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Hybrid off-river augmentation system as an alternative raw water resource: the hydrogeochemistry of abandoned mining ponds

机译:混合河道增水系统作为替代原水:废弃矿池的水文地球化学

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The use of water from abandoned mining ponds under a hybrid off-river augmentation system (HORAS) has been initiated as an alternative water resource for raw water. However, it raises the questions over the safety of the use of such waters. In this study, the hydrogeochemical analysis of the waters is presented to assess the degree to which the water has been contaminated. Comparisons were made between sampling sites, i.e. abandoned mining ponds, active sand mining ponds and the receiving streams within Bestari Jaya, Selangor River basin. The aqueous geochemistry analysis showed different hydrochemical signatures of major elements between sites, indicating different sources of minerals in the water. Discharges from the sand mining ponds were found to contain elevated availability of dissolved concentrations of iron, manganese, lead, copper and zinc, among others. However, the quality of the water (from the main river) that is supplied for potable water consumption is at a satisfactory level despite being partly sourced from the abandoned mining ponds. In fact, all the metal concentrations detected were well below the Malaysia Ministry of Health guideline limits for untreated raw water. In addition, the results of the geochemical index analysis (i.e. geoaccumulation index, enrichment factor and modified contamination factor) showed that the rivers and abandoned mining ponds were generally unpolluted with respect to the metals found in sediments.
机译:已经开始使用混合河外增肥系统(HORAS)中废弃矿池的水作为原水的替代水资源。然而,这引起了关于使用这种水的安全性的问题。在这项研究中,提出了对水域进行水文地球化学分析以评估水被污染的程度。在采样地点之间进行了比较,即废弃的采矿池,活跃的采砂池和雪兰莪河流域的Bestari Jaya内的接收河。含水地球化学分析显示站点之间主要元素的水化学特征不同,表明水中矿物质的来源不同。已发现,从采砂池中排出的废水中溶解的铁,锰,铅,铜和锌等的溶解度较高。但是,尽管部分来自废弃的采矿池,但用于饮用水消耗的水(来自主要河流)的水质仍处于令人满意的水平。实际上,所有检测到的金属浓度都远低于马来西亚卫生部未处理原水的准则限值。此外,地球化学指标分析的结果(即地质积累指数,富集因子和改良的污染因子)表明,河流和废弃矿池相对于沉积物中发现的金属通常未被污染。

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