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Canadian Metallurgical Quarterly
The Canadian Journal of Metallurgy and Materials Science
Volume 56, 2017 - Issue 4
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Invited Paper Series: Ni-Co 2017 Symposium

Key factors affecting nickel recovery during the segregation of laterite ores

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Pages 401-409 | Received 25 Apr 2017, Accepted 21 Jul 2017, Published online: 20 Aug 2017

References

  • Grimsey DE. An investigation of the segregation process applied to Western Australian nickel laterites [PhD thesis]. Perth, WA, Australia: Curtin University; 2015.
  • Davidson R. Nickel segregation research at Anglo American Research Laboratories. Part 4. The role of iron oxides in nickel segregation. Proc. Nickel Segregation; 1972 Feb; San Francisco, CA, USA: The AIME Metallurgical Society. p. 108–129.
  • Landers M, Gräfe M, Gilkes RJ, et al. Nickel distribution and speciation in rapidly dehydroxylated goethite in oxide-type laterite ores: XAS and TEM spectroscopic (EELS and EFTEM) investigation. Aust J Earth Sci. 2011;58:745–765. doi: 10.1080/08120099.2011.602985
  • Fortini OM, Fruehan RJ. Rate of reduction of ore-carbon composites: part I. Determination of intrinsic rate constants. Metall Mater Trans B. 2005;36:865–872. doi: 10.1007/s11663-005-0088-y
  • Warner S, Sridhar R, Bakker HF. Thermal constraints on the segregation of nickel from laterite ores. Proc. Nickel Segregation; 1972 Feb; San Francisco, CA, USA: The AIME Metallurgical Society. p. 241–264.
  • Ericson A, Svensson J, Ishii K. Development of the MINPRO-PAMCO nickel segregation process. J Metals. 1984;36:42–46.

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