锑硒合金形成和蒸发的热力学

V. N. Volodin, S. Trebukhov, A. Nitsenko, X. Linnik, F. Tuleutay
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引用次数: 0

摘要

研究了Sb - Sb2Se3和Sb2Se3 - Se两种特殊体系在锑硒体系中存在同熔化合物Sb2Se3时合金形成和蒸发的热力学作用。计算是基于组成特定系统的组分的分蒸气压值。根据沸点法(等温法)测定的Sb - Sb2Se3和硒熔体在Sb2Se3 - Se液态合金上的饱和蒸气压值,计算了系统中挥发性最大的硒化锑和硒的热力学活度。采用Darken提出的换元法对Gibbs-Duhem方程进行数值积分,计算了上述体系中低挥发性组分Sb和Sb2Se3的相似函数。硒化锑和锑在Sb - Sb2Se3和Sb2Se3 - Se熔体上的分压用温度-浓度关系式逼近。由于在第一个系统中存在分层区域,该系统被区分为与理想状态的正偏差。液态合金形成的偏熵和积分熵和焓是根据成分活度的值计算出来的,即溶液中元素或化合物的分蒸气压与纯元素或化合物的饱和蒸气压之比。合金形成的偏函数和积分函数以图形形式与熔体中硒含量的关系表示。所得的热力学常数将补充物理和化学数据库,并将用于计算状态图上汽液平衡场的边界,从而确定熔融体系蒸馏分离的可能性和完整性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermodynamics of antimony—selenium alloys formation and evaporation
The thermodynamic functions of alloy formation and evaporation were considered for two particular systems — Sb – Sb2Se3 and Sb2Se3 – Se in connection with the presence of congruently melting compound Sb2Se3 in the antimony—selenium system. The calculations are based on the partial vapor pressure values of the components forming the particular systems. The thermodynamic activity of antimony selenide and selenium as the most volatile components in the systems was calculated based on the saturated vapor pressure values of antimony selenide over the Sb – Sb2Se3 and selenium melts over Sb2Se3 – Se liquid alloys determined by the boiling point method (isothermal variant). Similar functions of the low volatile components in the above systems: Sb in the first system and Sb2Se3 in the latter one was calculated by numerical integration of the Gibbs—Duhem equation using the substitution proposed by Darken. The partial pressures of antimony selenide and antimony over Sb – Sb2Se3 and Sb2Se3 – Se melts were approximated by temperature—concentration relationships. The system is distinguished with a positive deviation from ideality due to the presence of a delamination region in the first system. The partial and integral entropies and enthalpies of the formation of liquid alloys were calculated based on the values of component activities found as the ratio of the partial vapor pressure of an element or compound above the solution to the saturated vapor pressure of a pure element or compound. The partial and integral functions of alloy formation are presented in the form of graphical dependences on the selenium amount in the melt. The obtained thermodynamic constants will replenish the physical and chemical data base and will be used to calculate the boundaries of the vapor— liquid equilibrium fields on the diagram of state, allowing to determine the possibility and completeness of distillation separation of molten systems.
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