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Variations of metal availability and bio-accessibility in water-logged soils with various metal contents: in vitro experiments

机译:不同金属含量的淹水土壤中金属有效性和生物有效性的变化:体外实验

摘要

Reducing conditions of submerged soils were simulated in laboratory experiments by keeping various soil samples from urban areas under an aqueous solution in sealed flasks for several lengths of time. A polluted soil from a different origin was also included for comparison. Metals dissolved at various times were determined, and availability and bio-accessibility of metals present in the solid phase were estimated. Although significant amounts of Fe and Mn were dissolved, other metals were released to the solution to a much lesser extent. This effect is attributed to the greater solubility of reduced forms of Fe and Mn, and the small amounts of other metals dissolved during water-logging were related with metals retained by, or occluded in, the reduced Fe or Mn compounds. The amounts of available and bio-accessible metals remaining in the solid phase were significantly increased by water-logging, particularly the latter form. Such increase of metal mobility is likely to favour metal leaching to the water table as well as the transfer of potentially toxic elements to humans during recreational activities.
机译:通过在实验室实验中模拟将淹没土壤的还原条件,将城市地区的各种土壤样品在密闭烧瓶中的水溶液中保存数段时间,以模拟这种情况。还包括来自不同来源的污染土壤以进行比较。确定在不同时间溶解的金属,并估计固相中存在的金属的可用性和生物可达性。尽管大量的Fe和Mn溶解了,但其他金属释放到溶液中的程度要小得多。这种作用归因于还原形式的Fe和Mn的溶解度更高,并且在浸水过程中溶解的少量其他金属与还原的Fe或Mn化合物保留或吸收的金属有关。通过浸水,特别是后一种形式,显着增加了固相中残留的可用金属和生物可利用金属的数量。金属迁移率的这种增加很可能会促进金属向地下水的浸出,以及在娱乐活动期间向人体转移潜在的有毒元素。

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