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Poly(vinyl alcohol) multilayer mixed matrix membranes for the dehydration of ethanol-water mixture

机译:用于乙醇-水混合物脱水的聚乙烯醇多层混合基质膜

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We have developed multilayer mixed matrix membranes (MMMMs) consisting of a selective mixed matrix membrane (MMM) top layer, a porous poly(acrylonitrile-co-methyl acrylate) [poly(AN-co-MA)] intermediate layer and a polyphenylene sulfide (PPS) nonwoven fabrics substrate. The selective MMM layer was formed by incorporating KA zeolite in poly(vinyl alcohol) (PVA) matrix followed by the cross-linking reaction of PVA with fumaric acid. The fumaric acid induced cross-linking reactions were confirmed by Fourier-transformation infrared (FTIR), and their effects on PVA thermal stability and glass transition temperature were characterized by thermolgravimetric analysis (TGA) and differential scanning calorimetry (DSC). The separation performance of the newly developed MMMMs was investigated in terms of permeance and selectivity (as well as flux and separation factor) with respect to zeolite content, feed temperature and composition for the ethanol-water separation by pervaporation. It is found that the separation performance of the MMMM is superior to that of multilayer homogenous membranes (MHM) containing no zeolite. For example, the MMMM with 20 wt.% KA zeolite loading exhibits a much higher selectivity than that of MHM (1279 versus 511) at 60 degrees C if the feed is a mixture of 80/20 (wt.%) ethanol/water. In addition, the activation energy of the water permeation is significantly reduced from 16.22 to 10.12 kJ/mol after adding of KA zeolite into the PVA matrix, indicating that water molecules require a much less energy to transport through the MMMM because the presence of hydrophilic channels in the framework of zeolite. The excellent pervaporation performance of the MMMM is also resulted from the good contact between zeolite-incorporated and polymer matrix cross-linked by fumaric acid. (c) 2005 Elsevier B.V. All rights reserved.
机译:我们已经开发出多层混合基质膜(MMMMs),包括选择性混合基质膜(MMM)顶层,多孔聚(丙烯腈-丙烯酸甲酯)[poly(AN-co-MA)]中间层和聚苯硫醚(PPS)无纺布基材。通过将KA沸石掺入聚乙烯醇(PVA)基质中,然后使PVA与富马酸发生交联反应,形成选择性MMM层。富马酸诱导的交联反应已通过傅立叶变换红外光谱(FTIR)得以证实,并通过热重分析(TGA)和差示扫描量热法(DSC)表征了它们对PVA热稳定性和玻璃化转变温度的影响。从渗透率和选择性(以及通量和分离因子)方面,针对沸石含量,进料温度和通过全蒸发分离乙醇-水的组成,研究了新开发的MMMM的分离性能。发现MMMM的分离性能优于不包含沸石的多层均质膜(MHM)的分离性能。例如,如果进料为80/20(重量%)乙醇/水的混合物,则在20℃下具有20重量%的KA沸石负载量的MMMM表现出比MHM(1279对511)更高的选择性。此外,在将KA沸石添加到PVA基质中之后,水渗透的活化能从16.22 kJ / mol显着降低到10.12 kJ / mol,这表明水分子通过MMMM传输所需的能量要少得多,因为存在亲水通道在沸石的框架内。 MMMM的出色的全蒸发性能也归因于掺入沸石的分子与富马酸交联的聚合物基质之间的良好接触。 (c)2005 Elsevier B.V.保留所有权利。

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