Center for Research in Computational Thermochemistry (CRCT), Deptartment of Chemical Engineering, Ecole Polytechnique, Montréal, Québec, Canada H3C 3A7.
Phys Chem Chem Phys. 2018 Jun 27;20(25):17324-17341. doi: 10.1039/c8cp02678e.
This paper presents a quantitative thermodynamic description for water, hydrogen fluoride and hydrogen dissolutions in cryolite-base molten salts, which is of technological importance to the Hall-Héroult electrolytic aluminum extraction cell. The Modified Quasichemical Model in the Quadruplet Approximation (MQMQA), as used to treat a large variety of molten salt systems, was adopted to thermodynamically describe the present liquid phase; all solid solutions were modeled using the Compound Energy Formalism (CEF); the gas phase was thermodynamically treated as an ideal mixture of all possible species. The model parameters were mainly obtained by critical evaluations and optimizations of thermodynamic and phase equilibrium data available from relative experimental measurements and theoretical predictions (first-principles calculations and empirical estimations) for the lower-order subsystems. These optimized model parameters were thereafter merged within the Kohler/Toop interpolation scheme, facilitating the prediction of gas solubility (H2O, HF and H2) in multicomponent cryolite-base molten salts using the FactSage thermochemical software. Several interesting diagrams were finally obtained in order to provide useful information for the industrial partners dedicated to the Hall-Héroult electrolytic aluminum production or other molten-salt technologies (the purification process and electroslag refining).
本文提出了一种适用于冰晶石基熔盐中水电解质、氟化氢和氢气溶解的定量热力学描述方法,这对于 Hall-Héroult 电解铝提取槽具有重要的技术意义。本文采用了修正的四重态拟化学模型(MQMQA)来处理各种熔盐体系,以热力学的方式描述了当前的液相;所有的固溶体都采用复合能量形式(CEF)建模;气相则被视为所有可能物种的理想混合物进行热力学处理。模型参数主要通过对相对实验测量和理论预测(第一性原理计算和经验估计)的热力学和相平衡数据进行关键评估和优化得到,这些数据涉及较低阶子系统。这些经过优化的模型参数随后被合并到 Kohler/Toop 插值方案中,从而使用 FactSage 热化学软件预测多元冰晶石基熔盐中的气体溶解度(H2O、HF 和 H2)。最后得到了几个有趣的图表,为致力于 Hall-Héroult 电解铝生产或其他熔盐技术(净化过程和电渣精炼)的工业合作伙伴提供了有用的信息。