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首页> 外文期刊>Chemical Engineering Science >Enhanced forward osmosis from chemically modified polybenzimidazole (PBI) nanofiltration hollow fiber membranes with a thin wall
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Enhanced forward osmosis from chemically modified polybenzimidazole (PBI) nanofiltration hollow fiber membranes with a thin wall

机译:化学修饰的聚苯并咪唑(PBI)纳滤中空纤维膜薄壁增强了正向渗透

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摘要

To develop high-flux and high-rejection forward osmosis (F0) membranes for water reuses and seawater desalination, we have fabricated polybenzimidazole (PBI) nanofiltration (NF) hollow fiber membranes with a thin wall and a desired pore size via non-solvent induced phase inversion and chemically cross-linking modification. The cross-linking by p-xylylene dichloride can finely tune the mean pore size and enhance the salt selectivity. High water permeation flux and improved salt selectivity for water reuses were achieved by using the 2-h modified PBI NF membrane which has a narrow pore size distribution. Cross-linking at a longer time produces even a lower salt permeation flux potentially suitable for desalination but at the expense of permeation flux due to tightened pore sizes. It is found that draw solution concentration and membrane orientations are main factors determining the water permeation flux. In addition, effects of membrane morphology and operation conditions on water and salt transport through membrane have been investigated.
机译:为了开发用于水回用和海水淡化的高通量和高排斥率正渗透(F0)膜,我们通过非溶剂诱导制备了具有薄壁和所需孔径的聚苯并咪唑(PBI)纳滤(NF)中空纤维膜。相转化和化学交联改性。对二甲苯二氯化物的交联可以微调平均孔径并提高盐的选择性。通过使用具有狭窄孔径分布的2-h改性PBI NF膜,可以实现较高的透水通量和提高的盐选择性,以实现水的再利用。较长时间的交联产生甚至更低的盐渗透通量,该盐通量可能适用于脱盐,但是由于孔径变紧而以渗透通量为代价。发现汲取溶液浓度和膜取向是决定水渗透通量的主要因素。另外,已经研究了膜的形态和操作条件对水和盐通过膜的运输的影响。

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