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Incorporation of Graphene-Related Carbon Nanosheets in Membrane Fabrication for Water Treatment: A Review

机译:石墨烯相关的碳纳米片在膜制备中用于水处理的研究:综述。

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摘要

The minimization of the trade-off between the flux and the selectivity of membranes is a key area that researchers are continually working to optimise, particularly in the area of fabrication of novel membranes. Flux versus selectivity issues apply in many industrial applications of membranes, for example the unwanted diffusion of methanol in fuel cells, retention of valuable proteins in downstream processing of biopharmaceuticals, rejection of organic matter and micro-organisms in water treatment, or salt permeation in desalination. The incorporation of nanosheets within membrane structures can potentially lead to enhancements in such properties as the antifouling ability, hydrophilicy and permeability of membranes, with concomitant improvements in the flux/selectivity balance. Graphene nanosheets and derivatives such as graphene oxide and reduced graphene oxide have been investigated for this purpose, for example inclusion of nanosheets within the active layer of Reverse Osmosis or Nanofiltration membranes or the blending of nanosheets as fillers within Ultrafiltration membranes. This review summarizes the incorporation of graphene derivatives into polymeric membranes for water treatment with a focus on a number of industrial applications, including desalination and pharmaceutical removal, where enhancement of productivity and reduction in fouling characteristics have been afforded by appropriate incorporation of graphene derived nanosheets during membrane fabrication.
机译:膜通量和选择性之间的权衡最小化是研究人员不断努力优化的一个关键领域,特别是在新型膜的制造领域。通量与选择性问题在膜的许多工业应用中都存在,例如甲醇在燃料电池中的有害扩散,生物药物下游加工中有价值的蛋白质保留,水处理过程中有机物和微生物的排斥或淡化中的盐渗透。在膜结构中掺入纳米片可潜在地导致诸如膜的防污能力,亲水性和渗透性之类的性质的增强,同时伴随通量/选择性平衡的改善。为此已经研究了石墨烯纳米片和衍生物,例如氧化石墨烯和还原的氧化石墨烯,例如在反渗透膜或纳米过滤膜的活性层内包括纳米片,或在超滤膜内将纳米片作为填料共混。这篇综述总结了将石墨烯衍生物掺入到用于水处理的聚合物膜中,重点是许多工业应用,包括脱盐和去除药物,其中通过在生产过程中适当掺入石墨烯衍生的纳米片可以提高生产率和降低结垢特性。膜制造。

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