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Outlook for graphene-based desalination membranes

机译:基于石墨烯的脱盐膜的前景

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We discuss here next-generation membranes based on graphene for water desalination, based on the results of molecular simulations, application of nanofabrication technologies, and experiments. The potential of graphene to serve as a key material for advanced membranes comes from two major possible advantages of this atomically thin two-dimensional material: permeability and selectivity. Graphene-based membranes are also hypothetically attractive based on concentration polarization and fouling, and graphene’s chemical and physical stability. Further research is needed to fully achieve these theoretical benefits, however. In addition, improvement in the design and manufacturing processes, so to produce performance and cost-effective graphene-based desalination devices, is still an open question. Finally, membranes are only one part of desalination systems, and current processes are not optimized to take full advantage of the higher selectivity and permeability of graphene. New desalination processes are, therefore, needed to unlock the full benefits of graphene.
机译:我们将在分子模拟结果,纳米加工技术的应用和实验的基础上,在此讨论基于石墨烯进行水脱盐的下一代膜。石墨烯用作高级膜关键材料的潜力来自这种原子薄的二维材料的两个主要可能优点:渗透性和选择性。假设基于浓度极化和结垢以及石墨烯的化学和物理稳定性,基于石墨烯的膜也具有吸引力。但是,需要进一步研究以完全实现这些理论上的利益。此外,改进设计和制造工艺以生产性能和成本效益好的基于石墨烯的脱盐装置,仍然是一个悬而未决的问题。最后,膜只是脱盐系统的一部分,目前的工艺尚未优化以充分利用石墨烯的更高选择性和渗透性。因此,需要新的脱盐工艺来释放石墨烯的全部益处。

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