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首页> 外文期刊>Journal of applied science & environmental management: JASEM >Geo-electrical investigation of Leachate Impact on Groundwater: A Case Study of Ile- Epo Dumpsite, Lagos, Nigeria
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Geo-electrical investigation of Leachate Impact on Groundwater: A Case Study of Ile- Epo Dumpsite, Lagos, Nigeria

机译:渗滤液对地下水的地电研究:以尼日利亚拉各斯Ile-Epo垃圾场为例

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摘要

In the past few decades, disposal sites have been filled with household refuse and different kinds of potentially dangerous industrial waste in an uncontrolled manner which poses an enormous risk for the environment, and are the main sources for groundwater contamination. With the aim of assessing impact of leachate on the underlying aquifers by determining and delineating possible leachate infiltration into the aquifer matrix ,Constant Spacing Traversing (CST) was carried out using Wenner array and spacing between 10-60 m along four 160 m – 180 m profiles. The results revealed the aquifer is characterized by low resistivity response generally below 4.5 ohm-m depicting possible contamination of the underlying aquifer from Oke-Odo landfill. The surface of the waste landfill is characterized by differential decomposition of waste as zones of advanced decomposition and fresh waste are reflected as low and high resistivity respectively. The absence of leachate in the aquifer 100 m from the studied area suggests that the leachate has not spread to this area, therefore, safe for groundwater exploitation. This study demonstrated the expeditiousness and effectiveness of the resistivity technique as a tool for geo-environmental mapping of leachate.
机译:在过去的几十年中,处理场所以无法控制的方式充满了生活垃圾和各种潜在危险的工业废物,这对环境构成了巨大的风险,并且是地下水污染的主要来源。为了通过确定渗漏液渗入含水层矩阵来评估渗滤液对下伏含水层的影响,使用Wenner阵列进行了定距穿越(CST),并沿着四个160 m – 180 m进行了10-60 m的间距个人资料。结果表明,该含水层的特点是通常在4.5 ohm-m以下具有低电阻率响应,这说明Oke-Odo垃圾填埋场可能会对底层含水层造成污染。废物填埋场的表面特征在于废物的差异分解,因为高级分解区和新鲜废物区分别反映为低电阻率和高电阻率。距研究区域100 m的含水层中没有渗滤液,表明渗滤液尚未扩散到该区域,因此对于地下水开采是安全的。这项研究证明了电阻率技术作为渗滤液地质环境图绘制工具的迅速性和有效性。

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