Integrated Experimental and Thermodynamic Modelling Study of Phase Equilibria in the PbO-AlO1.5-SiO2 System in Air

被引:0
|
作者
Khartcyzov, Georgii [1 ]
Shevchenko, Maksym [1 ]
Nekhoroshev, Evgenii [1 ]
Jak, Evgueni [1 ]
机构
[1] Univ Queensland, Sch Chem Engn, Pyrometallurgy Innovat Lab, PYROSEARCH, Brisbane, Qld 4072, Australia
基金
澳大利亚研究理事会;
关键词
Phase equilibria; PbO; Al2O3; SiO2; Liquidus; Thermodynamic; Optimisation; QUASI-CHEMICAL MODEL; EXPERIMENTAL LIQUIDUS; TERNARY-SYSTEM; DIAGRAM;
D O I
10.1007/s12540-024-01878-4
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The present study focused on phase equilibria in the PbO-AlO1.5 and PbO-AlO1.5-SiO2 systems. The equilibration and quenching technique followed by the electron probe X-ray microanalysis (EPMA) was used in the present study. The liquidus of the PbO-AlO1.5-SiO2 system in air, including corundum (Al2O3), cristobalite/tridymite/quartz (SiO2), feldspar (PbAl2Si2+xO8+2x), massicot (PbO), mullite (Al6+2xSi2-2xO13-x), PbAl12O19, PbAl2O4, Pb9Al8O21, Pb6Al2Si6O21, Pb4Al2Si2O11, Pb4Al4Si3O16, Pb3Al10SiO20 and Pb12Al2Si20O55 primary phase fields, has been characterised. New lead aluminosilicate compounds, Pb13Al4Si6O31, Pb12Al6Si10O31, Pb9Al4Si8O31, Pb7Al2Si8O26 and Pb7Al2Si10O30 were found to coexist with oxide liquid. The PbO-AlO1.5 binary and PbO-AlO1.5-SiO2 ternary systems in air were reoptimized based on the obtained experimental data. New experimental results together with phase equilibria and thermodynamic literature data were used to obtain a self-consistent set of parameters of the thermodynamic model for all phases of the PbO-AlO1.5-SiO2 system in air. The predicted liquidus projection of the PbO-AlO1.5-SiO2 system was presented for the first time in the full range of temperatures and compositions.
引用
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页数:25
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