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Water sorption in poly(vinyl alcohol) membranes: An experimental and numerical study of solvent diffusion in a crosslinked polymer

机译:聚乙烯醇膜中的水吸附:溶剂在交联聚合物中扩散的实验和数值研究

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摘要

The development of reliable mathematical models for mass transport in crosslinked polymers and their thorough experimental validation are of substantial interest in the design of technical membrane processes or the assessment of polymer performance when applications such as functional films and protective coatings are concerned. The present study aims at the joint experimental and numerical characterisation of mass transport during water vapour sorption into physically crosslinked poly(vinyl alcohol) membranes. A mathematical model comprising both phase equilibrium and the respective mass transport mechanisms is proposed and verified by means of in situ sorption kinetic measurements. Drawing on the independent determination of equilibrium solvent uptake, the comparison of model calculations and experimental sorption data demonstrates that water transport in the crosslinked polymer membrane is successfully described by pure Fickian diffusion with a simple exponential expression for the solvent diffusion coefficient to account for its pronounced concentration dependency, allowing the latter to be specified quantitatively.
机译:当涉及功能性薄膜和保护性涂料等应用时,开发可靠的数学模型以进行交联聚合物的质量传输及其全面的实验验证,对膜技术的设计或聚合物性能的评估具有重大意义。本研究的目的是在水蒸气吸附到物理交联的聚乙烯醇膜中进行质量传递的联合实验和数值表征。提出并包括相平衡和相应的质量传输机制的数学模型,并通过原位吸附动力学测量进行了验证。通过独立确定平衡溶剂的吸收,模型计算和实验吸附数据的比较表明,纯的Fickian扩散成功地描述了交联聚合物膜中的水传输,并以简单的指数表达式表示了溶剂的扩散系数。浓度依赖性,可以定量指定后者。

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