Moradi Hojatollah, Azizpour Hedayat, Bahmanyar Hossein, Mohammadi Mohammad, Akbari Mahdi
Surface Phenomenon and Liquid-Liquid Extraction Research Lab, School of Chemical Engineering, College of Engineering, University of Tehran, Tehran, Iran.
Department of Chemical Engineering, Fouman Faculty of Engineering, College of Engineering, University of Tehran, Iran.
Heliyon. 2020 Nov 2;6(11):e05385. doi: 10.1016/j.heliyon.2020.e05385. eCollection 2020 Nov.
Diffusion coefficient is one the most effective factors in mass transfer calculation, which plays an important role in study at the molecular scale. In this study, Material Studio software was used to simulate the diffusion coefficient of methane in water through molecular dynamics. COMPASS force field was also used for optimization of atomic structures of methane and water, and Group-Based method was applied to model to calculate both van der Waals and electrostatic forces. In addition, Universal force field was used to optimize of amorphous cell, while Ewald and Atom-Based methods were applied for modeling and calculation of van der Waals and electrostatic potential energy at constant temperatures. The simulation duration for equilibrium of amorphous cell in both state of NVT and NVE was assumed 5ps. The impact of temperature as well as concentration on diffusion coefficient were investigated and results showed that the diffusion coefficient had linear relationship with temperature and third-degree polynomial relationship with concentration. As a result, of the simulation, the diffusion coefficient function versus temperature and concentration was developed.
扩散系数是传质计算中最有效的因素之一,在分子尺度研究中起着重要作用。在本研究中,使用Material Studio软件通过分子动力学模拟甲烷在水中的扩散系数。COMPASS力场也用于优化甲烷和水的原子结构,基于基团的方法用于建模以计算范德华力和静电力。此外,通用力场用于优化非晶胞,而Ewald和基于原子的方法用于在恒定温度下对范德华力和静电势能进行建模和计算。假设在NVT和NVE两种状态下非晶胞平衡的模拟持续时间为5皮秒。研究了温度和浓度对扩散系数的影响,结果表明扩散系数与温度呈线性关系,与浓度呈三次多项式关系。因此,通过模拟得出了扩散系数与温度和浓度的函数关系。