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Assessment of the potential for bank filtration in a water-stressed megacity (Delhi, India)

机译:评估缺水大城市中堤岸过滤的潜力(印度德里)

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In the densely populated semi-arid territory around Delhi, the water demand is rising continuously, while the surface- and groundwater resources are threatened by contamination and overexploitation. This is a typical scenario in many newly industrialising and developing countries, where new approaches for a responsible resources management have to be found. Bank filtration holds a great potential, thus being a low tech method and benefiting from the storage and contaminant attenuation capacity of the natural soil/rock. For this study, three field sites have been constructed to investigate bank filtration in different environments in and around the megacity with a main focus on inorganic contaminants. Hydraulic heads, temperature gradients and hydrochemistry of surface water and groundwater were analysed in three different seasons. Depending on site-specific conditions, distinct hydrogeological conditions were observed and both positive and negative effects on water quality were identified. Most concerning issues are the impact of anthropogenic ammonia, the mixing with ambient saline groundwater and the mobilisation of arsenic during the reductive dissolution of manganese- and iron-(hydr)oxides. Positive aspects are the dilution of contaminants during the mixing of waters from different sources, the sorption of arsenic, denitrification, and the precipitation of fluoride under favourable conditions.
机译:在德里附近人口稠密的半干旱地区,需水量持续增长,而地表和地下水资源却受到污染和过度开发的威胁。这是许多新兴工业化国家和发展中国家的典型情况,在这些国家中必须找到负责任的资源管理新方法。堤岸过滤具有很大的潜力,因此是一种技术含量较低的方法,并得益于天然土壤/岩石的存储和污染物衰减能力。对于本研究,已建设了三个现场站点,以研究特大城市及其周边地区不同环境中的堤岸过滤,主要关注无机污染物。分析了三个不同季节的水头,地表水和地下水的温度梯度以及水化学特征。根据特定地点的条件,观察到不同的水文地质条件,并确定了对水质的正面和负面影响。最令人关注的问题是人为氨的影响,在还原锰和铁(氢)氧化物的溶解过程中与周围盐水与地下水的混合以及砷的迁移。积极的方面是在不同条件下的水混合过程中污染物的稀释,砷的吸附,反硝化以及在有利条件下氟化物的沉淀。

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