首页> 外文期刊>The Korean journal of chemical engineering >Improving water permeability and anti-fouling property of polyacrylonitrile-based hollow fiber ultrafiltration membranes by surface modification with polyacrylonitrile-g-poly(vinyl alcohol) graft copolymer
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Improving water permeability and anti-fouling property of polyacrylonitrile-based hollow fiber ultrafiltration membranes by surface modification with polyacrylonitrile-g-poly(vinyl alcohol) graft copolymer

机译:通过聚丙烯腈-g-聚乙烯醇接枝共聚物的表面改性提高聚丙烯腈基中空纤维超滤膜的透水性和防污性能

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摘要

The effect of polyacrylonitrile-g-poly (vinyl alcohol) (PAN-g-PVA) copolymer additive on the properties of PAN-based hollow fiber UF membranes was studied. The resulting hollow fiber membranes were characterized with respect to structural morphology, surface properties, and proteins rejection in order to investigate the impact of PAN-g- PVA copolymer composition (presented at different PAN: PAN-g-PVA ratio) in the UF membrane on the separation and antifouling properties. Results showed that the hollow fiber membrane prepared from the highest composition of PAN-g-PVA copolymer (PAN: PAN-g-PVA 80 : 20) was able to produce pure water flux as high as 297 L/m(2)center dot hr in comparison to 41 L/m2 center dot hr reported in control PAN membrane when tested at 1 bar. Fouling experiments performed using bovine serum albumin (BSA), albumin from chicken egg (CE) and trypsin indicated that the blend membranes with higher surface coverage of hydrophilic PVA (34-60%) were more excellent in minimizing protein fouling, which might be correlated with the formation of hydrophilic PVA layer on their surface. Although increase in membrane hydrophilicity upon PAN-g-PVA copolymer incorporation might be the main reason contributing to improved membrane antifouling properties, the changes in membrane surface roughness and pore size could not be completely ruled out to influence membrane anti-fouling resistance during protein filtration.
机译:研究了聚丙烯腈-g-聚乙烯醇(PAN-g-PVA)共聚物添加剂对PAN基中空纤维超滤膜性能的影响。对所得的中空纤维膜进行了结构形态,表面性质和蛋白质排斥方面的表征,以研究PAN膜中PAN-g-PVA共聚物组合物(以不同的PAN:PAN-g-PVA比例表示)的影响。在分离和防污性能上。结果表明,由最高成分的PAN-g-PVA共聚物(PAN:PAN-g-PVA 80:20)制备的中空纤维膜能够产生高达297 L / m(2)中心点的纯净水通量。 hr与在1 bar下测试时对照PAN膜中报道的41 L / m2中心点hr相比。使用牛血清白蛋白(BSA),鸡蛋中的白蛋白(CE)和胰蛋白酶进行的结垢实验表明,亲水性PVA表面覆盖率较高(34-60%)的共混膜在减少蛋白质结垢方面表现更出色,这可能与在其表面形成亲水性PVA层。尽管加入PAN-g-PVA共聚物后膜亲水性增加可能是改善膜防污性能的主要原因,但不能完全排除膜表面粗糙度和孔径的变化影响蛋白质过滤过程中的膜防污性。

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