固溶体溶解下的固气平衡。多态固溶体解相图的拓扑同构

IF 1.8 3区 化学 Q3 CHEMISTRY, INORGANIC & NUCLEAR
N. A. Charykov, V. V. Kuznetsov, A. V. Rumyantsev, V. A. Keskinov, N. A. Kulenova, K. N. Semenov, M. V. Charykova, V. P. German
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引用次数: 0

摘要

本文证明了三个Gibbs-Konovalov定律(Gibbs-Roozeboom规则)在没有液相的固溶条件下,在三元体系的固气相图中适用。所考虑的图与二元体系中固溶体多晶变换的相图具有拓扑同构性,并给出了吉布斯-科诺瓦洛夫定律的类似形式。这个证明是基于将广义范德瓦尔斯微分方程应用于相平衡位移,用可变组成的固体相的不完全吉布斯势和完全吉布斯势的度量来表示。定律(规则)类似物的适用性在许多模型系统中得到了证明。根据固溶体溶解相图的规律,提出了一种分离纯化固溶体中盐组分的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Solid–Vapor Equilibria under Desolvation of Solid Solutions. Topological Isomorphism with Phase Diagrams of Polymorphic Solid Solutions

Solid–Vapor Equilibria under Desolvation of Solid Solutions. Topological Isomorphism with Phase Diagrams of Polymorphic Solid Solutions

This paper provides a proof for the operation of analogues of the three Gibbs–Konovalov laws (Gibbs–Roozeboom rules) in solid–vapor phase diagrams of ternary systems under the conditions of solid solutions desolvation in the absence of liquid phases. The diagrams under consideration are shown to feature topological isomorphism to phase diagrams of polymorphic transformations of solid solutions in binary systems, for which analogues of the Gibbs–Konovalov laws are also formulated. The proof is based on the application of generalized van der Waals differential equations to the phase equilibrium shift, written in the metrics of the incomplete and complete Gibbs potentials of solid phases of variable composition. The applicability of the laws (rules) analogues is shown for a number of model systems. A method is proposed for the separation and purification of salt components of solid solutions based on the laws recognized for the phase diagrams of solid solutions desolvation.

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来源期刊
Russian Journal of Inorganic Chemistry
Russian Journal of Inorganic Chemistry 化学-无机化学与核化学
CiteScore
3.10
自引率
38.10%
发文量
237
审稿时长
3 months
期刊介绍: Russian Journal of Inorganic Chemistry is a monthly periodical that covers the following topics of research: the synthesis and properties of inorganic compounds, coordination compounds, physicochemical analysis of inorganic systems, theoretical inorganic chemistry, physical methods of investigation, chemistry of solutions, inorganic materials, and nanomaterials.
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