Publication Cover
Canadian Metallurgical Quarterly
The Canadian Journal of Metallurgy and Materials Science
Volume 54, 2015 - Issue 4
117
Views
1
CrossRef citations to date
0
Altmetric
Chemical and Extractive Metallurgy – Pyrometallurgy

The investigation of the aluminothermic reduction of dissolved ilmenite in molten cryolite

&

References

  • F. Cardarelli, Materials Handbook: A Concise Desktop Reference: Springer, 2008.
  • V. Babyuk, B. Friedrich, and V. Sokolov, ‘Investigations of liquid phase aluminothermic reduction of ilmenite’, World of Metallurgy, 2007, 60, 288–294.
  • T. A. Zhang, Z. Dou, H. Zhang, Z. Zhang, L. Niu, and J. He, ‘Preparation of titanium based ferrous alloys with low oxygen content by reduction-SHS’, 3rd International Symposium on HighTemperature Metallurgical Processing, 2012, 237–242.
  • V. M. Sokolov, V. D. Babyuk, Y. A. Zhydkov, and Y. Y. Skok, ‘Aluminothermic studies of a liquid partial reduced ilmenite’, Minerals Engineering, 2008, 21, 143–149. doi: 10.1016/j.mineng.2007.08.010
  • V. Chumarev, A. Dubrovskii, I. Pazdnikov, Y. Shurygin, and N. Sel'menskikh, ‘Technological possibilities of manufacturing highgrade ferrotitanium from crude ore’, Russian Metallurgy (Metally), 2008, 2008, 459463.
  • N. J. Welham, ‘Mechanochemical reaction between ilmenite (FeTiO3) and aluminium’, Journal of Alloys and Compounds, 1998, 270, 228236.
  • M. D. J. Sleziona, J. Wieczorek, ‘Application of liquid Aluminium and FeO.TiO2 powder to the synthesis of composites’, in 12th international scientific conference on achievements in mechanical and materials engineering, Kolobrzeg, Poland, 2003, 937–941.
  • J. Sleziona, M. Dyzia, J. Myalski, and J. Wieczorek, ‘The structure and properties of sinters produced from composite powders Al–Al2O3–Al3Fe3Al3Ti’, Journal of Materials Processing Technology, 2005, 162–163, 127–130. doi: 10.1016/j.jmatprotec.2005.02.183
  • A. Dolata-Grosz, B. Formanek, J. Sleziona, and J. Wieczorek, ‘AlFeAl-TiAl-Al2O3 composite with hybrid reinforcement’, Journal of Materials Processing Technology, 2005, 162–163, 33–38. doi: 10.1016/j.jmatprotec.2005.02.009
  • T. E. Jentoftsen, ‘Behaviour of iron and titanium species in cryolitealumina melts’, Doctoral thesis, Norwegian University of Science and Technology, Faculty of Natural Sciences and Technology, Department of Materials Technology, 2000
  • K. G. H. Kavande, ‘Preparation of aluminium master alloys by electrolysis in molten cryolite’, Aluminium, 1990, 66, 560–564.
  • K. Grjotheim, Aluminium electrolysis: fundamentals of the HallHéroult process: Aluminium-Verlag, 1982.
  • H. G. Johansen, A. Sterten and J. Thonstad, ‘The phase diagrams of the systems Na3AlF6-Fe0.947O and Na3AlF6-FeF2 and related activities of FeF2 from Emf measurements’, Acta Chemica Scandinavica, 1989, 43, 417–420. doi: 10.3891/acta.chem.scand.43-0417
  • Y. Y Qiu Zhuxian, Zhang Mingjie, Shenyang, K. Grjotheim and H. kvande, ‘Preparation of Al-Ti-B master alloy by thermal reduction and electrolysis of B2O3 and TiO2 in cryolite-alumina melts’, Aluminium, 1988, 64, 1254–1257.
  • Y. Y. Qiu Zhuxian, Zhang Mingjie, Shenyang, K. Grjotheim and H. kvande, ‘Formation of Al-Mn master alloys by electrolysis ofmanganese oxide in cryolite-alumina melts’, Aluminium, 1988, 64, 603–605.
  • Y. Y. Qiu Zhuxian, Zhang Mingjie, Shenyang, K. Grjotheim and H. kvande, ‘Formation of aluminium-titanium master alloys by electrolysis and by thermal reduction of titania in cryolite-alumina melts’, Aluminium, 1988, 64, 606–609.
  • M. Hosseinpouri, S. A. Mirmonsef, and M. Soltanieh, ‘Production of Al-Ti master alloy by aluminothermic reduction technique’, Canadian Metallurgical Quarterly, 2007, 46, 139–144. doi: 10.1179/cmq.2007.46.2.139
  • D. L. Cao, Z. X. Qiu, J. K. Wang, Z. N. Shi, and Z. W Wang, ‘Production of Al-Ti master alloy starting from TiO2’, Foundry, 2006, 55, 803–806.
  • Y. Zhang, X. Wu, and R. Rapp, ‘Solubility of alumina in cryolite melts: measurements and modeling at 1300 K’, Metallurgical and Materials Transactions B, 2003, 34, 235–242. doi: 10.1007/s11663-003-0010-4
  • P. J. Black, ‘The structure of FeAl3. I’, Acta Crystallographica, 1955, 8, 43–48. doi: 10.1107/S0365110X5500011X
  • G. Bester and M. Fähnle, ‘Interpretation of ab initio total energy results in a chemical language: II. Stability of TiAl3 and ScAl3’, Journal of Physics Condensed Matter, 2001, 13, 11551–11565. doi: 10.1088/0953-8984/13/50/314
  • C. S. T. Junius D. Edwards, Lee A. Cosgrove and Allen S. Russell, ‘Electrical conductivity and density of molten cryolite with additives’, J. Electrochem. Soc., 1953, 100, 508–512.
  • G. Mamantov and R. Marassi, Molten Salt Chemistry: An Introduction and selected applications: Springer, 1987.
  • V. Raghavan, ‘Al-Fe-Ti (aluminum-iron-titanium) ‘, Journal of Phase Equilibria, 2002, 23, 367–374. doi: 10.1361/105497102770331613
  • H. J. Wouterlood, ‘Reduction of ilmenite with carbon’, Journal of Chemical Technology and Biotechnology, 1979, 29, 603–618.
  • H. Sibum, V. Güther, O. Roidl, F. Habashi, and H. U. Wolf, ‘Titanium, Titanium Alloys, and Titanium Compounds’, in Ullmann's Encyclopedia of Industrial Chemistry, ed: Wiley-VCH, 2000.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.