醋酸纤维素/蒙脱土复合材料的结构与输运性能

IF 2 Q4 CHEMISTRY, PHYSICAL
G. A. Polotskaya, I. S. Kuryndin, N. N. Saprykina, S. V. Bronnikov
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引用次数: 0

摘要

在天然材料、醋酸纤维素和蒙脱土的基础上,制备了含有高达5 wt %蒙脱土纳米颗粒的复合材料,并制备了薄膜。用扫描电镜研究了膜的形态特征。研究了甲醇-甲基叔丁基醚(MTBE)混合物分离过程中膜的输运特性。测定了甲醇和MTBE在膜内的吸附平衡度和扩散系数。研究了甲醇-甲基叔丁基醚混合物在包括共沸点在内的广泛进料组成中的渗透蒸发。发现含3% MMT的膜的最佳分离因子与高通量相结合。对膜在单轴拉伸下的变形行为进行了研究,结果表明膜具有良好的力学性能,弹性模量随MMT含量的增加而增加,而强度略有下降。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Structure and Transport Properties of Cellulose Acetate/Montmorillonite Composites

Structure and Transport Properties of Cellulose Acetate/Montmorillonite Composites

Composites containing up to 5 wt % montmorillonite (MMT) nanoparticles are created based on natural materials, cellulose acetate and MMT, and film membranes are prepared. The characteristic features of the membrane morphology are studied by scanning electron microscopy. The transport properties of the membranes are studied for the process of separation of a methanol–methyl tert-butyl ether (MTBE) mixture. The degree of equilibrium sorption and diffusion coefficients of methanol and MTBE in the membranes are determined. The pervaporation of a methanol–MTBE mixture is studied in a wide range of feed compositions including the azeotropic point. The best separation factor combined with a high flux is found for a membrane containing 3% MMT. The study of the deformation behavior of the membranes under uniaxial tension shows that they have good mechanical properties, and the elastic modulus increases with the increase in the MMT content while the strength slightly decreases.

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来源期刊
CiteScore
3.10
自引率
31.20%
发文量
38
期刊介绍: The journal Membranes and Membrane Technologies publishes original research articles and reviews devoted to scientific research and technological advancements in the field of membranes and membrane technologies, including the following main topics:novel membrane materials and creation of highly efficient polymeric and inorganic membranes;hybrid membranes, nanocomposites, and nanostructured membranes;aqueous and nonaqueous filtration processes (micro-, ultra-, and nanofiltration; reverse osmosis);gas separation;electromembrane processes and fuel cells;membrane pervaporation and membrane distillation;membrane catalysis and membrane reactors;water desalination and wastewater treatment;hybrid membrane processes;membrane sensors;membrane extraction and membrane emulsification;mathematical simulation of porous structures and membrane separation processes;membrane characterization;membrane technologies in industry (energy, mineral extraction, pharmaceutics and medicine, chemistry and petroleum chemistry, food industry, and others);membranes and protection of environment (“green chemistry”).The journal has been published in Russian already for several years, English translations of the content used to be integrated in the journal Petroleum Chemistry. This journal is a split off with additional topics.
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