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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Effect of nanoboehmite/poly(ethylene glycol) on the performance and physiochemical attributes EPVC nano-composite membranes in protein separation
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Effect of nanoboehmite/poly(ethylene glycol) on the performance and physiochemical attributes EPVC nano-composite membranes in protein separation

机译:纳米硝基/聚(乙二醇)对EPVC纳米复合膜在蛋白质分离中的性能和理化物质

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The synergistic effect of nanoboehmite particles and various amounts of poly(ethylene glycol) (PEG 4000, 0-4 wt.%) as a pore-former agent on the characteristics, permeability and fouling resistance ability of the nanoboehmite/EPVC blended membranes has been investigated. Scanning electron microscopy (SEM), energy dispersive X-ray (EDX), atomic force microscopy (AFM) and water contact angle analyses were utilized to examine the morphology, surface roughness, nanoboehmite dispersion and surface hydrophilicity, respectively. By increasing the PEG content in the EPVC dope solution, hydrophilicity, porosity and pores diameter improved, leading to the performance promotion of the membranes. The pure water flux (PWF), flux recovery ratio (FRR) and bovine serum albumin (BSA) flux of the nanoboehmite/EPVC composite membrane improved by enhancing the PEG loading up to 2 wt.% and then they dropped at higher content of it. Anti-fouling ability of the mixed-matrix nanoboehmite/EPVC composite membrane including 2 wt.% of PEG had a dramatic growth (68.3%) relative to the pristine EPVC membrane. Moreover, all the membranes were able to reject BSA proteins more than 98%. The obtained results displayed that the influence of PEG concentration enhancement on the characteristics and efficiency of the EPVC and EPVC/nano-composite membrane was different. The addition of various amounts of PEG to the nano-composite membranes matrix has not unfavorably influenced the amount of BSA rejection and membrane structure. (C) 2020 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:纳米铁矿石颗粒的协同作用和各种量的聚(乙二醇)(PEG 4000,0-4重量%)作为孔前剂的纳米钛矿/ EPVC混纺膜的特性,渗透性和污垢耐药能力调查。扫描电子显微镜(SEM),能量色散X射线(EDX),原子力显微镜(AFM)和水接触角分析分别用于检查形态,表面粗糙度,纳米铁矿石分散体和表面亲水性。通过增加EPVC掺杂溶液中的PEG含量,改善亲水性,孔隙率和孔径,导致膜的性能促进。通过增强高达2重量%的PEG负荷加强纳米铝矿/ EPVC复合膜的纯水通量(PWF),助熔剂回收率(FRR)和牛血清白蛋白(BSA)通量改善了高达2重量%,然后在其较高含量下降。混合基质纳米硝基铝矿/ EPVC复合膜的抗污染能力,包括2重量%的PEG相对于原始EPVC膜的剧烈生长(68.3%)。此外,所有膜都能够拒绝超过98%的BSA蛋白。所得结果显示,PEG浓度提高对EPVC和EPVC /纳米复合膜的特性和效率的影响是不同的。将各种量的PEG加入纳米复合膜基质中的含有不利影响BSA排斥和膜结构的量。 (c)2020化学工程师机构。 elsevier b.v出版。保留所有权利。

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