DOI

Rationale: The TiO2-Al2O3-SiO2 system is known to be a base for various glass-ceramic materials, which have great practical value in a great deal of modern technologies. Many TiO2-Al2O3-SiO2 materials are synthesized or applied at high temperatures, which justifies the relevance of the present study.
Methods: The samples in the TiO2-Al2O3-SiO2 system were synthesized using the method of induction melting in a cold crucible. The thermodynamic properties of the TiO2-Al2O3-SiO2 system were studied by the Knudsen effusion mass spectrometric method. The derived thermodynamic functions were optimized within the generalized lattice theory of associated solutions (GLTAS) approach and compared with the results of calculation using the semi-empirical Kohler, Muggianu, Toop, Redlich-Kister, and Wilson methods based on the corresponding data in the binary systems.
Results: The SiO2 selective vaporization from the samples under study was shown at temperatures above 1940 K. The thermodynamic properties in the TiO2-Al2O3-SiO2 system, including the TiO2-SiO2 system, were obtained in the temperature range 1965-2012 K and were optimized using GLTAS to obtain the consistent concentration dependences of the component activities and excess Gibbs energies.
Conclusions: Positive deviations from the ideal behavior were observed in the TiO2-Al2O3-SiO2 system at high temperatures. Comparison of these values with the results of the modeling based on the GLTAS approach allowed the recommendations regarding the optimal semi-empirical methods for the excess Gibbs energy calculation in different concentration ranges to be made.
Язык оригиналаанглийский
Номер статьиe9359
Число страниц17
ЖурналRapid Communications in Mass Spectrometry
Том36
Номер выпуска19
DOI
СостояниеОпубликовано - 15 окт 2022

    Области исследований

  • Knudsen effusion mass spectrometry, optical materials, thermodynamic properties, titania, vaporization

    Предметные области Scopus

  • Химия материалов

ID: 98562436