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Arsenic in Glacial Aquifers: Sources and Geochemical Controls

机译:冰川含水层中的砷:来源和地球化学控制

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A total of 176 wells in sand-and-gravel glacial aquifers in central Illinois were sampled for arsenic (As) and other chemical parameters. The results were combined with archived and published data from several hundred well samples to determine potential sources of As and the potential geochemical controls on its solubility and mobility. There was considerable spatial variability in the As concentrations. High concentrations were confined to areas smaller than 1 km in diameter. Arsenic and well depth were uncorrelated. Arsenic solubility appeared to be controlled by oxidation-reduction (redox) conditions, especially the presence of organic matter. Geochemical conditions in the aquifers are typically reducing, but only in the most reducing water does As accumulate in solution. In wells in which total organic carbon (TOC) was below 2 mg/L and sulfate (SO_4~(2-)) was present, As concentrations were low or below the detection limit (0.5 μg/L). Arsenic concentrations > 10 μg/L were almost always found in wells where TOC was > 2 mg/L and SO_4~(2-) was absent or at low concentrations, indicating post-SO_4~(2-) reducing conditions. Iron (Fe) is common in the aquifer sediments, and Fe oxide reduction appears to be occurring throughout the aquifers. Arsenic is likely released from the solid phase as Fe oxide is reduced.
机译:在伊利诺伊州中部的砂砾石冰川含水层中,总共对176口井进行了采样,以测定砷(As)和其他化学参数。将结果与数百个井样品的已归档和已发布数据相结合,以确定潜在的砷来源以及其溶解度和迁移率的潜在地球化学控制方法。砷的浓度存在很大的空间变异性。高浓度被限制在直径小于1 km的区域。砷与井深无关。砷的溶解度似乎受到氧化还原(redox)条件的控制,尤其是有机物的存在。含水层中的地球化学条件通常在减少,但是只有在减少程度最大的水中,As才会在溶液中积累。在总有机碳(TOC)低于2 mg / L且存在硫酸盐(SO_4〜(2-))的孔中,As浓度低或低于检测极限(0.5μg/ L)。几乎总是在TOC> 2 mg / L而SO_4〜(2-)不存在或浓度较低的孔中发现砷浓度> 10μg/ L,这表明SO_4〜(2-)后的还原条件。铁(Fe)在含水层沉积物中很常见,并且在整个含水层中似乎都发生了Fe的还原。随着氧化铁的还原,砷可能从固相中释放出来。

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