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首页> 外文期刊>Environmental Science: Processes & Impacts >An isotope hydrochemical approach to understand fluoride release into groundwaters of the Datong Basin, Northern China
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An isotope hydrochemical approach to understand fluoride release into groundwaters of the Datong Basin, Northern China

机译:一种同位素水化学方法,了解中国北方大同盆地地下水中的氟化物释放

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The hydrogeochemical and isotopic investigations of high fluoride (up to 8.26 mg L-1) groundwater in the Datong Basin, Northern China were carried out in order to evaluate the geochemical controls on fluoride enrichment. The groundwater fluoride concentration tends to increase along with the regional groundwater flow path away from the basin margins, towards the central parts of the basin. Groundwater with high F concentrations has a distinctive major ion chemistry, being generally HCO3--rich, Na-rich, Ca-poor, and having weak alkaline pH values (7.2 to 8.2) and Na-HCO3 waters. These data indicate that variations in the groundwater major ion chemistry and possibly pH, which are controlled by water-rock interaction processes in the aquifer, are important in mobilizing F. Positive correlations between fluoride with lithogenic sodium (LNa) and HCO3- in groundwater show that the high fluoride content and alkaline sodic characteristics of groundwater result from dissolution of fluorine-bearing minerals. The occurrence and behavior of fluorine in groundwater are mainly controlled by fluorite precipitation as a function of Ca2+ concentration. A positive correlation between fluoride and delta O-18, low F-/Cl- ratios, and the low tritium level in the fluoride-rich groundwater indicate the effects of long-term water-rock interactions and intensive evapotranspiration.
机译:为了评估氟化物富集的地球化学控制方法,对中国北方大同盆地的高氟化物(高达8.26 mg L-1)地下水进行了水文地球化学和同位素研究。地下水氟化物浓度趋于随着区域地下水流路径从流域边缘向流域中部而增加。高F浓度的地下水具有独特的主要离子化学性质,通常富含HCO3,富含Na,贫Ca,碱性pH值较弱(7.2至8.2)和Na-HCO3。这些数据表明,地下水中主要离子化学变化以及可能的pH值受含水层中水-岩石相互作用过程的控制,对于动员F至关重要。氟化物与地下水中的岩性钠(LNa)和HCO3-之间呈正相关关系,表明地下水中的高氟含量和碱性碱特性是由于含氟矿物的溶解所致。氟在地下水中的发生和行为主要受萤石沉淀与Ca2 +浓度的关系控制。富含氟化物的地下水中氟化物与δO-18,低F- / Cl-比和低ium水平之间呈正相关关系,表明长期水-岩相互作用和密集的蒸散作用。

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