Zhao Honggang, Ding Yuanyuan, McCabe Clare
Department of Chemical Engineering, Vanderbilt University, Nashville, Tennessee 37235, USA.
J Chem Phys. 2007 Aug 28;127(8):084514. doi: 10.1063/1.2756038.
The statistical associating fluid theory for potentials of variable range plus dipole (SAFT-VR+D) is extended to study associating dipolar fluids. In the SAFT-VR+D approach dipolar interactions are taken into account through the use of the generalized mean spherical approximation to describe a reference fluid of dipolar square-well segments. This enables the effect of the dipolar interactions on the thermodynamics and structure of fluids to be explicitly described. Predictions for the thermodynamic properties and phase behavior of dipolar associating square-well monomers with one, two, and four association sites are considered and compared with new isothermal-isobaric and Gibbs ensemble Monte Carlo simulation data. The results show that the SAFT-VR+D equation provides a good description of the phase behavior of dipolar associating fluids. Additionally we have applied the new theoretical approach to study the vapor pressure and saturated liquid density of water.
统计缔合流体理论用于变程加偶极势(SAFT-VR+D)被扩展以研究缔合偶极流体。在SAFT-VR+D方法中,通过使用广义平均球近似来描述偶极方阱段的参考流体,从而考虑偶极相互作用。这使得能够明确描述偶极相互作用对流体热力学和结构的影响。考虑了具有一个、两个和四个缔合位点的偶极缔合方阱单体的热力学性质和相行为的预测,并与新的等温等压和吉布斯系综蒙特卡罗模拟数据进行了比较。结果表明,SAFT-VR+D方程能很好地描述偶极缔合流体的相行为。此外,我们已应用这种新的理论方法来研究水的蒸气压和饱和液体密度。