潜力。

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