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Hydrogeochemistry of high-fluoride saline groundwater in the Yuncheng Basin, northern China

机译:运城盆地高氟盐渍地下水的水文地球化学

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The presence of saline groundwater has become one of the most acute problems for water resource management worldwide, since it causes deterioration in water quality and endangers future exploitation of groundwater resources. In addition, high levels of groundwater salinity are often associated with an increase in the concentrations of fluoride (F). Diverse mechanisms govern salts and fluoride enrichment in groundwater. In this case, saline groundwater with elevated fluoride (up to 14.1 mg/L) in the Yuncheng Basin (YB) was investigated. The research shows: (i) large-scale contamination of F in groundwater is closely associated with groundwater salinization processes in the area; (ii) groundwater with high F concentrations has distinctive major ion chemistry: Na-rich and Ca-poor with a high pH and HCO_(3)~(-)content. The major ion chemistry and pH are controlled by mineral dissolution, cation exchange, and evaporation in the aquifer systems which are also important for F mobilization.
机译:含盐地下水的存在已成为全球水资源管理中最严重的问题之一,因为它会导致水质恶化并危及未来对地下水资源的开采。另外,高水平的地下水盐度通常与氟化物(F)浓度的增加有关。地下水中盐分和氟化物富集的机制多种多样。在这种情况下,对运城盆地(YB)含氟量较高(最高为14.1 mg / L)的盐水进行了调查。研究表明:(i)地下水中F的大规模污染与该地区的地下水盐碱化过程密切相关; (ii)高F浓度的地下水具有独特的主要离子化学性质:富含Na和缺乏Ca的pH和HCO_(3)〜(-)含量高。离子的主要化学性质和pH值受含水层系统中矿物质的溶解,阳离子交换和蒸发的控制,这对于F的迁移也很重要。

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