Thermodynamic Model and Database for Sulfides Dissolved in Molten Oxide Slags
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- Type
- article
- Published
- 2009-08-25
- Cited by
- 86
- References
- 62
- Access
- Open access
- OpenAlex
- https://openalex.org/W2010851495
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:95666516
Keywords
Sulfide, Gibbs free energy, Oxide, Sulfur, Slag (welding)
References
- The sulphide capacity of CaO‐SiO2‐Al2O3‐MgO(‐FeO) smelting reduction slags
- Thermochemical properties of inorganic substances
- Critical evaluation and optimization of the thermodynamic properties and phase diagrams of the MnO-TiO2, MgO-TiO2, FeO-TiO2, Ti2O3-TiO2, Na2O-TiO2, and K2O-TiO2 systems
- Thermodynamic data for inorganic sulphides, selenides and tellurides
- JANAF thermochemical tables
- Sulphide capacities in some multi component slag systems
- Critical thermodynamic evaluation and optimization of the MnO–“ TiO2 ”–“ Ti2O3 ” system
- Thermodynamics of sulfur in the BaO-MnO-SiO2 flux system
- Thermodynamic Modeling of the FeO–Fe2O3–MgO–SiO2 System
- A study of the sulfide capacities of iron-oxide containing slags
- The composition and temperature dependence of the sulfide capacity of metallurgical slags
- Modeling of sulfide capacities of silicate melts
- An Experimental Study of The Sulphide Capacities in the System Al2O3−CaO−SiO2
- Sulfide capacities of fayalite-base slags
- Thermodynamics of the MnO-SiO2-TiO2 System at 1 673 K
- FactSage thermochemical software and databases - recent developments
- Critical thermodynamic evaluation and optimization of the CaO-MnO-SiO2 and CaO-MnO-Al2O3 systems
- Sulfide Capacity and Phase Equilibria of MnO–TiO2–MnS System at 1723 K
- Critical thermodynamic evaluation and optimization of the Fe–Mg–O system
- The Ca(SO4)-Na2(SO4)-Ca3(AsO4)2-Na3(AsO4) phase diagram
Cited by
- Development of a Thermodynamic Database for Copper Smelting and Converting
- Integrated experimental and thermodynamic modelling research methodology for metallurgical slags with examples in the copper production field
- Sulfide Capacity in Ladle Slag at Steelmaking Temperatures
- Prediction model of sulphur distribution ratio between CaO–FeO–Fe2O3–Al2O3–P2O5 slags and liquid iron over large variation range of oxygen potential during secondary refining process of molten steel based on ion and molecule coexistence theory
- A New Sulfide Capacity Model for CaO‐Al2O3‐SiO2‐MgO Slags Based on Corrected Optical Basicity
- Thermodynamics of MnO-SiO2-Al2O3-MnS Liquid Oxysulfide: Experimental and Thermodynamic Modeling
- Critical evaluations and thermodynamic optimizations of the Mn–S and the Fe–Mn–S systems
- On the Dissolution Behavior of Sulfur in Ternary Silicate Slags
- Effect of Silicon on the Desulfurization of Al-Killed Steels: Part I. Mathematical Model
- Competitive Dissolution Mechanism of Sulfur in CaMnSilicate Melts: Structural View
- Interactions Between Metal and Slag Melts: Steel Desulfurization
- Thermodynamic Analysis of Mn-depleted Zone Near Ti Oxide Inclusions for Intragranular Nucleation of Ferrite in Steel
- Experimental investigation of phase equilibria and thermodynamic modeling of the CaO–Al2O3–CaS and the CaO–SiO2–CaS oxysulfide systems
- Representation of Oxidation Ability for Metallurgical Slags Based on the Ion and Molecule Coexistence Theory
- Towards a comprehensive thermodynamic database for ash-forming elements in biomass and waste combustion — Current situation and future developments
- Nickel, copper and cobalt distribution and equilibria in Anglo Platinum furnace slags
- Enrichment Mechanism of Phosphate in CaO-SiO2-FeO-Fe2O3-P2O5 Steelmaking Slags
- Critical assessment and thermodynamic modeling of the Cu–Fe–O system
- Overview of the applications of thermodynamic databases to steelmaking processes
- Study on the Possibility of Using ZnO to Increase the Desulfurization Potential of Blast Furnace Slag and Sulfide Capacities
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