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Mineral Processing and Extractive Metallurgy
Transactions of the Institutions of Mining and Metallurgy: Section C
Volume 109, 2000 - Issue 2
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Articles

Zinc reoxidation in the shaft of a zinc–lead Imperial Smelting Furnace—1: zinc–carbon–oxygen system with deposition initiated on a quartz substrate and subsequent propagation on zinc oxide

Pages 97-104 | Published online: 18 Jul 2013

References

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  • Clarke J. A. and Fray D. J. The rate of deposition and the mor-phology of zinc oxide deposited from Zno,o/CO/CO2/Ar gas mixtures. J. Materials Science,13, 1978, 1921-5.
  • Clarke J. A. and Fray D. J. Oxidation of zinc vapour by hydrogen—water vapour—carbon dioxide—carbon monoxide—argon mixtures. Trans. Instn Min. Metall. (Sect. C: Mineral Process. Extr. Metall.),91, 1982, C26-30.
  • Dell'Amico M. and See J. B. Accretion reduction in the offtake of the Imperial Smelting Furnace. In Pyrometallurgy '87 (London: IMM, 1987), 305–46.
  • Leonard R. L. Oxidation kinetics of Zn—0O2—CO gas mixtures. M.Sc. thesis, Colorado School of Mines, 1985.
  • Stansbury K. L. An experimental study of the oxidation of zinc vapour. M.Sc. thesis, Colorado School of Mines, 1987.
  • Lewis L. A. and Cameron A. M. Oxidation kinetics of zinc vapour in CO : CO2 mixtures: Part I Comparison with past litera-ture. Metall. Trans. B,26, 1995, 911-8.
  • Lewis L. A. and Cameron A. M. Oxidation kinetics of zinc vapour in CO : CO2 mixtures: Part II Application of plug flow con-cepts. Metall. Trans. B,26, 1995, 919-24.

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