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首页> 外文期刊>Environmental Geology >Enrichment of fluoride in groundwater under the impact of saline water intrusion at the salt lake area of Yuncheng basin, northern China
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Enrichment of fluoride in groundwater under the impact of saline water intrusion at the salt lake area of Yuncheng basin, northern China

机译:运城盆地盐湖区咸水入侵影响下地下水中氟的富集

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摘要

Long-term intake of high-fluoride groundwater causes endemic fluorosis. This study, for the first time, discovered that the salt lake water intrusion into neighboring shallow aquifers might result in elevation of fluoride content of the groundwater. Two cross-sections along the groundwater flow paths were selected to study the geo-chemical processes controlling fluoride concentration in Yuncheng basin, northern China. There are two major reasons for the observed elevation of fluoride content: one is the direct contribution of the saline water; the other is the undersaturation of the groundwater with respect to fluorite due to salt water intrusion, which appears to be more important reason. The processes of the fluorine activity reduction and the change of Na/Ca ratio in groundwater induced by the intrusion of saline water favor further dissolution of fluorine-bearing mineral, and it was modeled using PHREEQC. With the increase in Na concentration (by adding NaCl or Na_2SO_4 as Na source, calcium content kept invariable), the increase of NaF concentration was rapid at first and then became slower; and the concentrations of HF, HF_2~-, CaF~+, and MgF~+ were continuously decreasing. The geochemical conditions in the study area are advantageous to the complexation of F~- with Na~+ and the decline of saturation index of CaF_2, regardless of the water type (Cl-Na or SO_4-Na type water).
机译:长期摄入高氟地下水会导致地方性氟中毒。这项研究首次发现盐湖水入侵附近的浅层含水层可能导致地下水中氟化物含量升高。选择了沿地下水流动路径的两个横截面,以研究控制华北运城盆地氟化物浓度的地球化学过程。观察到氟化物含量升高的主要原因有两个:一是盐水的直接作用;二是盐水的直接作用。另一个原因是由于盐水的入侵,地下水相对于萤石的饱和度不足,这似乎是更重要的原因。盐水入侵引起的地下水中氟活度降低和Na / Ca比值变化的过程有利于含氟矿物的进一步溶解,并用PHREEQC进行了建模。随着Na浓度的增加(通过添加NaCl或Na_2SO_4作为Na源,钙含量保持不变),NaF浓度的增加起初迅速,然后缓慢。 HF,​​HF_2〜-,CaF〜+和MgF〜+浓度不断降低。研究区的地球化学条件有利于F〜-与Na〜+的络合以及CaF_2饱和指数的降低,而与水的类型(Cl-Na或SO_4-Na型水)无关。

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