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首页> 外文期刊>Journal of Molecular Liquids >The effect of chemical functional groups and salt concentration on performance of single-layer graphene membrane in water desalination process: A molecular dynamics simulation study
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The effect of chemical functional groups and salt concentration on performance of single-layer graphene membrane in water desalination process: A molecular dynamics simulation study

机译:化学官能团和盐浓度对水脱盐过程单层石墨烯膜性能的影响:分子动力学模拟研究

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摘要

In this study, the mechanisms of passing water and salt ions through nanoporous single-layer graphene membrane are simulated using classical molecular dynamics. The effects of functional groups placed in nanopores and feed water's salt concentration on water desalination are investigated. In order to understand the role of functional groups in desalination process, Methyl, Ethyl and a combination of Fluorine and Hydrogen molecules are distributed around the nanopores. In all cases, different number of functional molecules is employed in order to find an optimum distribution of the groups at hand. The results show that an appropriate distribution of Alkyl groups can properly stop the salt ions from passing through the graphene, where the flow rate of water molecules is sufficient. Moreover, the investigation of graphene membrane's performance in different salt concentrations reveals that with increase in salt concentration of feed water, the water flow rate falls and the number of salt ions on the other side of the membrane increases. (C) 2020 Elsevier B.V. All rights reserved.
机译:在该研究中,使用经典分子动力学模拟通过纳米多孔单层石墨烯膜通过水和盐离子的机制。研究了纳米孔和饲料水盐浓度对水脱盐的官能团的影响。为了理解脱盐过程中官能团的作用,甲基,乙基和氟和氢分子的组合分布在纳米孔周围。在所有情况下,采用不同数量的功能分子,以便在手中找到组的最佳分布。结果表明,烷基的适当分布可以正确地阻止盐离子通过石墨烯,其中水分子的流速足够。此外,石墨烯膜在不同盐浓度下的性能的研究表明,随着饲料水的盐浓度的增加,水流速下降,膜另一侧的盐离子的数量增加。 (c)2020 Elsevier B.v.保留所有权利。

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