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An acid functionalized MWCNT/PVP nanocomposite as a new additive for fabrication of an ultrafiltration membrane with improved antifouling resistance

机译:酸官能化的MWCNT / PVP纳米复合材料,作为用于制造具有改进的防污性能的超滤膜的新型添加剂

摘要

Membrane fouling is one of the main challenges encountered in ultrafiltration (UF) processes and the use of nanoparticles for the improvement of UF performance is a recent trend in membrane technology. In this study, in order to improve surface characteristics of polyethersulfone (PES)-based membranes for greater resistance against biofouling, PES was incorporated with a new type of nanocomposite (NC) in which the NC could be synthesized by blending acid functionalized multiwalled carbon nanotubes (f-MWCNT) with polyvinylpyrrolidone (PVP) in dimethylformamide (DMF). The chemistry of the NCs embedded within the PES membrane matrix was analysed by FTIR, whereas the fabricated membranes were characterized by FESEM, contact angle, water absorption tests, surface profile studies and their filtration performances with respect to pure water permeation, antifouling resistance against proteins and flux recovery rate. The results revealed that, compared to the pristine PES membrane, the antifouling ability of the PES membrane incorporated with f-MWCNT/PVP NC is greater, recording 81.7% flux recovery and 80.2% total resistance (>76% were reversible one). The protein separation results indicated that, the NCs based membrane was able to reject 93.4%, 74.7%, 59.4% and 28.5% for bovine serum albumin (66 kDa), pepsin (34.6 kDa), trypsin (20 kDa) and (14.6 kDa), respectively
机译:膜结垢是超滤(UF)过程中遇到的主要挑战之一,使用纳米颗粒改善UF性能是膜技术的最新趋势。在这项研究中,为了改善基于聚醚砜(PES)的膜的表面特性以增强对生物污损的抵抗力,PES与新型的纳米复合材料(NC)结合使用,其中可以通过混合酸官能化的多壁碳纳米管来合成NC (f-MWCNT)与二甲基甲酰胺(DMF)中的聚乙烯吡咯烷酮(PVP)结合使用。 FTIR分析了嵌入PES膜基质中的NCs的化学性质,而制成的膜则通过FESEM,接触角,吸水率测试,表面轮廓研究及其在纯水渗透,抗污垢性方面的过滤性能进行了表征。和焊剂回收率。结果表明,与原始的PES膜相比,掺有f-MWCNT / PVP NC的PES膜的防污能力更大,记录了81.7%的焊剂回收率和80.2%的总电阻(> 76%是可逆的)。蛋白质分离结果表明,基于NCs的膜能够拒收牛血清白蛋白(66 kDa),胃蛋白酶(34.6 kDa),胰蛋白酶(20 kDa)和(14.6 kDa)的93.4%,74.7%,59.4%和28.5%。 ), 分别

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