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Modeling of the solid-solution partitioning of heavy metals and arsenic in embanked flood plain soils of the rivers Rhine and Meuse

机译:莱茵河和默兹河大堤泛滥平原土壤中重金属和砷的固溶分配模型

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The aim of this study is to predict the solid-solution partitioning of heavy metals in river flood plain soils. We compared mechanistic geochemical modeling with a statistical approach. To characterize the heavy metal contamination of embanked river flood plain soils in The Netherlands, we collected 194 soil samples at 133 sites distributed in the Dutch part of the Rhine and Meuse river systems. We measured the total amounts of As, Cd, Cr, Cu, Ni, Pb, and Zn in the soil samples and the metal fraction extractable by 2.5 mM CaCl2. We found a strong correlation between heavy metal contamination and organic matter content, which was almost identical for both river systems. Speciation calculations by a fully parametrized model showed the strengths and weaknesses of the mechanistic approach. Cu and Cd concentrations were predicted within one log scale, whereas modeling of Zn and Pb needs adjustment of some model parameters. The statistical fitting approach produced better results but is limited with regard to the understanding it provides. The log RMSE for this approach varied between 0.2 and 0.32 for the different metals. The careful modeling of speciation and adsorption processes is a useful tool for the investigation and understanding of metal availability in river flood plain soils.
机译:这项研究的目的是预测河流泛滥平原土壤中重金属的固溶分配。我们将机械地球化学建模与统计方法进行了比较。为了表征荷兰河堤泛滥平原土壤的重金属污染,我们在莱茵河和默兹河系统荷兰部分分布的133个地点收集了194个土壤样品。我们测量了土壤样品中砷,镉,铬,铜,镍,铅和锌的总量,以及可通过2.5 mM CaCl2萃取的金属部分。我们发现重金属污染与有机质含量之间存在很强的相关性,这两种河流系统几乎都相同。通过完全参数化的模型进行的形态计算显示了机械方法的优点和缺点。铜和镉的浓度预计在一个对数刻度内,而锌和铅的建模则需要调整一些模型参数。统计拟合方法产生了更好的结果,但是在其提供的理解方面受到限制。对于不同的金属,此方法的对数RMSE在0.2和0.32之间变化。对形态和吸附过程的仔细建模是研究和了解河洪平原土壤中金属有效性的有用工具。

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