Chemical Interaction in the Li+,Na+,K+||F–,Br– System and Identification of Low-Melting-Point Phase Fields in a 3D Model of the Stable Composition Triangle LiF–NaF–KBr

IF 0.9 4区 材料科学 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY
A. V. Burchakov, U. A. Emel’yanova, I. K. Garkushin, E. M. Dvoryanova, A. A. Finogenov
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Abstract

Alkali halides have found wide application as thermal energy storage materials, electrolytes for electrochemical cells, and solvents of inorganic substances. Modeling with the use of data for bounding systems is important for constructing phase diagrams of ternary and multicomponent systems. Using three-dimensional vector graphics software, we have constructed a 3D model of equilibrium phase states in the pseudoternary system LiF–NaF–KBr, which is a stable composition triangle in the quaternary reciprocal system Li+,Na+,K+||F,Br. Based on the 3D model, we have constructed for the first time polythermal and crystallization polytherm. For two polythermal sections, we have demonstrated the presence of regions of limited sodium fluoride-based solid solutions and liquid miscibility gaps and identified the phase crystallization sequence. In the 620°C isothermal section, we have delineated liquid-phase and two- and three-phase fields. The polytherm comprises three crystallization fields: terminal solid solutions based on sodium fluoride, potassium bromide, and lithium fluoride, in which a liquid miscibility gap has been delineated. The stability of the LiF–NaF–KBr composition triangle has been confirmed by thermodynamic calculations for several temperatures of interaction in mixtures of substances in the unstable composition triangle LiBr–NaF–KF. The crystallization polytherm allows one to choose mixtures in the temperature ranges 625–650 and 625–700°C suitable for practical application as melting electrolytes of intermediate-temperature electrochemical cells and molten solvents of inorganic substances.

Abstract Image

Li+,Na+,K+||F -,Br -体系中的化学相互作用及低熔点相场在稳定组成三角形LiF-NaF-KBr三维模型中的识别
碱卤化物作为热能储存材料、电化学电池的电解质和无机物的溶剂有着广泛的应用。边界系统的数据建模对于构建三元和多组分系统的相图是非常重要的。利用三维矢量图形软件,建立了Li+,Na+,K+||F -,Br -四元倒数体系中稳定组成三角形LiF-NaF-KBr的三维平衡相态模型。在三维模型的基础上,我们首次构建了多热和结晶多热体。对于两个多热截面,我们已经证明了有限氟化钠基固溶体和液体混溶间隙区域的存在,并确定了相结晶顺序。在620℃等温剖面上,我们圈定了液相场、两相场和三相场。该聚合物包括三个结晶场:基于氟化钠、溴化钾和氟化锂的末端固溶体,其中已经划定了液体混溶间隙。通过对不稳定组成三角形lib - naf - kf中物质混合物相互作用的几个温度的热力学计算,证实了LiF-NaF-KBr组成三角形的稳定性。结晶多热允许人们选择温度范围为625-650和625-700°C的混合物,适合于实际应用,作为中温电化学电池的熔融电解质和无机物的熔融溶剂。
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来源期刊
Inorganic Materials
Inorganic Materials 工程技术-材料科学:综合
CiteScore
1.40
自引率
25.00%
发文量
80
审稿时长
3-6 weeks
期刊介绍: Inorganic Materials is a journal that publishes reviews and original articles devoted to chemistry, physics, and applications of various inorganic materials including high-purity substances and materials. The journal discusses phase equilibria, including P–T–X diagrams, and the fundamentals of inorganic materials science, which determines preparatory conditions for compounds of various compositions with specified deviations from stoichiometry. Inorganic Materials is a multidisciplinary journal covering all classes of inorganic materials. The journal welcomes manuscripts from all countries in the English or Russian language.
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