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Soviet Powder Metallurgy and Metal Ceramics

, Volume 30, Issue 11, pp 945–948 | Cite as

High-temperature oxidation of chromium (II) sulfide in air

  • V. I. Berezanskaya
  • V. A. Lavrenko
  • A. P. Pomytkin
  • V. Zh. Shemet
Research Methods and Powder Material Properties

Keywords

Oxidation Sulfide Chromium 
These keywords were added by machine and not by the authors. This process is experimental and the keywords may be updated as the learning algorithm improves.

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Literature cited

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    V. I. Berezanskaya, V. A. Lavrenko, and A. P. Pomytkin, Inventors' Certificate 1594139, “Method of obtaining chromium sulfides,” Otkrytiya. Izobret., No. 35, 134 (1990).Google Scholar
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    A. Noel, “Oxidation of chromium sulfides in oxygen between 100–1000°C,” Bull. Chim. Soc. France, No. 1, 91–98 (1968).Google Scholar
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    N. Birks and D. Maier, Introduction to High-Temperature Oxidation of Metals [Russian translation], Metallurgiya, Moscow (1987).Google Scholar
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    S. V. Radzikovskaya and V. Kh. Oganesyan, “Production and physicochemical properties of chromium sesquisulfide,” Armyanskii Khimicheskii Zhurnal,19, No. 11, 844–848 (1966).Google Scholar
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    D. Caplan and G. Spronle, “Oxidation behaviour of chromium compounds in gases containing sulphur,” J. Oxid. Met.,9, 459–465 (1975).Google Scholar

Copyright information

© Plenum Publishing Corporation 1992

Authors and Affiliations

  • V. I. Berezanskaya
    • 1
  • V. A. Lavrenko
    • 1
  • A. P. Pomytkin
    • 1
  • V. Zh. Shemet
    • 1
  1. 1.Institute of Materials ScienceAcademy of Sciences of the UkraineUkraine

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