School of Civil Engineering, Shandong University, Jinan, 250061, China.
Water Resources Research Institute of Shandong Province, Jinan, 250014, China.
J Environ Manage. 2024 Aug;366:121854. doi: 10.1016/j.jenvman.2024.121854. Epub 2024 Jul 16.
The whopping increase in solid waste landfills poses serious threats to the environment. Compared to the drilling method, geophysical methods are effective, non-invasive techniques for delineating the contaminant distribution. In this study, electrical resistivity tomography (ERT) and induced polarization (IP) were used to investigate a solid waste deposit. The results of ERT/IP imaging illustrate the potential of the method in environmental studies. Based on the results of 21 survey lines, geo-electrical signals can be summarized as three types: with only high resistivity for construction & demolition wastes (CDWs) areas (RO type), contaminated soil for high chargeability (CO type), and contaminants under CDWs layer have both high resistivity and chargeability (RC type). Chargeability values over 10.2 mV/V correspond to contaminated soil with an overall concentration larger than 75 mg/kg. With the three-dimensional interpolation results and the determined chargeability criteria, the total volume of contaminated soil is 40,555 cubic meters. Finally, comparing the efficiency, cost and results of IP and drilling sampling methods shows that the IP is an efficient, low-cost and high-resolution contamination characterization. The results support that ERT/IP information can fulfill rapid and initial identification as a reliable tool in engineering and environmental investigations.
固体废物填埋场的大量增加对环境构成了严重威胁。与钻探方法相比,地球物理方法是一种有效、非侵入式的技术,可以描绘污染物的分布。在这项研究中,我们使用电阻率层析成像(ERT)和激发极化(IP)来调查固体废物堆积物。ERT/IP 成像结果说明了该方法在环境研究中的潜力。基于 21 条测线的结果,可以将地质电信号总结为三种类型:仅具有高电阻率的建筑和拆除废物(CDW)区(RO 型)、高电荷率的污染土壤(CO 型),以及 CDW 层下的污染物既有高电阻率又有高电荷率(RC 型)。电荷率值超过 10.2 mV/V 对应于整体浓度大于 75 mg/kg 的污染土壤。通过三维插值结果和确定的电荷率标准,可以确定污染土壤的总体积为 40555 立方米。最后,通过比较 IP 和钻探采样方法的效率、成本和结果,表明 IP 是一种高效、低成本和高分辨率的污染特征描述方法。结果支持 ERT/IP 信息可以作为工程和环境调查的可靠工具,实现快速和初步识别。