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A NOVEL METHOD FOR FABRICATING COMPOSITE MOSAIC MEMBRANE WITH UNIQUE NF SELECTIVITY

机译:一种制备具有唯一NF选择性的复合马赛克膜的新方法

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摘要

A novel method of fabricating composite mosaic membranes was studied on the basis of interfacial polymerization (IP) by coating a thin selective layer onto the surface of a micro-porous hollow-fiber membrane, in which,2,5-diaminobenzene sulfonic acid was used as one monomer of the IP reaction, and a mixture of trimesoyl chloride(TMCI) and 4-(chloromethyl) benzoyl chloride as the other monomer. Through the IP reaction a thin selective layer with negatively charged groups could be first formed on the polyethersulfone (PES) support membrane. Then trimethylamine solution was introduced to modify the IP layer through a quaternization reaction. Thus the selective layer of this composite membrane contained both negatively charged and positively charged groups to perform the mosaic functionality.Characterization of the composite mosaic membranes was carried out through permeation experiments using different inorganic salts and dyes. The experimental results showed that the membranes could permeate both mono- and bi-valent inorganic salts, but reject larger organic molecules. Such a mosaic membrane is potentially useful for the separation of salts from water-soluble organics, especially in dye and textile industries.
机译:研究了一种在界面聚合(IP)的基础上,通过在微孔中空纤维膜表面涂覆一层薄选择层,制备复合镶嵌膜的新方法,其中使用了2,5-二氨基苯磺酸作为IP反应的一种单体,将均苯三甲酰氯(TMCI)和4-(氯甲基)苯甲酰氯的混合物作为另一种单体。通过IP反应,可以首先在聚醚砜(PES)支撑膜上形成带有负电荷基团的薄选择层。然后引入三甲胺溶液以通过季铵化反应改性IP层。因此,该复合膜的选择性层同时包含带负电和带正电的基团,以执行镶嵌功能。复合镶嵌膜的表征是通过使用不同的无机盐和染料的渗透实验进行的。实验结果表明,该膜既可以渗透一价和二价无机盐,又可以渗透较大的有机分子。这种镶嵌膜可用于将盐与水溶性有机物分离,特别是在染料和纺织工业中。

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