Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 15 references without a DOI — listed, not checked
no DOI — not checkedA. Yazawa and M. Kameda, Fundamental Studies on Copper Smelting. III. Partial Liquidus Diagram for Cu2S-FeS-FeO System, Technol. Rep. Tohoku Univ., 1955, 19(2), p 239-250
no DOI — not checkedA. Yazawa and M. Kameda, Fundamental Studies on Copper Smelting. IV. Solubility of FeO in Copper Matte from SiO2-saturated FeO-SiO2 Slag, Technol. Rep. Tohoku Univ., 1955, 19(2), p 251-261
no DOI — not checkedKameda, M. and A. Yazawa. The Oxygen Content of Copper Mattes, in Physical Chemistry of Process Metallurgy, Part 2 (TMS Conference Proceedings, Interscience, NY, 1961)
no DOI — not checkedN. Korakas, Etude thermodynamic de l’équilibre entre scories ferro-siliceuses et mattes de cuivre. Application aux problèmes posés par la formation de magnetite lors du traitement des minerais sulfurés de cuivre (Univirsité de Liège, 1964)
no DOI — not checkedU. Kuxmann and F.Y. Bor, Studies on the Solubility of Oxygen in Copper Mattes under Ferric Oxide Slags Saturated with Silica, Erzmetall, 1965, 18, p 441-450
no DOI — not checkedA. Geveci and T. Rosenqvist, Equilibrium Relations Between Liquid Copper, Iron-Copper Matte, and Iron Silicate Slag at 1250 °C, Trans. Inst. Min. Metall., 1973, 82, p C193-C201
no DOI — not checkedH. Jalkanen, Copper and Sulfur Solubilities in Silica-Saturated Iron Silicate Slags from Copper Mattes, Scand. J. Metall., 1981, 10(4), p 177-184
no DOI — not checkedA. Yazawa, S. Nakazawa, and Y. Takeda, Distribution Behavior of Various Elements in Copper Smelting Systems, Adv. Sulfide Smelt., 1983, 1, p 99-117
no DOI — not checkedY. Takeda, Oxygen Potential Measurement of Iron Silicate Slag–Copper–Matte System, in Proceedings International Conference on Molten Slags, Fluxes Salts ‘97, 5th (Iron and Steel Society, Warrendale, 1997)
no DOI — not checkedY. Takeda, Copper Solubility in Matte Smelting Slag, in Proceeding International Conference on Molten Slags, Fluxes Salts ‘97, 5th (Iron and Steel Society, Warrendale, 1997)
no DOI — not checkedJ.M. Font et al., Solubility of Copper or Nickel in Iron-Silicate Base Slag Equilibrated with Cu2s-FeS or Ni3S2-FeS Matte Under High Partial Pressures of SO2, Metall. Rev. MMIJ, 1998, 15(1), p 75-86
no DOI — not checkedE. Jak et al., Integrated Experimental Phase Equilibria and Thermodynamic Modelling Studies for Copper Pyrometallurgy, in 9th International Copper Conference, Kobe, Japan (2016), pp. 1316–1331
no DOI — not checkedHidayat, T., et al., Experimental Investigation of Gas/Slag/Matte/Spinel Equilibria in the Cu-Fe-O-S-Si System at T = 1200 °C and p(SO2) = 0.25 atm. Metall. Mater. Trans. B, 2018. 49(4): p. 1750-1765.
no DOI — not checkedA. Fallah-Mehrjardi, P.C. Hayes, and E. Jak, Experimental Investigation of Gas/Slag/Matte/Tridymite Equilibria in the Cu-Fe-O-S-Si system in Controlled Gas Atmospheres: Experimental Results at T = 1473 K [1200 °C] and p(SO2) = 0.1 atm, Int. J. Mater. Res., 2018, 49, p 1732-1739
no DOI — not checkedD. Shishin, P.C. Hayes, and E. Jak, Development and Applications of Thermodynamic Database in Copper Smelting, in Copper’19 Conference (Vancouver, 2019)
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