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利用分子动力学模拟研究小分子抑制剂对碳纳米管中甲烷水合物形成的影响。

Investigation of small inhibitor effects on methane hydrate formation in a carbon nanotube using molecular dynamics simulation.

作者信息

Abbaspour Mohsen, Fotourechi Fateme, Akbarzadeh Hamed, Salemi Sirous

机构信息

Dep. of Chemistry, Hakim Sabzevari University Sabzevar Iran

Dep. of Physical Chemistry, Faculty of Chemistry, Kharazmi University Tehran Iran.

出版信息

RSC Adv. 2023 Feb 28;13(10):6800-6807. doi: 10.1039/d2ra06518e. eCollection 2023 Feb 21.

Abstract

In this work, we simulated water molecules in fixed and rigid (15,0) CNTs and the confined water molecules formed a hexagonal ice nanotube in the CNT. After the addition of methane molecules in the nanotube, the hexagonal structure of confined water molecules disappeared and were replaced by almost all the guest methane molecules. The replaced molecules formed a row of water molecules in the middle of the hollow space of the CNT. We also added five small inhibitors with different concentrations (0.8 mol% and 3.8 mol%) to methane clathrates in CNT: benzene, 1-ethyl-3-methylimidazolium chloride ionic liquid ([emim][Cl] IL), methanol, NaCl, and tetrahydrofuran (THF). We investigated the thermodynamic and kinetic inhibition behaviors of the different inhibitors on the methane clathrate formation in the CNT using the radial distribution function (RDF), hydrogen bonding (HB), and angle distribution function (ADF). Our results showed that the [emim][Cl] IL is the best inhibitor from both aspects. It was also shown that the effect of THF and benzene is better than that of NaCl and methanol. Furthermore, our results showed that the THF inhibitors tended to aggregate in the CNT, but the benzene and IL molecules were distributed along the CNT and can affect the inhibitor behavior of THF in the CNT. We have also examined the effect of CNT chirality using the armchair (9,9) CNT, the effect of CNT size using the (17,0) CNT, and the effect of CNT flexibility using the (15,0) CNT by the DREIDING force field. Our results showed that the IL has stronger thermodynamic and kinetic inhibition effects in the armchair (9,9) and the flexible (15,0) CNT than the other systems, respectively.

摘要

在这项工作中,我们模拟了固定且刚性的(15,0)碳纳米管中的水分子,受限水分子在碳纳米管中形成了六方冰纳米管。在碳纳米管中加入甲烷分子后,受限水分子的六方结构消失,几乎全部被客体甲烷分子取代。被取代的分子在碳纳米管中空空间的中间形成了一排水分子。我们还向碳纳米管中的甲烷笼形水合物添加了五种不同浓度(0.8摩尔%和3.8摩尔%)的小分子抑制剂:苯、1-乙基-3-甲基咪唑氯盐离子液体([emim][Cl] IL)、甲醇、氯化钠和四氢呋喃(THF)。我们使用径向分布函数(RDF)、氢键(HB)和角分布函数(ADF)研究了不同抑制剂对碳纳米管中甲烷笼形水合物形成的热力学和动力学抑制行为。我们的结果表明,[emim][Cl] IL在两方面都是最佳抑制剂。还表明THF和苯的效果优于氯化钠和甲醇。此外,我们的结果表明,THF抑制剂倾向于在碳纳米管中聚集,但苯和IL分子沿碳纳米管分布,并且会影响THF在碳纳米管中的抑制行为。我们还通过DREIDING力场研究了扶手椅型(9,9)碳纳米管的手性效应、(17,0)碳纳米管的尺寸效应以及(15,0)碳纳米管的柔韧性效应。我们的结果表明,IL在扶手椅型(9,9)和柔性(15,0)碳纳米管中分别比其他体系具有更强的热力学和动力学抑制作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d4c9/9971844/2a1892bdc398/d2ra06518e-f1.jpg

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