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Geogenic arsenic and uranium in Germany: Large-scale distribution control in sediments and groundwater

机译:德国造环砷和铀:沉积物和地下水的大规模分配控制

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摘要

Arsenic (As) and uranium (U) are naturally occurring trace elements with potentially adverse effects on human health. This work revisits nine case studies on As/U accumulation and remobilization mechanisms in aquifers with different geological and stratigraphical backgrounds to develop a systematic overview of Germany's geo-genic inventory of these trace elements. It uses geochemical proxies for a total of 270 solid samples to explain their spatio-temporal distribution: while Pleistocene geological development can explain their extensive absence in sediments and related groundwater in northern Germany, their abundance and distribution in the central and southern parts are widely controlled by sediment provenance geochemistry. Only highly felsic origin (Moldanubian Variscides) enables creation of elevated U in the systems while lower degrees of provenance felsicity (Rhenohercynian Variscides) appear to be sufficient for As presence. Postdepositional (hydro)geological and anthropogenically triggered intra-basinal processes of trace element accumulation, redistribution and eventually remobilization to groundwater contribute to the present-day situation. Therefore, the ultimate control of these incompatible trace elements is magmatic, even in old sedimentary systems, and still clearly traceable in nowadays large-scale geogenic As and U distribution in Germany and probably elsewhere.
机译:砷(AS)和铀(U)天然存在于对人体健康的潜在不利影响的微量元素。这项工作重新审视了与不同地质和地层背景的含水层中的含量和重组机制的九个案例研究,以制定德国对这些微量元素的地理遗传清单的系统概述。它使用地球化学代理总共270个固体样品来解释它们的时空分布:虽然更新世地质发展可以解释其在德国北部的沉积物和相关地下水中的广泛缺席,中央和南部部分的丰富和分布被广泛控制通过沉积物来源地球化学。只有高度铰接的原点(Moldanubian Varicidides)可以在系统中创建升高的U,而较低的出处患者(rheNohercynian Variciacines)似乎足以作为存在。后审查(Hydro)地质和人为触发的痕量元素积累,再分配和最终对地下水的重新繁殖的地质和人为触发过程有助于当今的情况。因此,即使在旧的沉积系统中,这些不相容的微量元素的最终控制也是岩浆,并且在现在在德国和其他地方的大规模遗传和U分布中仍然可以清楚地追溯。

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