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首页> 外文期刊>Journal of Applied Geophysics >Integrated geophysical characterisation of Sunyani municipal solid waste disposal site using magnetic gradiometry, magnetic susceptibility survey and electrical resistivity tomography
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Integrated geophysical characterisation of Sunyani municipal solid waste disposal site using magnetic gradiometry, magnetic susceptibility survey and electrical resistivity tomography

机译:使用磁探测,磁化率测量和电阻率断层扫描综合阳光市固体固体废物处理现场的地球物理表征

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Non-invasive geophysical investigation using magnetic gradiometry, magnetic susceptibility survey and electrical resistivity tomography (ERT) was carried out on the Sunyani Municipal Assembly (SMA) solid waste disposal (SWD) site. The study was aimed at delineating the physical boundaries and the area extent of the waste deposit, mapping the distribution of the waste at the site, detecting and delineating zones of leachate contamination and its preferential migration pathways beneath the waste deposit and its surroundings. The results of both magnetic susceptibility and gradiometric methods displayed in anomaly maps clearly delineated the physical boundaries of the waste deposit with an approximate area extent of 82,650 m(2) that are characterised by high magnetic susceptibilities between 426 x 10(-5) SI and 9890 x 10(-5) SI. They also revealed high magnetic anomalies erratically distributed within the waste deposit attributable to its heterogeneous and uncontrolled nature. The high magnetic anomalies outside the designated waste boundaries were also attributed to indiscriminate deposition of the waste. Similarly, the ERT sections delineated and characterised zones of leachate contamination beneath the waste body and its close surroundings as well as pathways for leachate migration with low resistivity signatures up to 43.9 Omega m. In spite of the successes reported herein using the ERT, this research also revealed that the ERT is less effective in estimating the thickness of the waste deposit in unlined SWD sites due to leachate infiltration into the ground beneath it that masks the resistivities of the top level ground and makes it indistinguishable from the waste body. (C) 2018 Elsevier B.V. All rights reserved.
机译:在阳光市大会(SMA)固体废物处理(SWD)现场进行了使用磁析测定,磁化率测量和电阻率断层扫描(ERT)的非侵入性地球物理研究。该研究旨在描绘物理边界和废物沉积的面积范围,绘制现场废物的分布,检测和描绘渗滤液污染区及其在废物沉积物下方的优先迁移途径及其周边地区。在异常地图中显示的磁化率和渐变方法的结果明确描绘了废物沉积物的物理边界,其面积为82,650 m(2),其特征在于426×10( - 5)Si之间的高磁性敏感性。 9890 x 10(-5)si。它们还揭示了高磁性异常,不稳定地分布在其异构和不受控制的自然的废物沉积物内。在指定的废物边界之外的高磁异常也归因于滥用废物的沉积。类似地,ert部分在废物下方的渗滤液污染区域和其紧密的周围环境以及渗滤液迁移的途径,具有低电阻率差异,高达43.9ωm。尽管在使用该研究的情况下报告的成功,但该研究还揭示了由于渗滤出渗滤液渗透到顶层的电阻的渗滤液渗透到地面中,ert yert效果较低。地面并使它与废物难以区分。 (c)2018 Elsevier B.v.保留所有权利。

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