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Donnan equilibrium and dielectric exclusion for characterization of nanofiltration membranes

机译:Donnan平衡和介电排斥用于表征纳滤膜

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摘要

Experimental and modelling analysis is presented for characterization of polymeric nanofiltration membranes; the application considered is the separation of aqueous mixtures containing strong electrolytes and/or uncharged solutes. Mass transfer through the membrane is based on the extended Nernst―Planck equation; ion partitioning is described at the interfaces between the membrane and the external solution taking into account of steric hindrance, Donnan equilibrium and dielectric exclusion. The membrane is characterized through the pore radius, the charge density and the membrane thickness. Weak simplifications are introduced into the general model to obtain analytical relationships for the salt rejection, as well as for the ion concentration profile, as a function of membrane parameters and operative conditions. Model predictions are successfully compared with experimental data for all the mixtures investigated. Dielectric exclusion phenomenon is relevant with respect to Donnan equilibrium in determining the rejection of bivalent ions.
机译:进行了实验和模型分析,以表征聚合物纳米过滤膜;所考虑的应用是分离含有强电解质和/或不带电溶质的含水混合物。通过膜的传质是基于扩展的能斯特-普朗克方程。考虑到空间位阻,唐南平衡和介电排斥,在膜与外部溶液之间的界面处描述了离子分配。该膜通过孔半径,电荷密度和膜厚度来表征。将弱简化方法引入到通用模型中,以得到与脱盐率以及离子浓度曲线有关的分析关系,这些关系是膜参数和操作条件的函数。模型预测已成功与所有研究混合物的实验数据进行了比较。介电排斥现象与Donnan平衡有关,决定了二价离子的排斥。

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