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Effect of solvent types on structure and performance of polyethersulfone nanofiltration membrane in monovalent and divalent ions separation

机译:溶剂类型对一价和二价离子分离中聚醚砜纳滤膜结构和性能的影响

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摘要

membrane produced using NMP as the solvent followed by DMAc and lastly, DMF. This study indicated that solvent with higher boiling point (in this study, NMP has the highest boiling point) produced a desired NF in embrane with more finger-like structure. The diameters of pores in skin layer were measured by Steric-Hindrance Pore (SHP) and Teorell-Meyer-Sievers (TMS) model. The mean pore size of each produced membrane was about 1.28 ring 1.47 nm and 1.59 nm for AWP, DMAc and DMF respectively. The performances of the PES nanofiltration membranes were examined based an rejection and flux. Generally, the rejections of mono and divalent anions were identified to be within 29%-38%, and 81%-91% respectively. As predicted by the morphological structure, NMP solvent-membrane showed the best salt rejection for both monovalent and divalent ions as compared to DMAc and DMF. Hence, solvent was discovered to affect the morphological structure and consequently, improved the performance of the polyethersulfone nanofiltration membrane.
机译:NMP作为溶剂,接着是DMAc,最后是DMF,制成的膜。这项研究表明,沸点较高的溶剂(在本研究中,NMP的沸点最高)在具有更多指状结构的支链中产生了所需的NF。用Steric-Hindrance毛孔(SHP)和Teorell-Meyer-Sievers(TMS)模型测量皮肤层中毛孔的直径。对于AWP,DMAc和DMF,每个产生的膜的平均孔径分别为约1.28环,1.47nm和1.59nm。基于排斥和通量来检查PES纳滤膜的性能。通常,单价和二价阴离子的截留率分别确定在29%-38%和81%-91%之内。如形态结构所预测,与DMAc和DMF相比,NMP溶剂膜对一价和二价离子均表现出最佳的盐截留率。因此,发现溶剂影响了形态结构,并因此改善了聚醚砜纳米过滤膜的性能。

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