Liquid-liquid equilibrium at high pressures of water/n-Decane system using Monte Carlo simulation

IF 3 3区 化学 Q3 CHEMISTRY, PHYSICAL
Arturo Elías-Domínguez, Dulce Y. Medina-Velázquez, Friné López-Medina, Fernando Pérez-Villaseñor, Ángel Castro-Agüero, Arturo Ortíz-Arroyo, Maria V. Hernandez-Ruiz
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引用次数: 0

Abstract

Liquid-liquid equilibrium (LLE) of two- and three-component systems containing short molecules has been previously studied by Monte Carlo simulations in the NPT ensemble with two simulation boxes; for systems with long-chain molecules have also been studied, but at low pressures and considering three simulation boxes, the third is a vapor phase that contains ghost molecules and acts only as a transfer medium between the two liquid phases. In this paper, the LLE at high pressures of the water/n-decane binary system is calculated using only two simulation boxes by the NPT-Gibbs ensemble combined with the Configurational Bias Monte Carlo method (CBMC). Besides, the molecular potential models used, and the simulation details allowed us to calculate the LLE properties of the system studied: the densities of the two phases in equilibrium, their compositions, and potential energies. The water/n-decane mixture is characterized by differences in molecular size and polarity, forming a highly non-ideal system. This is probably the reason for the difficulty of studying the LLE of water/n-alkane binary systems by Monte Carlo simulation, so to the best of our knowledge, this is the first study of the LLE of a binary water/n-alkane system using Monte Carlo simulation. Simulations were done at 573.2 K (from 121 to 303 bar) and 593.2 K (from 154 to 300 bar), and under these conditions, experimental data from the LLE is available, obtaining good predictions from simulations.

Abstract Image

高压下水/正癸烷体系液-液平衡的蒙特卡罗模拟
两组分和三组分含短分子体系的液-液平衡(LLE)已经用Monte Carlo模拟在NPT系综中用两个模拟箱进行了研究;对于具有长链分子的系统也进行了研究,但在低压和考虑三个模拟箱的情况下,第三个模拟箱是包含幽灵分子的气相,仅作为两个液相之间的传递介质。本文采用NPT-Gibbs系综结合构型偏置蒙特卡罗方法(CBMC)计算了水/正癸烷二元体系在高压下的LLE。此外,所使用的分子势模型和模拟细节使我们能够计算所研究系统的LLE性质:处于平衡状态的两相的密度、它们的组成和势能。水/正癸烷混合物的特点是分子大小和极性的差异,形成了一个高度不理想的体系。这可能是用蒙特卡罗模拟方法研究水/正构烷烃二元体系的LLE比较困难的原因,因此,据我们所知,这是第一次用蒙特卡罗模拟方法研究水/正构烷烃二元体系的LLE。在573.2 K(从121到303 bar)和593.2 K(从154到300 bar)条件下进行了模拟,在这些条件下,LLE的实验数据是可用的,模拟结果得到了很好的预测。
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来源期刊
CiteScore
4.20
自引率
10.70%
发文量
331
审稿时长
31 days
期刊介绍: Computational and Theoretical Chemistry publishes high quality, original reports of significance in computational and theoretical chemistry including those that deal with problems of structure, properties, energetics, weak interactions, reaction mechanisms, catalysis, and reaction rates involving atoms, molecules, clusters, surfaces, and bulk matter.
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