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首页> 外文期刊>Journal of Molecular Liquids >Molecular dynamics simulation of methane hydrate formation in presence and absence of amino acid inhibitors
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Molecular dynamics simulation of methane hydrate formation in presence and absence of amino acid inhibitors

机译:氨基酸抑制剂存在与不存在甲烷水合物形成的分子动力学模拟

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In the present work, the methane hydrate growth kinetics is investigated by molecular dynamics simulation (MD) in the presence of different amino adds as inhibitors. The selected amino acids are glycine, alanine, proline, and serine with different concentrations (1.5 wt%). The molecular dynamics simulation of the structure I hydrate is performed under the isobaric-isothermal (NPT) ensemble for both pure water and amino add solution. Different parameters are determined to characterize the kinetics of methane hydrate formation such as the four body structural order parameter (F-4 phi), radial distribution function (RDF), mean square displacement (MSD), potential energy, density, and hydrogen bond formation. Our obtained MD results are in agreement with results from previous simulation studies and experimental observations. Analyzed MD data indicate that all studied amino adds act as inhibitors of methane hydrate. According to potential energy, van der Waals and electrostatic interactions between the amino acid and the solution lead to instability in the hydrate structure. F-4 phi evaluates the hydrate formation kinetics and the structural variation of hydrate in the presence of amino acids. Analysis of hydrogen bond formation indicates that the solubility of amino adds is an important factor in hydrate inhibition. The disruption of the hydrogen bond network also displays that an amino acid breaks the water hydrogen bond. According to the consequences of our study, the ranking of the inhibitory effect of the amino acids is as follows: serine glycine alanine approximate to proline. Serine and glycine are more effective hydrate inhibitors than other amino acids because of their chemical structures, solubilities, hydrogen bond formation, and low hydrophobicity. (C) 2018 Elsevier B.V. All rights reserved.
机译:在本作工作中,通过分子动力学模拟(MD)在不同的氨基存在下进行甲烷水合物生长动力学作为抑制剂。所选择的氨基酸是甘氨酸,丙氨酸,脯氨酸和具有不同浓度的丝氨酸​​(<1.5wt%)。结构I水合物的分子动力学模拟在纯水和氨基加溶液中的等温(NPT)合奏下进行。确定不同的参数以表征甲烷水合物形成的动力学,例如四体结构阶参数(F-4 PHI),径向分布函数(RDF),均方位移(MSD),势能,密度和氢键形成。我们获得的MD结果与先前的模拟研究和实验观察结果一致。分析的MD数据表明所有研究的氨基加入甲烷水合物的抑制剂。根据潜在的能量,氨基酸和溶液之间的van der下游和静电相互作用导致水合物结构中的不稳定性。 F-4 PHI评估水合物形成动力学和水合物在氨基酸存在下的结构变异。氢键形成分析表明氨基增加的溶解度是水合物抑制的重要因素。氢键网络的破坏还显示氨基酸破坏水氢键。根据我们研究的后果,氨基酸的抑制作用的排名如下:丝氨酸和GT;甘氨酸&丙氨酸接近脯氨酸。由于其化学结构,溶解度,氢键形成和低疏水性,丝氨酸和甘氨酸比其他氨基酸更有效的水合物抑制剂。 (c)2018年elestvier b.v.保留所有权利。

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