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作为合成和天然屏障的具有不同亲水性的多孔聚合物膜的水蒸气渗透性

Water Vapor Permeability through Porous Polymeric Membranes with Various Hydrophilicity as Synthetic and Natural Barriers.

作者信息

Anatoly Chalykh, Pavel Zolotarev, Tatiana Chalykh, Alexei Rubtsov, Svetlana Zolotova

机构信息

Frumkin Institute of Physical Chemistry and Electrochemistry of Russian Academy of Sciences, Leninsky Prospect, 31, bldg. 4, Moscow 119071, Russia.

Department of Commodity Science and Expertise, Plekhanov Russian University of Economics, Stremyanny per. 36, Moscow 117997, Russia.

出版信息

Polymers (Basel). 2020 Feb 1;12(2):282. doi: 10.3390/polym12020282.

Abstract

The article is devoted to the analysis of sorption kinetics, permeability, and diffusion of water vapor in porous polymeric membranes of different hydrophilicities and through-porosities. The water transport measurement with a constant gradient of partial pressure allows the authors to obtain reliable characteristics for porous membranes, films, artificial leathers, and fabrics of various chemical natures (synthetic and bio-based) and phase structures. All the kinetic permeability curves were determined and effective diffusion coefficients, as well as their apparent activation energies, were calculated at the stationary and non-stationary stages of the mass transfer. The relationship between the sorption-diffusion characteristics of the polymer barriers and their vapor permeability is traced. Within the framework of a Zolotarev-Dubinin dual dispersive model, an analytical equation is obtained that relates permeability to diffusion coefficients of water vapor in the pore volume, polymer skeleton material using such characteristics as porosity and the solubility coefficient. It is proposed to use this equation to predict the sorption properties for barrier and porous materials of complex architecture specifically in food packaging.

摘要

本文致力于分析不同亲水性和通孔率的多孔聚合物膜中水蒸气的吸附动力学、渗透性和扩散情况。通过在恒定分压梯度下进行水传输测量,作者能够获得各种化学性质(合成和生物基)及相结构的多孔膜、薄膜、人造皮革和织物的可靠特性。测定了所有动力学渗透曲线,并计算了传质稳态和非稳态阶段的有效扩散系数及其表观活化能。追踪了聚合物阻隔材料的吸附 - 扩散特性与其透气率之间的关系。在佐洛塔廖夫 - 杜比宁双分散模型框架内,得到了一个解析方程,该方程利用孔隙率和溶解度系数等特性将透气率与孔体积中水蒸气的扩散系数、聚合物骨架材料联系起来。建议使用此方程来预测复杂结构的阻隔和多孔材料的吸附性能,特别是在食品包装领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/040a/7077464/bb4624de09e1/polymers-12-00282-g001.jpg

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