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The associate species model was applied to the thermodynamic representation of the liquid in oxide systems Na 2 O–SiO 2 and K 2 O–SiO 2 . The available phase diagram and activity data were collected and evaluated for the purpose of improving the solution database. These new data for the liquid phase are compatible with data for the solid stoichiometric compounds from...
The associate species model was applied to the thermodynamic representation of liquids in the oxide systems Na 2 O–Al 2 O 3 and K 2 O–Al 2 O 3 . The available experimental phase diagrams and thermodynamic data were collected and evaluated for the purpose of improving the solution database. These new data for the liquid phase, and for the solid compounds...
The Al 2 O 3 –SiO 2 system was reassessed using the associate species model for the liquid and the sublattice and associate species model for the mullite. The available phase diagram data were collected and evaluated for the purpose of improving the solution database. The new data for the liquid phase and mullite are compatible with data for the pure stoichiometric component...
The K 2 O–Al 2 O 3 –SiO 2 system has been thermodynamically assessed. The associate species model was applied to the liquid phase while the solubility of SiO 2 in KAlO 2 has been treated with a multi-sublattice model. The resulting new databank was used for the representation of the phase equilibria in the ternary system including several quasi-binary...
The K2O–MgO–SiO2 system has been thermodynamically assessed. The modified associate species model was applied to the liquid phase while the solubility of SiO2 in K2MgSiO4 has been treated with a multi-sublattice model. The resulting new databank was used for the representation of the phase equilibria in the ternary system including several quasi-binary sections of the ternary diagram. The calculated...
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