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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Green Design of Poly(m-Phenylene Isophthalamide)-Based Thin-Film Composite Membranes for Organic Solvent Nanofiltration and Concentrating Lecithin in Hexane
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Green Design of Poly(m-Phenylene Isophthalamide)-Based Thin-Film Composite Membranes for Organic Solvent Nanofiltration and Concentrating Lecithin in Hexane

机译:聚(M-亚苯基苯甲酸苯甲酰胺)的绿色设计 - 基于己烷的有机溶剂纳滤和浓缩卵磷脂的薄膜复合膜。

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摘要

A green method to fabricate poly(m-phenylene isophthalamide) (PMIA) based thin-film composite membranes has been developed for organic solvent nanofiltration (OSN). For the first time, the porous PMIA membrane substrates are cast from dope solutions prepared by an environmentally benign ionic liquid and the thin-film selective layer is synthesized on top of the glutaraldehyde (GA) modified PMIA substrate (mPMIA) via imine condensation between hyper-branched polyethylenimine (HPEI) using water as the reaction media. Experimental results show that both HPEI and GA concentrations play important roles in controlling the thickness and free volume properties of the selective layer, and thus influence the OSN separation performance significantly. The newly designed composite membranes have an ethanol permeance varying from 3.2 to 21.4 LMH/bar while the corresponding MWCO value changing from 470 to 730 Da when both HPEI and GA concentrations reduce from 1 to 0.5 wt %. In summary, the newly fabricated membranes not only possess satisfactory permeances for solvents like methanol, ethanol, acetonitrile, and hexane but also have good separation performance for concentrating lecithin in hexane, which is in great demand by the food industry. Therefore, this work may offer a green and sustainable method to design environmentally benign composite membranes for OSN.
机译:为有机溶剂纳米滤波(OSN)开发了一种用于制造聚(M-亚苯基苯甲酰胺)(PMIA)的薄膜复合膜的绿色方法。首次,多孔PMIA膜底物由环境良性离子液体制备的掺杂溶液中浇铸,并且通过HEAD之间的亚胺缩合在戊二醛(GA)改性的PMIA底物(MPMIA)的顶部合成薄膜选择层。 - 使用水作为反应介质的氯己烯菊(HPEI)。实验结果表明,HPEI和GA浓度均在控制选择层的厚度和自由体积中起重要作用,从而显着影响OSN分离性能。新设计的复合膜的乙醇渗透率从3.2到21.4 LMH /棒变化,而当HPEI和GA浓度都从1到0.5wt%减少时,相应的MWCO值从470到730 DA变化。总之,新制造的膜不仅具有甲醇,乙醇,乙腈和己烷等溶剂的令人满意的渗透性,而且还具有良好的分离性能,用于浓缩己烷中的卵磷脂,这是食品工业的大量需求。因此,这项工作可以提供绿色和可持续的方法来设计OSN的环境良性复合膜。

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