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The inhibition effect of water on the purification of natural gas with nanoporous graphene membranes

机译:水对纳米多孔石墨烯膜净化天然气的抑制作用

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摘要

Molecular dynamics simulations are used to investigate the inhibiting effect of water on the natural gas separation with nanoporous graphene. The membrane separation process involves CH4 + N2 mixtures with and without the addition of water. The results show that water is able to form hydrogen bonds with nitrogen atoms located in a nanopore rim. This effect causes a decrease of separation selectivity as well as a reduction of gas permeation. In the extreme case, when the nanopore rim contains only nitrogen atoms, water agglomerates at the center of the nanopore and effectively closes down the permeation path. The conclusions are confirmed by the analysis of stability and kinetics of hydrogen bonds.
机译:分子动力学模拟用于研究水对纳米多孔石墨烯分离天然气的抑制作用。膜分离过程涉及添加和不添加水的CH4 + N2混合物。结果表明,水能够与位于纳米孔边缘的氮原子形成氢键。这种作用导致分离选择性的降低以及气体渗透的降低。在极端情况下,当纳米孔边缘仅包含氮原子时,水在纳米孔的中心聚集,并有效地封闭了渗透路径。通过对氢键的稳定性和动力学的分析证实了这些结论。

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