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Iron Oxides As Geochemical Nanovectors For Metal Transport In Soil-river Systems

机译:氧化铁作为地球化学纳米载体,用于土壤-河流系统中的金属运输

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摘要

Topsoils are often contaminated by trace metals, and it is important to understand how different processes govern the transport of such metals to fresh and marine waters. This paper presents measurements of natural nanoparticles and colloidal organic matter in soil and river samples from Germany and Sweden. In our analytical approach, a nanoparticle separation technique is combined with multielement detection and applied to soil and river samples to link the macroscale field observations with detailed molecular studies in the laboratory. It was determined that lead is associated with iron oxide colloids, which are ubiquitous nanoparticles that can be efficiently transported. Eventually both iron oxides and lead are removed by flocculation under conditions of estuarine mixing. Iron-rich nanoparticles compete efficiently with natural organic matter (NOM) complexation for lead binding in both the soil and river systems studied.
机译:表土常常被微量金属污染,重要的是要了解不同的过程如何控制这些金属向淡水和海水的运输。本文介绍了来自德国和瑞典的土壤和河流样品中天然纳米颗粒和胶态有机物的测量结果。在我们的分析方法中,纳米颗粒分离技术与多元素检测相结合,并应用于土壤和河流样品,以将宏观现场观察与实验室中详细的分子研究联系起来。已确定铅与氧化铁胶体有关,氧化铁胶体是可以有效运输的普遍存在的纳米粒子。最终,在河口混合的条件下,通过絮凝去除了氧化铁和铅。富铁的纳米颗粒可与天然有机物(NOM)络合物有效竞争,以研究土壤和河流系统中的铅。

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