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Graphene Oxide-PES-Based Mixed Matrix Membranes for Controllable Antibacterial Activity against Salmonella typhi and Water Treatment

机译:基于石墨烯氧化物-PES的混合基质膜,用于抗卵氏沙门氏菌和水处理的可控抗菌活性

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The present work is focused on preparation, characterization, and antibacterial activity evaluation of graphene oxide/polyethersulfone mixed matrix filtration membranes. Graphene oxide (GO) was synthesized via improved Hummer's method and characterized by XRD, FTIR, and SEM. FT-IR spectra showed the presence of carboxylic acid and hydroxyl groups on GO nanosheets. Different concentrations of the synthesized GO at 0.25, 0.5, and 1.0 wt. % were incorporated in polyethersulfone (PES) matrix via phase inversion method to fabricate GO-PES membranes. Increasing porosity and formation of wider, finger-like channels were observed with increased GO concentrations relative to pristine membranes as evident from scanning electron microscopy (SEM) micrographs of the fabricated membranes. However, membranes prepared with 1 wt. % GO appear to contain aggregation and narrowing of pore morphology. GO-incorporated membranes demonstrated enhanced flux, water-retaining capacities, and wettability as compared to pristine PES membranes. Shake flask and colony counting methods were employed to carry out antibacterial testing of synthesized GO and fabricated GO-PES membranes against Salmonella typhi (S. typhi)-a gram-negative bacteria present in water that is known as causative agent of typhoid. Synthesized GO showed significant reduction up to 70.8% in S. typhi cell count. In the case of fabricated membranes, variable concentrations of GO are observed to significantly influence the percentage viability of S. typhi, with reduction percentages observed at 41, 60, and 69% for 0.25, 0.5, and 1.0 wt. % GO-incorporated membranes relative to 17% in the case of pristine PES membranes. The results indicate a good potential for applying GO/PES composite membranes for water filtration application.
机译:本作本作的重点是石墨烯氧化物/聚醚砜混合基质过滤膜的制备,表征和抗菌活性评价。通过改进的悍马的方法合成石墨烯氧化物(GO),并通过XRD,FTIR和SEM以XRD为特征。 FT-IR光谱显示出在纳米片上存在羧酸和羟基。合成的不同浓度为0.25,0.5和1.0wt。通过相位倒置方法掺入聚醚砜(PES)基质中以制造GO-PES膜,%掺入聚醚砜(PES)基质中。随着由制造膜的扫描电子显微镜(SEM)显微照片而言,随着原始膜(SEM)显而易见的,观察到较宽的孔隙率和形成的孔隙率和形成的宽度,指状通道的形成。然而,用1wt制备的膜。 %Go似乎包含孔形态的聚集和缩小。与原始PES膜相比,掺入的膜显示出增强的助焊剂,水保持能力和润湿性。使用摇瓶和菌落计数方法进行抗菌试验,对抗水杨酸滴水(S.Typhi)-A革氏菌的抗菌剂膜膜进行抗菌检测。合成的液相识率显着降低了70.8%。在制造膜的情况下,观察到的可变浓度,以显着影响S.Typhi的百分比活力,在41,60和69%下观察到0.25,0.5和1.0wt的还原百分比。在原始PES膜的情况下,%Go掺入的膜相对于17%。结果表明用于水过滤施用的去/ PES复合膜的良好潜力。

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