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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Partitioning and reactivity of iron oxide minerals in aquifer sediments hosting high arsenic groundwater from the Hetao basin, P. R. China
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Partitioning and reactivity of iron oxide minerals in aquifer sediments hosting high arsenic groundwater from the Hetao basin, P. R. China

机译:Hetao Bourin,P. R.China的含水层沉积物中含氧化铁矿物沉积物氧化铁矿物的分区及反应性

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High arsenic (As) groundwater has been widely found in the Yellow River catchment, which has posed potential risks on health of local residents. However, it is still unknown how fractions and reactivity of Fe-bearing minerals control As mobility in groundwater system. As a typical basin in the catchment, the Hetao basin was selected as the study area to investigate roles of fractions and reactivity of Fe-bearing minerals in groundwater As. Seventy sediment samples and eight groundwater samples were collected in a representative borehole in the basin. Sequential extraction and kinetic experiment were carried out to characterize fractions and reactivity of Fe-bearing minerals, respectively. Results showed that groundwater in shallow zone (between 10 and 36m depths) had lower ORP values and higher As concentrations (average= 279 mu g/L) than deep zone (average= 158 mu g/L). In shallow zone, the predominant reactive Fe phase was reducible oxides (Fe-ox2), while in deep zone it was carbonate associated Fe (Fe-carb). Fe-ox2 had the highest amounts of As and As/Fe ratios, followed by Fe-carb and easily reducible oxides (Fe-ox1). Moreover, As/Fe ratios in Fe-ox2 had the best correlation with As/Fe ratios in groundwater. The largest partition coefficients were obtained between As in Fe-ox2 and groundwater As (Kd-ox2). Kinetic experiments showed that sediments having higher reactivity (k') and heterogeneity (gamma) had higher As/Fe ratios. Reactivity of sediment samples fell into the range between synthetic lepidocrocite and poorly crystalline goethite. Arsenic partition coefficients between reactive minerals and groundwater (Kd-reac) showed a positive correlation with ORP values, indicating that reductive dissolution of Fe(III) oxides played the important role in As mobilization. Therefore, reducing conditions, high k', gamma and Fe-ox2 contents in sediments led to high As concentrations in groundwater.
机译:高砷(AS)地下水已被广泛发现在黄河集水区,这对当地居民的健康产生了潜在的风险。然而,仍然未知Fe-upposit矿物控制作为地下水系统中的移动性的分数和反应性。作为集水区内的典型盆地,选择了Hetao盆地作为研究区域,以研究地下水中Fe承载矿物的级分和反应性的作用。在盆地的代表性钻孔中收集七十沉积物样品和八个地下水样品。序贯提取和动力学实验进行了分别表征Fe承载矿物的馏分和反应性。结果表明,浅区(10至36米深度)的地下水具有较低的ORP值,浓度高于深区(平均=158μg/ L)。在浅区中,主要的反应性Fe相是可还原氧化物(Fe-OX2),而在深处的碳酸酯相关Fe(Fe-Carb)中。 Fe-Ox2具有最多的AS和AS / Fe比率,其次是Fe-Carb和易于可降低的氧化物(Fe-Ox1)。此外,Fe-OX2中的AS / Fe率与地下水中的AS / Fe比具有最佳相关性。在Fe-Ox2和地下水中获得最大分隔层系数(KD-OX2)。动力学实验表明,具有较高反应性(K')和异质性(γ)的沉积物具有较高的AS / Fe比率。沉积物样品的反应性落入了合成鳞片和结晶术的粘稠性粘合剂之间的范围。反应性矿物质和地下水(KD-REAC)之间的砷分配系数显示出与ORP值的正相关,表明Fe(III)氧化物的还原溶解在动员中起重要作用。因此,降低条件,高k',γ和Fe-ox2含量在沉积物中导致了地下水中的浓度高。

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