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Long-term operation and biofouling of graphene oxide membrane in practical water treatment: Insights from performance and biofilm characteristics

生物膜 生物污染 胞外聚合物 过滤(数学) 化学工程 氧化物 材料科学 多孔性 石墨烯 化学 水处理 细菌 环境工程 纳米技术 复合材料 环境科学 生物 有机化学 生物化学 统计 工程类 遗传学 数学
作者
Long Tian,Ping Zhou,Nigel Graham,Guibai Li,Wenzheng Yu
出处
期刊:Journal of Membrane Science [Elsevier]
卷期号:680: 121761-121761 被引量:2
标识
DOI:10.1016/j.memsci.2023.121761
摘要

The widespread research of graphene oxide (GO) membranes has revealed the need to investigate their long-term performance and associated biofouling behavior in practical water treatment conditions. In this study, we have evaluated the long-term operation of GO membranes from the perspective of filtration performance and biofilm characteristics, based on two representative GO membranes (V-GO and P-GO, fabricated by vacuum and pressure filtration, respectively) with different surface properties and a natural surface water, using a gravity driven membrane system. The results showed that the GO membranes were capable of achieving sustainable water purification over 45 days of operation, associated with a complete rejection for biopolymers and desirable removal for fluorescent organic matters. Furthermore, the V-GO membrane with a rougher surface, reduced hydrophilicity and higher sheet-edge exposure than that of the P-GO membrane formed a highly heterogeneous and porous biofilm with high permeability, despite its greater biofilm thickness and extracellular polymeric substances (EPS) contents. In contrast, the P-GO membrane biofilm exhibited a thin but dense structure, and therefore an increased hydraulic resistance (∼1.5 times greater than V-GO membrane). The microbial community analysis revealed that bacteria related to biofilm formation was richer in V-GO biofilm. While bacteria associated with the degradation of organic matters and the aggregation of microorganisms accounted for a greater proportion in P-GO biofilm. These factors were responsible for forming a thick biofilm for V-GO, and a thin but high resistance biofilm for P-GO membrane. Our findings highlight the sustainable water purification performance of the GO membranes, and the P-GO membrane can alleviate biofilm formation but not necessarily reduce biofouling during the long-term filtration, while this was opposite in case of the V-GO membrane.
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