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首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Preparation and characterization of novel microporous ultrafiltration PES membranes using synthesized hydrophilic polysulfide-amide copolymer as an additive in the casting solution
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Preparation and characterization of novel microporous ultrafiltration PES membranes using synthesized hydrophilic polysulfide-amide copolymer as an additive in the casting solution

机译:以合成的亲水性多硫化物-酰胺共聚物为浇铸溶液的添加剂制备新型微孔超滤PES膜及其表征

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摘要

Novel asymmetric microporous polyethersulfone (PES)/polysulfide-amide (PSA) blended ultrafiltration membranes with superior properties were prepared using the phase inversion induced by immersion precipitation method. The hydrophilic PSA copolymer with nitro groups, thiazole rings, and thioether linkages was synthesized via phosphorylation polycondensation. Different concentrations of the copolymer were used in the PES casting solutions for improving membrane properties and the results were compared with polyvinyl pyrrolidone (PVP)/PES membrane. The presence of amide band, correlated with the stretching vibration of the carbonyl group and bending vibration of NH group on the ATR-FTIR spectra of the modified membranes confirmed the existence of PSA in the PES membrane structure. The cross-section SEM images showed that the membranes with lower skin layer thickness were formed by addition of PSA in the casting solution. Not only the pure water and BSA solution flux of the blended membranes were increased by enlarging PSA concentrations in the casting solutions up to 2% PSA, but also antifouling properties were improved. Comparing PSA with PVP additive showed that the PSA could improve membrane hydrophilicity, porosity, permeability and antifouling properties. However, the PVP has better performance in case of the porosity and the permeability improvement. Therefore, for coupling of the effect of these two additives, the membrane with 1 wt% PVP and 1 wt% PSA was prepared. The results showed that the prepared membrane had good solution flux with good antifouling properties. (C) 2016 Elsevier Inc. All rights reserved.
机译:利用浸没沉淀相转化法制备了性能优异的新型不对称微孔聚醚砜(PES)/聚硫酰胺(PSA)共混超滤膜。通过磷酸化缩聚反应合成具有硝基,噻唑环和硫醚键的亲水性PSA共聚物。在PES流延溶液中使用不同浓度的共聚物以改善膜性能,并将结果与​​聚乙烯吡咯烷酮(PVP)/ PES膜进行比较。在改性膜的ATR-FTIR光谱上,酰胺带的存在与羰基的拉伸振动和NH基的弯曲振动相关,证实了PES膜结构中存在PSA。截面SEM图像显示通过在流延溶液中添加PSA形成具有较低表皮层厚度的膜。通过将流延溶液中的PSA浓度提高至2%PSA,不仅可以提高混合膜的纯水和BSA溶液通量,而且还可以改善防污性能。将PSA与PVP添加剂进行比较表明,PSA可以改善膜的亲水性,孔隙率,渗透性和防污性能。然而,在孔隙率和渗透率提高的情况下,PVP具有更好的性能。因此,为了偶联这两种添加剂的作用,制备了具有1重量%的PVP和1重量%的PSA的膜。结果表明,制备的膜具有良好的溶液通量和良好的防污性能。 (C)2016 Elsevier Inc.保留所有权利。

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