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Ultrafiltration membrane for effective removal of chromium ions from potable water

机译:超滤膜可有效去除饮用水中的铬离子

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摘要

The objective of the present work was to investigate the efficacy of indigenously developed polyacrylonitrile (PAN) based ultrafiltration (UF) membrane for chromium ions removal from potable water. The hydrolyzed PAN membranes effectively rejected chromium anions in the feed ranging from 250 ppb to 400 ppm and a rejection of ≥90% was achieved for pH ≥ 7 at low chromate concentration (≤25 ppm) in feed. The rejection mechanism of chromium ions was strongly dependent on Donnan exclusion principle, while size exclusion principle for UF did not play a major role on ions rejection. Feed pH played a vital role in changing porosity of membrane, which influenced the retention behavior of chromate ions. Cross-flow velocity, pressure did not play significant role for ions rejection at low feed concentration. However, at higher feed concentration (≥400 ppm), concentration polarization became important and it reduced the chromate rejection to 32% at low cross flow and high pressure. Donnan steric-partitioning pore and dielectric exclusion model (DSPM-DE) was applied to evaluate the chromate ions transport through PAN UF membrane as a function of flux by using optimized model parameters and the simulated data matched well with experimental results.
机译:本工作的目的是研究本地开发的基于聚丙烯腈(PAN)的超滤(UF)膜从饮用水中去除铬离子的功效。水解后的PAN膜可有效地截留进料中250bppb至400 ppm范围内的铬阴离子,并且在进料中低铬酸盐浓度(≤25ppm)下,pH≥7时,截留率达到≥90%。铬离子的排斥机理在很大程度上取决于Donnan排斥原理,而超滤的尺寸排斥原理并未对离子排斥起主要作用。进料pH在改变膜的孔隙率中起着至关重要的作用,这影响了铬酸根离子的保留行为。在低进料浓度下,错流速度,压力对离子排斥没有显著作用。但是,在较高的进料浓度(≥400ppm)下,浓差极化变得很重要,并且在低错流和高压下将铬酸盐的截留率降低至32%。通过优化的模型参数,使用Donnan空间分配孔和介电排斥模型(DSPM-DE)评估了铬离子通过PAN UF膜的迁移量与通量的关系,模拟数据与实验结果非常吻合。

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