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基于传质方程对非平衡条件下的溶质输运进行建模。

Modelling the solute transport under nonequilibrium conditions on the basis of mass transfer equations.

作者信息

Worch Eckhard

机构信息

Institute of Water Chemistry, Dresden University of Technology, D-01062, Dresden, Germany.

出版信息

J Contam Hydrol. 2004 Jan;68(1-2):97-120. doi: 10.1016/S0169-7722(03)00091-3.

Abstract

A solute transport model that describes nonequilibrium adsorption in soil/groundwater systems by mass transfer equations for film and intraparticle diffusion is presented. The model is useful in cases where breakthrough curve spreading cannot be explained by dispersion only. To evaluate its validity, the model was applied to several data sets from column experiments. The validity was also proved by a comparison with an analytical solution for the limiting case of predominating dispersion. Furthermore, a sensitivity analysis was performed to illustrate the influence of different process and sorption parameters (pore water velocity, intraparticle mass transfer coefficient, isotherm nonlinearity) on the shape of the calculated breakthrough curves. The application of the proposed model is discussed in comparison to the widely used dispersed flow/local equilibrium model, and a relationship between both models, which is based on a lumped parameter approach, is shown.

摘要

提出了一种溶质运移模型,该模型通过薄膜和颗粒内扩散的传质方程来描述土壤/地下水系统中的非平衡吸附。该模型适用于仅用弥散无法解释穿透曲线展宽的情况。为评估其有效性,将该模型应用于多个柱实验数据集。通过与主导弥散极限情况的解析解进行比较,也证明了其有效性。此外,进行了敏感性分析,以说明不同过程和吸附参数(孔隙水速度、颗粒内传质系数、等温线非线性)对计算出的穿透曲线形状的影响。与广泛使用的弥散流/局部平衡模型相比,讨论了所提出模型的应用,并展示了基于集总参数方法的两种模型之间的关系。

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