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Antibacterial electrospun PVA/Enzymatic synthesized poly(catechol) nanofibrous mid-layer membrane for ultrafiltration

机译:抗菌电纺丝PVA /酶法合成聚儿茶酚纳米纤维中层超滤膜

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摘要

Two different nanofibrous antibacterial membranes containing enzymatically synthesized poly(catechol) (PC) or silver nitrate (AgNO3, positive control) blended with poly(vinyl alcohol) (PVA) and electrospun onto a poly(vinylidene fluoride) (PVDF) basal disc to generate thin-film composite mid-layers were produced for water ultrafiltration applications. The developed membranes were thoroughly characterized in terms of morphology, chemical composition and general mechanical and thermal features, antimicrobial activity and ultrafiltration capabilities. The electrospun blends were recognized as homogeneous. Data revealed relevant conformational changes in the PVA side groups, attributed to hydrogen bonding, and high thermal stability and residual mass. PVDF+PVA/AgNO3 membrane displayed 100% growth inhibition of both Gram-positive and Gram-negative bacteria strains, despite the wide range of fiber diameters generated, from 24 to 125 nm, formation of numerous beads and irregular morphology. The PVDF+PVA/PC membrane showed a good growth inhibition of Staphylococcus aureus (92%) and revealed a smooth morphology, with no relevant bead formations and diameters ranging from 68 to 131 nm. The ultrafiltration abilities of the membrane containing PVA/PC were tested in a dead-end high-pressure cell (4 bar) using a reactive dye in distilled water and seawater. After 5 cycles, a maximum rejection of ≈ 85% with an average flux rate of 70 L m-2 h-1 for distilled water and ≈ 64% with an average flux rate of 62 L m-2 h-1 for seawater were determined with an overall salt rejection of ≈ 5%.
机译:两种不同的纳米纤维抗菌膜,包含酶合成的聚邻苯二酚(PC)或硝酸银(AgNO3,阳性对照)与聚乙烯醇(PVA)混合,并静电纺丝到聚偏二氟乙烯(PVDF)基盘上以产生制备了薄膜复合中间层用于水超滤应用。在形态,化学组成和一般的机械和热学特征,抗菌活性和超滤能力方面,对已开发的膜进行了彻底的表征。电纺混纺被认为是均匀的。数据显示,PVA侧基的相关构象变化归因于氢键,高热稳定性和残余质量。 PVDF + PVA / AgNO3膜对革兰氏阳性菌和革兰氏阴性菌均显示出100%的生长抑制,尽管产生的纤维直径范围很广,从24到125 nm,形成许多珠粒和不规则的形态。 PVDF + PVA / PC膜对金黄色葡萄球菌具有良好的生长抑制作用(92%),并显示出平滑的形态,没有相关的珠粒形成,直径范围为68至131 nm。在蒸馏水和海水中,使用活性染料在无端高压池(4巴)中测试了含PVA / PC膜的超滤能力。 5个循环后,确定蒸馏水的最大截留率约为≈85%,蒸馏水的平均通量率为70 L m-2 h-1,对于海水,测定的最大截留率约为≈64%,平均通量率为62 L m-2 h-1总脱盐率约为5%。

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