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Mobilization of arsenic, lead, and mercury under conditions of sea water intrusion and road deicing salt application

机译:在海水入侵和道路除冰盐施用条件下动员砷,铅和汞

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Water geochemistry data from complexly designed salt-solution injection experiments in the laboratory, coastal aquifers of Bangladesh and Italy, taken from the literature, and two salted watersheds of New Jersey, US were collected and analyzed to study the geochemical mechanisms that mobilize As, Pb, and Hg under varied salting conditions. Overall, increased NaCl-concentrations in aquifers and soil are found to increase the release of Pb and Hg into the water. Reducing environments and possible soil dispersion by hydrated Na+ are found to lead to an increase of As-concentration in water. However, the application of a pure NaCl salt solution in the column injection experiment was found to release less As, Pb, and Hg initially from the soil and delay their concentration increase, when compared to the application of CaCl2 and NaCl mixed salts (at 6:4 weight ratio). The concentration correlation dendrogram statistical analyses of the experimental and field data suggest that the release of As, Hg, and Pb into groundwater and the soil solution depends not only on the salt level and content, but also on the redox condition, dissolved organic matter contents, competitiveness of other ions for exchange sites, and source minerals. With the ongoing over-exploration of coastal aquifers from increased pumping, continued sea-level rise, and increased winter deicing salt applications in salted watersheds of many inland regions, the results of this study will help understand the complex relation between the concentrations of As, Pb, and Hg and increased salt level in a coastal aquifer and in soils of a salted watershed. (C) 2015 Elsevier B.V. All rights reserved.
机译:收集并分析了实验室中复杂设计的盐溶液注入实验,孟加拉国和意大利的沿海含水层以及美国新泽西州的两个咸水流域中复杂的水地球化学数据,以研究动员As,Pb的地球化学机制。 ,以及在各种盐渍条件下的汞含量。总体而言,发现含水层和土壤中NaCl浓度的增加会增加Pb和Hg向水中的释放。发现减少环境和水合Na +可能引起的土壤分散会导致水中As浓度的增加。然而,与使用CaCl2和NaCl混合盐相比,在纯净的NaCl盐溶液中进行柱注入实验时,发现最初从土壤中释放出较少的As,Pb和Hg,并延迟了其浓度增加。 :4重量比)。实验和现场数据的浓度相关树状图统计分析表明,砷,汞和铅向地下水和土壤溶液中的释放不仅取决于盐的含量和含量,还取决于氧化还原条件,溶解有机物的含量,其他离子对于交换位点的竞争力以及来源矿物质。随着抽水量的增加,海平面的持续上升以及许多内陆地区盐渍流域冬季除冰盐用量的增加,对沿海含水层的过度开发正在进行,这项研究的结果将有助于理解As浓度之间的复杂关系,沿海含水层和盐分流域土壤中的Pb,Hg和盐分升高。 (C)2015 Elsevier B.V.保留所有权利。

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