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首页> 外文期刊>Journal of Molecular Liquids >Upgrading the performances of polysulfone/polyetherimide ultrafiltration composite membranes for dyes removal: Experimental and molecular dynamics studies
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Upgrading the performances of polysulfone/polyetherimide ultrafiltration composite membranes for dyes removal: Experimental and molecular dynamics studies

机译:提高多砜/聚醚酰亚胺超滤复合膜的染料去除性能:实验和分子动力学研究

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摘要

Organic dye pollutants released by textile industries pose a threat to public health and environmental quality. Hence, a greater emphasis is required for handling these toxic and non-biodegradable effluents. This paper reports on the performance of polysulfone (PSf)/polyetherimide (PEI) ultrafiltration (UF) composite membranes coated on polyester (PE) support by spin/spray-coating technique to remove reactive blue 171 (RB171) and Basic Red 1 (BR1) from water. Prepared composite membranes with polysulfone (PSf) and different PEI loading (25 wt% (CM25), 30 wt% (CM30), and 35wt% (CM35)) were initially characterized in terms of morphological, mechanical, wetting and water transport properties. Morphological characterization by SEM showed homogeneous and uniform distribution of PSf/PEI membrane layer on the polyester support. Results showed that composite membranes exhibited both enhanced pure water permeability (PWP) and improved dyes removal capacity. The composite membranes CM35 showed a PWP of 77.42 L/hm(2)bar, and rejection rates of 93.8% and 78.9% for RB171 and BR1, respectively. Molecular dynamics (MD) simulations indicated that simulated membranes hindered the diffusion of dyes inside layers. This study showed that the combination of polyester support and PSf/PEI membrane layers enabled the design of stable and highly efficient filtration membranes. (C) 2021 Elsevier B.V. All rights reserved.
机译:纺织工业释放的有机染料污染物对公众健康和环境质量构成威胁。因此,需要更加重视处理这些有毒和不可生物降解的废水。本文报道了用旋转/喷涂技术在聚酯(PE)载体上涂覆聚砜(PSf)/聚醚酰亚胺(PEI)超滤膜,以去除水中活性蓝171(RB171)和碱性红1(BR1)的性能。用聚砜(PSf)和不同PEI负载量(25 wt%(CM25)、30 wt%(CM30)和35 wt%(CM35))制备的复合膜最初在形态、机械、润湿和水传输性能方面进行了表征。扫描电镜(SEM)表征表明,PSf/PEI膜层在聚酯载体上分布均匀。结果表明,复合膜不仅提高了纯水渗透性(PWP),而且提高了染料去除能力。复合膜CM35的PWP为77.42 L/hm(2)bar,RB171和BR1的截留率分别为93.8%和78.9%。分子动力学(MD)模拟表明,模拟膜阻碍了染料在层内的扩散。这项研究表明,聚酯载体和PSf/PEI膜层的结合能够设计出稳定高效的过滤膜。(c)2021爱思唯尔B.V.保留所有权利。

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