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Cage occupancies, lattice constants, and guest chemical potentials for structure II hydrogen clathrate hydrate from Gibbs ensemble Monte Carlo simulations

机译:笼式占用,晶格常数,以及Gibbs合奏蒙特卡罗模拟的氢气氢化物水合物的化学潜力

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In this paper, equilibrium properties of structure II hydrates of hydrogen were determined from Monte Carlo simulations in the isothermal-isobaric Gibbs ensemble. Water and hydrogen molecules are described by the TIP4P/Ice and Silvera-Goldman models, respectively. The use of the Gibbs ensemble has many key advantages for the simulation of hydrates. By the separation of hydrogen vapor and hydrate phases into their own domains, coupled with transfer moves of hydrogen molecules between domains, cage occupancies were determined. Furthermore, the choice of this ensemble also allows equilibrium lattice constants and guest molecule chemical potentials to be straightforwardly estimated. Results for hydrogen mass fractions indicate reasonable agreement with prior simulation data and theoretical models, while detailed analysis of cage occupancy distributions and neighboring cage pair occupancy combinations gives valuable insight into the behavior of this hydrate at the inter-cage scale. These results will aid in the construction of theoretical models, for which knowledge of the occupancy of neighboring cages is of great importance. In support of previous experimental and theoretical works, we also find evidence of double occupancy of a few small cages inside of the hydrate stability zone, albeit at very high pressures; approximately 0.1% of small cages are doubly occupied at 300 MPa, for temperatures of 225 K and 250 K. Published under license by AIP Publishing.
机译:本文从等温患者吉布布尔的蒙特卡罗模拟中测定了氢气结构II水合物的平衡性质。水和氢分子分别由Tip4P /冰和银行模型描述。使用Gibbs Ensemble具有仿真水合物的关键优势。通过将氢气和水合物阶段分离到其自身的结构域中,与域之间的氢分子的转移移动相结合,确定笼占占用。此外,该集合的选择也允许平衡晶格常数和客体分子化学电位直接估计。氢质量分数的结果表明,与现有仿真数据和理论模型的合理协议,虽然笼式占用分布和邻近笼子对占用组合的详细分析为笼内秤的水合物行为提供了宝贵的洞察。这些结果将有助于建设理论模型,了解邻近笼子的占据知识具有重要意义。为了支持以前的实验和理论作品,我们还发现了少数小笼子内部的双重占用区的证据,尽管在非常高的压力下;大约0.1%的小笼子在300 MPa下占用,适用于225 k和250 k的温度。通过AIP发布发布。

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