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A Density Model Based on the Modified Quasichemical Model and Applied to the NaF-AlF3-CaF2-Al2O3 Electrolyte

机译:基于改进的拟化学模型的密度模型及其在NaF-AlF3 -CaF2 -Al2 O3 电解质中的应用

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摘要

A theoretical model for the density of multicomponent inorganic liquids based on the modified quasichemical model has been presented in a previous article. In the present article, this model is applied to the NaF-AlF3-CaF2-Al2O3 electrolyte. By introducing in the Gibbs energy of the liquid phase, temperature-dependent molar volume expressions for the pure fluorides and oxides, and pressure-dependent excess parameters for the binary (and sometimes higher-order) interactions, it is possible to reproduce, and eventually predict, the molar volume and the density of the multicomponent liquid phase using standard interpolation methods. All available density data for the NaF-AlF3-CaF2-Al2O3 liquid were collected and critically evaluated, and optimized pressure-dependent model parameters have been found. This new volumetric model can be used with Gibbs energy minimization software, to calculate the molar volume and the density of cryolite-based melts used for the electroreduction of alumina in Hall–Héroult cells.
机译:先前的文章中提出了基于改进的准化学模型的多组分无机液体密度的理论模型。在本文中,该模型适用于NaF-AlF3 -CaF2 -Al2 O3 电解质。通过引入液相的吉布斯能,纯氟化物和氧化物的温度相关摩尔体积表达式以及二元(有时是高阶)相互作用的压力相关过量参数,可以重现并最终使用标准插值方法预测多组分液相的摩尔体积和密度。收集并严格评估NaF-AlF3 -CaF2 -Al2 O3 液体的所有可用密度数据,并找到优化的压力相关模型参数。这种新的体积模型可与Gibbs能量最小化软件一起使用,以计算用于Hall-Héroult池中氧化铝电还原的冰晶石基熔体的摩尔体积和密度。

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