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An NPT Monte Carlo Molecular Simulation-Based Approach to Investigate Solid-Vapor Equilibrium: Application to Elemental Sulfur-H2S System

机译:基于NPT蒙特卡罗分子模拟的固-汽平衡研究方法:在元素硫-H2S系统中的应用

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摘要

In this work, a method to estimate solid elemental sulfur solubility in pure and gas mixtures using Monte Carlo (MC) molecular simulation is proposed. This method is based on Isobaric-Isothermal (NPT) ensemble and the Widom insertion technique for the gas phase and a continuum model for the solid phase. This method avoids the difficulty of having to deal with high rejection rates that are usually encountered when simulating using Gibbs ensemble. The application of this method is tested with a system made of pure hydrogen sulfide gas (H2S) and solid elemental sulfur. However, this technique may be used for other solid-vapor systems provided the fugacity of the solid phase is known (e.g., through experimental work). Given solid fugacity at the desired pressure and temperature, the mole fraction of the solid dissolved in gas that would be in chemical equilibrium with the solid phase might be obtained. In other words a set of MC molecular simulation experiments is conducted on a single box given the pressure and temperature and for different mole fractions of the solute. The fugacity of the gas mixture is determined using the Widom insertion method and is compared with that predetermined for the solid phase until one finds the mole fraction which achieves the required fugacity. In this work, several examples of MC have been conducted and compared with experimental data. The Lennard-Jones parameters related to the sulfur molecule model (ɛ, σ) have been optimized to achieve better match with the experimental work.
机译:在这项工作中,提出了一种使用蒙特卡洛(MC)分子模拟方法估算纯净气体混合物中固体元素硫溶解度的方法。该方法基于等压-等温(NPT)集成和气相的Widom插入技术以及固相的连续模型。此方法避免了必须处理使用Gibbs集成进行模拟时通常遇到的高拒绝率的困难。该方法的应用通过纯硫化氢气体(H2S)和固体元素硫制成的系统进行测试。然而,如果已知固相的逸度(例如,通过实验工作),则该技术可以用于其他固-蒸气系统。给定固体在要求的压力和温度下的逸度,可以获得与固相化学平衡的溶解在气体中的固体的摩尔分数。换句话说,在给定压力和温度以及溶质的摩尔分数不同的情况下,在单个盒子上进行了一组MC分子模拟实验。气体混合物的逸度使用Widom插入法确定,并与固相预先确定的相比较,直到找到达到所需逸度的摩尔分数。在这项工作中,进行了MC的几个示例,并将其与实验数据进行了比较。与硫分子模型(ɛ,σ)有关的Lennard-Jones参数已经过优化,以与实验工作更好地匹配。

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