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Coupled series-parallel resistance model for transport of solvent through inorganic nanofiltration membranes

机译:溶剂通过无机纳滤膜的串联-并联耦合耦合模型

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摘要

In this work, permeation of a number of different classes of solvents through commercial TiO2 and ZrO2 ceramic nanofiltration membranes was measured. A wide variety in permeate flux levels were observed. Solvent permeation was found to be a function of solvent characteristics (viscosity, surface tension, effective molecular diameter and dielectric constant) along with membrane characteristics (surface tension, average pore size diameter and dielectric constant). This paper also presents a new mathematical model based on parallel convection-diffusion theory which relates permeation of solvent molecules to three different resistances in the surface and the main body of the membrane. Transport resistances are defined by easily measurable solvent and membrane properties as indicated above. The model was tested on a series of permeability experiments of water, acetonitrile, methanol, methyl ethyl ketone, ethylacetate, ethanol, tetrahydrofuran, 1 -propanol, 1 -butanol, toluene, cyclohexane and n-hexane, carried out with HITK275 and HITK2750 membranes (Inoceramic, Germany). Compared to the existing models, which are able to make predictions only for a given class of solvents (polar or apolar), the new model can surprisingly fit the results of the permeation study for all solvent classes, and even for water. The maximum deviation from experimental results was calculated as 4.8%.
机译:在这项工作中,测量了许多不同类别的溶剂通过商用TiO2和ZrO2陶瓷纳米过滤膜的渗透。观察到各种各样的渗透通量水平。发现溶剂渗透是溶剂特性(粘度,表面张力,有效分子直径和介电常数)与膜特性(表面张力,平均孔径直径和介电常数)的函数。本文还提出了一种基于平行对流扩散理论的新数学模型,该模型将溶剂分子的渗透与膜表面和膜主体中的三个不同电阻联系起来。输送阻力由如上所述的易于测量的溶剂和膜的性质定义。使用HITK275和HITK2750膜对水,乙腈,甲醇,甲乙酮,乙酸乙酯,乙醇,四氢呋喃,1-丙醇,1-丁醇,甲苯,环己烷和正己烷进行了一系列渗透性实验,对模型进行了测试。 (德国Inoceramic)。与仅能对给定类别的溶剂(极性或非极性)做出预测的现有模型相比,新模型出人意料地适合所有溶剂类型甚至水的渗透研究结果。与实验结果的最大偏差被计算为4.8%。

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