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Understanding the Pathway of Gas Hydrate Formation with Porous Materials for Enhanced Gas Separation

机译:了解多孔材料与天然气水合物形成的途径以增强气体分离

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摘要

The reason that the stoichiometry of gas to water in artificial gas hydrates formed on porous materials is much higher than that in nature is still ambiguous. Fortunately, based on our experimental thermodynamic and kinetic study on the gas hydrate formation behavior with classic ordered mesoporous carbon CMK-3 and irregular porous activated carbon combined with density functional theory calculations, we discover a microscopic pathway of the gas hydrate formation on porous materials. Two interesting processes including (I) the replacement of water adsorbed on the carbon surface by gas and (II) further replacement of water in the pore by gas accompanied with the gas condensation in the pore and growth of gas hydrate crystals out of the pore were deduced. As a result, a great enhancement of the selectivity and regeneration for gas separation was achieved by controlling the gas hydrate formation behavior accurately.
机译:在多孔材料上形成的人造气体水合物中,气体与水的化学计量比比自然界高得多的原因仍然是模棱两可的。幸运的是,基于我们对经典有序介孔碳CMK-3和不规则多孔活性炭对气体水合物形成行为的热力学和动力学实验,结合密度泛函理论计算,我们发现了多孔材料上气体水合物形成的微观途径。两个有趣的过程包括(I)用气体置换吸附在碳表面上的水,以及(II)用气体进一步置换孔隙中的水,并伴随着孔隙中的气体凝结和气体水合物晶体从孔隙中生长出来。推论。结果,通过精确地控制气体水合物的形成行为,极大地提高了气体分离的选择性和再生。

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