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IMPACT OF GRAIN SCALE HETEROGENEITY ON SLOW SORPTION KINETICS

机译:谷物非均质性对慢速吸附动力学的影响

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Groundwater contamination by dissolved organic compounds frequently occurs in valley aquifers that consist of highly heterogeneous sand and gravel sediments. Remediation and risk assessment (e.g. reactive transport modeling) requires detailed information on the sorption/desorption kinetics in such aquifer materials. In this paper we present data on slow sorption kinetics of phenanthrene and the composition of several aquifer materials that are typical for southern Germany and Switzerland. The heterogeneity of the aquifer material is described in terms of the physical and chemical properties (e.g., grain size, organic carbon content intraparticle porosity, sorption parameters, and rate constants for intraparticle diffusion) of the sediment constituents (lithocomponents). Phenanthrene sorptive uptake in a heterogeneous bulk sample can be predicted using a numerical model only if the composition and geochemical heterogeneity (different sorptivities and porosities of the lithocomponents) are considered. It could be shown that even within a narrow grain size fraction, the geochemical heterogeneity has to be incorporated for the prediction of long-term sorptive uptake or release of organic contaminants.
机译:溶解有机物对地下水的污染经常发生在由高度不均匀的沙子和砾石沉积物组成的山谷含水层中。补救和风险评估(例如反应性运输模型)需要有关此类含水层材料中吸附/解吸动力学的详细信息。在本文中,我们介绍了菲的缓慢吸附动力学数据以及几种德国南部和瑞士典型的含水层材料的组成。含水层材料的非均质性是根据沉积物成分(岩性成分)的物理和化学性质(例如,粒度,有机碳含量的粒子内孔隙率,吸附参数和粒子内扩散的速率常数)来描述的。仅在考虑了组成和地球化学非均质性(岩石组分的不同吸附性和孔隙度)的情况下,才可以使用数值模型预测异质散装样品中的菲吸附量。可以证明,即使在狭窄的粒度范围内,也必须纳入地球化学异质性才能预测长期吸附性吸收或释放有机污染物。

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