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首页> 外文期刊>Journal of Applied Polymer Science >Pervaporation separation of sodium alginate/chitosan polyelectrolyte complex composite membranes for the separation of water/alcohol mixtures: Characterization of the permeation behavior with molecular modeling techniques
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Pervaporation separation of sodium alginate/chitosan polyelectrolyte complex composite membranes for the separation of water/alcohol mixtures: Characterization of the permeation behavior with molecular modeling techniques

机译:用于分离水/醇混合物的藻酸钠/壳聚糖聚电解质复合电解质复合膜的全蒸发分离:通过分子建模技术表征渗透行为

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摘要

Polyelectrolyte complex (PEC) membranes were prepared by the complexation of protonated chitosan with sodium alginate doped on a porous, polysulfone-supporting membrane. The pervaporation characteristics of the membranes were investigated with various alcohol/ water mixtures. The physicochemical properties of the permeant molecules and polyion complex membranes were determined with molecular modeling methods, and the data from these methods were used to explain the permeation of water and alcohol molecules through the PEC membranes. The experimental results showed that the prepared PEC membranes had an excellent pervaporation performance in most aqueous alcohol Solutions and that the selectivity and permeability of the membranes depended on the molecular size, polarity, and hydrophilicity of the permeant alcohols. However, the aqueous methanol solutions showed a permeation behavior different from that of the other alcohol solutions. Methanol permeated the prepared PEC membranes more easily than water even though water molecules have stronger polarity and are smaller than methanol molecules. The experimental results are discussed from the point of view of the physical properties of the permeant molecules and the membranes in the permeation state. (c) 2006 Wiley Periodicals, Inc.
机译:聚电解质复合物(PEC)膜是通过将质子化脱乙酰壳多糖与掺杂在多孔聚砜支撑膜上的藻酸钠复合而制备的。用各种醇/水混合物研究了膜的全蒸发特性。通过分子建模方法确定了渗透分子和聚离子复合膜的理化性质,并将这些方法的数据用于解释水和醇分子通过PEC膜的渗透。实验结果表明,制备的PEC膜在大多数醇溶液中具有优异的渗透蒸发性能,且膜的选择性和渗透性取决于渗透醇的分子大小,极性和亲水性。但是,甲醇水溶液显示出与其他醇溶液不同的渗透行为。尽管水分子具有更强的极性并且比甲醇分子小,但甲醇比水更容易渗透到制备的PEC膜上。从渗透分子和处于渗透状态的膜的物理性质的角度讨论了实验结果。 (c)2006年Wiley Periodicals,Inc.

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