Thermodynamic assessment of the CaO–CuO–FeO–FeO system is presented. Effects of temperature and P(O) on the phase equilibria involving slag, solubility of copper and the Fe/Fe ratio in slag have been modeled using available experimental data. Subsolidus phase equilibria and concentration of iron in liquid copper were evaluated as well. Different ways of representing phase equilibria in a quaternary system are illustrated. The slag model, [Ca, Cu, Fe, Fe][O], was developed using the Modified Quasichemical Model (MQM). Liquid metal phase is modeled using the MQM, but as a separate solution, (Cu, Fe, O). Spinel phase is modeled using the Compound Energy Formalism (CEF) and takes into account the solubility of copper and calcium. A thermodynami...
One of the important objectives of copper smelting/converting process is to remove impurities from m...
Phase equilibrium Studies have been carried out on the systems "Cu2O"-FeO-Fe2O3 and "Cu2O"-CaO at me...
Critical evaluation, thermodynamic modeling and optimization of the Cu-Fe-O system are presented. Th...
Calcium ferrite slags described by the Cu-Ca-Fe-O system are used in continuous copper-converting pr...
The present study is the first Calphad-type assessment of the Cu–Fe–O–Si system. All relevant thermo...
Experimental laboratory methods have been developed that enable phase-equilibria studies to be carri...
Phase equilibrium and thermodynamic experimental data in the Cu 2O - SiO2, Cu2O - CaO, and Cu2O - Ca...
Copper smelting and converting takes place over a wide range of chemistries and process conditions. ...
Liquidus temperatures and the solubility of copper oxide in slag are evaluated and discussed for the...
Calcium ferrite slags, which are represented by the "Cu O"-FeO-FeO-CaO system at copper saturation, ...
Ferrous calcium silicate (FCS) slags are reported to have high potential for use in the copper conve...
Limited data are available on phase equilibria of the multicomponent slag system at the oxygen parti...
Ferrous calcium silicate slags are potentially important for future practice in copper converting op...
Al2O3, CaO, and MgO are present as impurities in fayalite-based copper smelting systems. A thermodyn...
Ferrous calcium silicate slags (described by the FeO-FeO -CaO-SiO system) are the basis for a number...
One of the important objectives of copper smelting/converting process is to remove impurities from m...
Phase equilibrium Studies have been carried out on the systems "Cu2O"-FeO-Fe2O3 and "Cu2O"-CaO at me...
Critical evaluation, thermodynamic modeling and optimization of the Cu-Fe-O system are presented. Th...
Calcium ferrite slags described by the Cu-Ca-Fe-O system are used in continuous copper-converting pr...
The present study is the first Calphad-type assessment of the Cu–Fe–O–Si system. All relevant thermo...
Experimental laboratory methods have been developed that enable phase-equilibria studies to be carri...
Phase equilibrium and thermodynamic experimental data in the Cu 2O - SiO2, Cu2O - CaO, and Cu2O - Ca...
Copper smelting and converting takes place over a wide range of chemistries and process conditions. ...
Liquidus temperatures and the solubility of copper oxide in slag are evaluated and discussed for the...
Calcium ferrite slags, which are represented by the "Cu O"-FeO-FeO-CaO system at copper saturation, ...
Ferrous calcium silicate (FCS) slags are reported to have high potential for use in the copper conve...
Limited data are available on phase equilibria of the multicomponent slag system at the oxygen parti...
Ferrous calcium silicate slags are potentially important for future practice in copper converting op...
Al2O3, CaO, and MgO are present as impurities in fayalite-based copper smelting systems. A thermodyn...
Ferrous calcium silicate slags (described by the FeO-FeO -CaO-SiO system) are the basis for a number...
One of the important objectives of copper smelting/converting process is to remove impurities from m...
Phase equilibrium Studies have been carried out on the systems "Cu2O"-FeO-Fe2O3 and "Cu2O"-CaO at me...
Critical evaluation, thermodynamic modeling and optimization of the Cu-Fe-O system are presented. Th...