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Environmental impact and vulnerability of the surface and ground water system from municipal solid waste disposal site: Koshe, Addis Ababa

机译:城市生活垃圾处理场的环境影响和地表水和地下水系统的脆弱性:亚的斯亚贝巴的科希

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Geo-environmental assessment and geophysical investigations were carried out over the only functional municipal solid waste disposal site of the city of Addis Ababa, Ethiopia, known locally as Koshe. The accumulated wastes from Koshe have impact on the surrounding human and physical environment since the disposal site was not designed. The study deserves emphasis because the city of Addis Ababa currently obtains a considerable portion of its domestic water supply from a well field developed not much farther from and along a groundwater flow direction in relation to the waste disposal site. It was found out that the leachates from the site contain high concentration of biological oxygen demand, chemical oxygen demand, chloride and sulphate besides high concentration of cobalt, nickel and zinc in the surrounding soils. The geophysical results have mapped weak zones and near-vertical discontinuities that could potentially be conduits for the leachate from the wastes into the deep groundwater system. Further, a zone of potential leachate migration from the landfill was identified from the electrical models; the location of this zone is consistent with the predicted direction of groundwater flow across the site. The results further suggested that the open dump site tends to cause increasing amount of pollution on the surrounding soil, surface and ground waters. Furthermore, it was observed that the Koshe waste disposal site has grown beyond its capacity and the poor management of the open dump landfill has reduced the aesthetic value of the surrounding environments. The need to change/relocate the existing waste disposal site to a more suitable and technologically appropriate site is emphasized.
机译:在埃塞俄比亚亚的斯亚贝巴市的唯一功能性城市固体废物处置场进行了地球环境评估和地球物理调查,该场在当地被称为科希。由于未设计处置场所,因此从Koshe累积的废物会影响周围的人类和自然环境。该研究值得强调,因为亚的斯亚贝巴市目前从井场获得了相当多的生活用水,该井场相对于废物处理场址距离地下水流方向不远,沿地下水流方向也不太远。结果发现,除了周围土壤中高浓度的钴,镍和锌外,该地点的渗滤液还含有高浓度的生物需氧量,化学需氧量,氯化物和硫酸盐。地球物理结果已绘制出薄弱区域和近乎垂直的不连续性,可能是渗滤液从废物进入深层地下水系统的管道。此外,根据电气模型确定了潜在的渗滤液从垃圾填埋场迁移的区域。该区域的位置与跨场地的地下水流的预测方向一致。结果进一步表明,露天堆放场倾向于对周围的土壤,地表水和地下水造成越来越多的污染。此外,据观察,Koshe废物处理场已超出其能力,而露天堆填区的管理不善降低了周围环境的美学价值。强调了将现有废物处理场所改变/迁移到更合适和技术上更合适的场所的需求。

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