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首页> 外文期刊>Separation and Purification Technology >Improved separation performance and durability of polyamide reverse osmosis membrane in tertiary treatment of textile effluent through grafting monomethoxy-poly(ethylene glycol) brushes
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Improved separation performance and durability of polyamide reverse osmosis membrane in tertiary treatment of textile effluent through grafting monomethoxy-poly(ethylene glycol) brushes

机译:通过嫁接单甲氧基 - 聚(乙二醇)刷,改善了纺织品流出术中聚酰胺反渗透膜的分离性能和耐久性

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To improve the separation performance and durability of the aromatic polyamide thin-film composite reverse osmosis membrane in tertiary treatment of textile effluent, grafting of hydrophilic polymer brushes was performed in this work through sequential surface treatment using acidic aqueous glutaraldehyde and monomethoxy-poly(ethylene glycol) (MPEG) solutions. ATR-FTIR and XPS analyses confirmed that MPEG brushes were grafted on membrane surface at the sites of N-H group of amide linkages and end amino groups in the polyamide active layer. The modification was found to enhance membrane fouling resistance, water permeability and rejections to both COD and conductivity in tertiary treatment of textile effluent. The steady-state flux of the modified membrane to secondary textile effluent was higher by 24.0% compared with the virgin membrane and comparable with that of the commercial membrane BW30FR. The grafting of MPEG brushes was also found to make the membrane less susceptible to chlorine. After ten times of intensified chlorine exposure, i.e. total chlorine exposure of 42,000 ppmh NaClO of 35.0 degrees C and pH 9.0, the membrane grafted with MPEG brushes maintained COD and conductivity rejections of 97.9% and 98.5%, respectively, to textile effluent, showing better durability against chlorine than the virgin membrane and compared membrane BW30FR.
机译:为了改善纺织废水的三级处理中芳族聚酰胺薄膜复合膜复合膜的分离性能和耐久性,通过使用酸性戊二醛和单羟甲氧基 - 聚(乙二醇的单甲氧基 - 聚(乙二醇)通过顺序表面处理进行亲水性聚合物刷的接枝。 )(MPEG)解决方案。 ATR-FTIR和XPS分析证实,在聚酰胺活性层中的N-H酰胺键和末端氨基的N-H基团位点的膜表面上嫁接了MPEG刷。发现改性以增强膜污垢,水渗透性和抑制纺织废水的三级鳕鱼和电导率。与原始膜相比,改性膜与二级纺织品流出物的稳态通量较高24.0%,并与商业膜BW30FR的改性相当。也发现MPEG刷的接枝使膜更易受氯的影响。在加强氯暴露的十次,即总氯暴露42,000ppmH NaClO为35.0℃和pH9.0,用MPEG刷接枝的膜在纺织废水中分别保持97.9%和98.5%的COD和电导抑制剂,显示出更好的耐久性与氯比原始膜和比较膜BW30FR。

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