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Application of inverse geochemical modelling for predicting surface water chemistry in Ekbatan watershed, Hamedan, western Iran

机译:逆地球化学模型在预测伊朗西部哈米丹Ekbatan流域地表水化学中的应用

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A study of surface water chemistry evolution was conducted by multivariate statistical analysis and inverse geochemical modelling using the PHREEQC computer program. Using hierarchical cluster analysis the 14 sampling sites were classified into three groups (recharge, transition and discharge areas). Water chemistry changed along a flow path so that waters with Ca-HCO3 and Mg-Cl composition changed to Mg-Cl-HCO3 waters. The order of abundance of the major cations was Mg > Ca > Na > K. Their average concentrations were 21, 19, 3.6 and 2.5 mg L-1, respectively. Inverse geochemical modelling along flow paths indicated that the dissolution of sylvite and kaolinite, and precipitation of feldspars and andalusite, happened with Na entering the solution and Ca, Mg and K leaving the solution.
机译:使用PHREEQC计算机程序通过多元统计分析和逆地球化学建模进行了地表水化学演化的研究。使用分层聚类分析,将14个采样点分为三组(补给区,过渡区和出水区)。水的化学性质沿流路变化,因此具有Ca-HCO3和Mg-Cl成分的水变为Mg-Cl-HCO3水。主要阳离子的丰度顺序为Mg> Ca> Na>K。它们的平均浓度分别为21、19、3.6和2.5 mg L-1。沿流径的反地球化学模型表明,钾盐和高岭石的溶解以及长石和红柱石的沉淀发生在Na进入溶液而Ca,Mg和K离开溶液的情况下。

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