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Geoelectrical Imaging and Physicochemical Assessment of Waste Dumpsite: Implications on Groundwater Quality

机译:垃圾场的地电成像和理化评估:对地下水水质的影响

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The most unregarded cause of water pollution is the inappropriate dumping of wastes and improper treatment of solid wastes. The current research examined the impacts of solid waste disposal site on water quality of the residential areas bounded the site by integrating 2-D resistivity imaging, physical, chemical and bacteriological analyses of water samples from twelve hand-dug wells (HdW) and two boreholes (BH) using standard field and laboratory procedures. The results of the 2-D resistivity imaging of the subsurface along four traverses around the refuse dumpsite showed anomalously low resistivity zones, intermediate resistivity zones and high resistivity zones interpreted to be soil or sand saturated with contaminant leachate, rock materials having varying moisture content and composition and rock materials contaminated with dumpsite gases respectively. The study observed that these contaminants have migrated to depth 25 m below the aquifer and over 20 m distance away from the edge of the dumpsite. Apart from nitrate, phosphate and turbidity, all the other physicochemical parameters tested were within the WHO recommended limits. However, the trace metals (Fe, Mn, Cr, Pb and Zn) and total bacteria count were generally above the recommended limit. Consequent upon the associated health implications due to elevated levels of some of the contaminants, which were attributed mainly to leachate from the dumpsite, the study suggested adequate corrective measures and program enlightenment campaign to all end users.
机译:造成水污染的最根本原因是废物的不适当倾倒和固体废物的不当处理。当前的研究通过整合二维电阻率成像,来自十二个手挖井和两个钻孔的水样的二维电阻率成像,物理,化学和细菌学分析,研究了固体废物处理场对居住区周边水质的影响。 (BH)使用标准现场和实验室程序。沿垃圾场周围四个导线进行的地下二维电阻率成像结果显示,异常低电阻率区,中电阻率区和高电阻率区被解释为被污染物渗滤液浸透的土壤或沙子,含水量变化不大的岩石材料和成分和被垃圾场气体污染的岩石材料。研究发现,这些污染物已迁移至含水层以下25 m的深度,并距垃圾场边缘20 m以上。除硝酸盐,磷酸盐和浊度外,所有其他理化参数均在WHO建议的限值内。但是,痕量金属(Fe,Mn,Cr,Pb和Zn)和细菌总数通常高于建议的限值。由于某些污染物的水平升高而造成的相关健康影响,这些污染物主要归因于垃圾场的渗滤液,该研究向所有最终用户提出了适当的纠正措施和计划启发运动。

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