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Modification of PSf/SPSf Blended Porous Support for Improving the Reverse Osmosis Performance of Aromatic Polyamide Thin Film Composite Membranes

机译:PSf / SPSf混合多孔载体的改性以提高芳族聚酰胺薄膜复合膜的反渗透性能

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摘要

In this study, modification of polysulfone (PSf)/sulfonated polysulfone (SPSf) blended porous ultrafiltration (UF) support membranes was proposed to improve the reverse osmosis (RO) performance of aromatic polyamide thin film composite (TFC) membranes. The synergistic effects of solvent, polymer concentration, and SPSf doping content in the casting solution were investigated systematically on the properties of both porous supports and RO membranes. SEM and AFM were combined to characterize the physical properties of the membranes, including surface pore natures (porosity, mean pore radius), surface morphology, and section structure. A contact angle meter was used to analyze the membrane surface hydrophilicity. Permeate experiments were carried out to evaluate the separation performances of the membranes. The results showed that the PSf/SPSf blended porous support modified with 6 wt % SPSf in the presence of DMF and 14 wt % PSf had higher porosity, bigger pore diameter, and a rougher and more hydrophilic surface, which was more beneficial for fabrication of a polyamide TFC membrane with favorable reverse osmosis performance. This modified PSf/SPSf support endowed the RO membrane with a more hydrophilic surface, higher water flux (about 1.2 times), as well as a slight increase in salt rejection than the nascent PSf support. In a word, this work provides a new facile method to improve the separation performance of polyamide TFC RO membranes via the modification of conventional PSf porous support with SPSf.
机译:在这项研究中,提出了改性聚砜(PSf)/磺化聚砜(SPSf)混合多孔超滤(UF)支撑膜的方法,以提高芳族聚酰胺薄膜复合材料(TFC)膜的反渗透(RO)性能。系统地研究了溶剂,聚合物浓度和流延溶液中SPSf掺杂含量对多孔载体和RO膜性能的协同作用。结合使用SEM和AFM表征膜的物理特性,包括表面孔隙性质(孔隙度,平均孔隙半径),表面形态和截面结构。接触角计用于分析膜表面亲水性。进行渗透实验以评估膜的分离性能。结果表明,在DMF和14 wt%PSf存在下,用6 wt%SPSf改性的PSf / SPSf共混多孔载体具有更高的孔隙率,更大的孔径和更粗糙,更具亲水性的表面,这对制备Pf / SPSf多孔载体更为有利。具有良好反渗透性能的聚酰胺TFC膜。与新生的PSf载体相比,这种改性的PSf / SPSf载体使RO膜具有更亲水的表面,更高的水通量(约1.2倍),并且除盐率略有提高。简而言之,这项工作提供了一种新的简便方法,通过对传统PSf多孔载体进行SPSf改性,可以改善聚酰胺TFC RO膜的分离性能。

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