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Porous graphene-based membranes for water purification from metal ions at low differential pressures

机译:多孔石墨烯膜的水从金属离子在低微分净化压力

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摘要

A new generation of membranes for water purification based on weakly oxidized and nanoporous few-layer graphene is here introduced. These membranes dramatically decrease the high energy requirements of water purification by reverse osmosis. They combine the advantages of porous and non-oxidized single-layer graphene, offering energy-efficient water filtration at relatively low differential pressures, and highly oxidized graphene oxide, exhibiting high performance in terms of impurity adsorption. In the reported fabrication process, leaks between juxtaposed few-layer graphene flakes are sealed by thermally annealed colloidal silica, in a treatment that precedes the opening of (sub)nanometre-size pores in graphene. This process, explored for the first time in this work, results in nanoporous graphene flakes that are water-tight at the edges without occluding the (sub)nanopores. With this method, removal of impurities from water occurs through a combination of size-based pore rejection and pore-edge adsorption. Thinness of graphene flakes allows these membranes to achieve water purification from metal ions in concentrations of few parts-per-million at differential pressures as low as 30 kPa, outperforming existing graphene or graphene oxide purification systems with comparable flow rates.
机译:新一代的水膜基于弱氧化和净化在这里介绍了纳米多孔few-layer石墨烯。这些膜显著降低高能源需求的水净化反渗透。多孔和non-oxidized单层石墨烯,提供节能水过滤微分压力相对较低,高度氧化石墨烯氧化物,表现出高杂质的吸附性能。报告的制作过程,之间的泄漏并列few-layer石墨烯片密封热退火硅胶,在治疗之前开放在石墨烯(子)nanometre-size毛孔。在这过程,首次探索工作,导致纳米多孔石墨烯片十全十美的边缘没有阻塞吗(子)纳米孔。从水中杂质发生通过基于组合大小的孔隙排斥和pore-edge吸附。使这些水膜来实现净化金属离子的浓度比较在百万之数微分压力低至30 kPa,优于现有的石墨烯或氧化石墨烯净化系统类似的流速。

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