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Regional assessment of groundwater quality for drinking purpose

机译:饮用水目的区域水质评估

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Owing to limited surface water during a long-term drought, this work attempted to locate clean and safe groundwater in the Choushui River alluvial fan of Taiwan based on drinking-water quality standards. Because aquifers contained several pollutants, multivar-iate indicator kriging (MVIK) was adopted to integrate the multiple pollutants in groundwater based on drinking- and raw-water quality standards and to explore spatial uncertainty. According to probabilities estimated by MVIK, safe zones were determined under four treatment conditions-no treatment; ammonium-N and iron removal; manganese and arsenic removal; and ammonium-N, iron, manganese, and arsenic removal. The analyzed results reveal that groundwater in the study area is not appropriate for drinking use without any treatments because of high ammonium-N, iron, manganese, and/or arsenic concentrations. After ammonium-N, iron, manganese, and arsenic removed, about 81.9-94.9% of total areas can extract safe groundwater for drinking. The proximal-fan, central mid-fan, southern mid-fan, and northern regions are the excellent locations to pump safe groundwater for drinking after treatment. Deep aquifers of exceeding 200 m depth have wider regions to obtain excellent groundwater than shallow aquifers do.
机译:由于长期干旱期间地表水有限,这项工作试图根据饮用水水质标准在台湾潮水河冲积扇中寻找干净安全的地下水。由于含水层中含有多种污染物,因此采用多元指示克里格法(MVIK)根据饮用水和原水质量标准将地下水中的多种污染物整合在一起,并探索空间不确定性。根据MVIK估计的概率,在四种治疗条件下确定了安全区-不治疗;铵态氮和铁去除;去除锰和砷;以及铵态氮,铁,锰和砷的去除。分析结果表明,由于铵态氮,铁,锰和/或砷的浓度较高,研究区域的地下水不宜用于未经任何处理的饮用水。去除铵态氮,铁,锰和砷后,约有81.9-94.9%的总面积可提取安全的地下水用于饮用。近端风机,中央中风机,南部中风机和北部地区是在处理后泵送安全地下水以饮用的绝佳场所。深度超过200 m的深层含水层比浅层含水层具有更宽的区域来获得优质的地下水。

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