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Development and Characterization of New Pervaporation PVA Membranes for the Dehydration Using Bulk and Surface Modifications

机译:用散装和表面改性脱水新蜂鸟PVA膜的开发与表征

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摘要

In the present work, the novel dense and supported membranes based on polyvinyl alcohol (PVA) with improved transport properties were developed by bulk and surface modifications. Bulk modification included the blending of PVA with chitosan (CS) and the creation of a mixed-matrix membrane by introduction of fullerenol. This significantly altered the internal structure of PVA membrane, which led to an increase in permeability with high selectivity to water. Surface modification of the developed modified dense membranes, based on composites PVA-CS and PVA-fullerenol-CS, was performed through (i) making of a supported membrane with a thin selective composite layer and (ii) applying of the layer-by-layer assembly (LbL) method for coating of nano-sized polyelectrolyte (PEL) layers to increase the membrane productivity. The nature of polyelectrolyte type—(poly(allylamine hydrochloride) (PAH), poly(sodium 4-styrenesulfonate) (PSS), poly(acrylic acid) (PAA), CS), and number of PEL bilayers (2–10)—were studied. The structure of the composite membranes was investigated by FTIR, X-ray diffraction, and SEM. Transport properties were studied during the pervaporation separation of 80% isopropanol–20% water mixture. It was shown that supported membrane consisting of hybrid layer of PVA-fullerenol (5%)–chitosan (20%) with five polyelectrolyte bilayers (PSS, CS) deposited on it had the best transport properties.
机译:在目前的工作中,新颖的致密且基于聚乙烯醇(PVA)具有改进的传输性支持膜由本体和表面修饰显影。散装修改包括PVA的壳聚糖(CS)的混合和通过引入富勒醇的创建的混合基质膜的。此显著改变PVA膜,这导致以高选择性与水的通透性增加的内部结构。显影改性致密膜的表面改性,基于复合材料的PVA-CS和PVA-富勒-CS,通过在实施例(ⅰ)制备负载的膜具有薄的选择性的复合层和(ii)将所述的层逐为纳米尺寸的聚电解质(PEL)层涂布,以增加膜生产率层接合体(LBL)方法。聚电解质型 - 的性质(聚(烯丙胺盐酸盐)(PAH),聚(4-苯乙烯磺酸钠)(PSS),聚(丙烯酸)(PAA),CS),和数量PEL双层的(2-10) - 进行了研究。通过FTIR,X射线衍射和SEM的复合膜的结构进行了研究。 80%异丙醇-20%水混合物的全蒸发分离期间传输特性进行了研究。结果表明,由PVA-富勒(5%)的混合层的支撑膜 - 脱乙酰壳多糖(20%)与沉积在其上的聚电解质5个双层(PSS,CS)具有最好的传输特性。

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