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Volume 39 Issue 11
Nov.  2017
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Article Contents
XIANG Nan, GUO Yu-feng, GUO Xing-min. Formation mechanism of Ca3TiFe2O8 in a CaO-TiO2 -Fe2O3 system[J]. Chinese Journal of Engineering, 2017, 39(11): 1669-1673. doi: 10.13374/j.issn2095-9389.2017.11.009
Citation: XIANG Nan, GUO Yu-feng, GUO Xing-min. Formation mechanism of Ca3TiFe2O8 in a CaO-TiO2 -Fe2O3 system[J]. Chinese Journal of Engineering, 2017, 39(11): 1669-1673. doi: 10.13374/j.issn2095-9389.2017.11.009

Formation mechanism of Ca3TiFe2O8 in a CaO-TiO2 -Fe2O3 system

doi: 10.13374/j.issn2095-9389.2017.11.009
  • Received Date: 2016-12-01
  • Vanadium-titanium magnetite is one of the important raw materials for iron making in a blast furnace. Ca3TiFe2O8, which is a mineral of vanadium-titanium sinter, was discovered to form during the process; however, its formation mechanism is not clear. In this work, an X-ray diffraction analysis, an elemental spectroscopy, and a TG-DSC were employed to investigate the formation mechanism of Ca3TiFe2O8 and the formation law at different temperatures and at CaO and TiO2 contents in the CaO-TiO2 -Fe2O3 system. The formation mechanism of Ca3TiFe2O8 is clarified:CaO reacts with Fe2O3 to form Ca2 Fe2O5, and then continues to react with the CaTiO3 to form Ca3TiFe2O8. The longer the reaction time, the greater is the amount of Ca3TiFe2O8 formed. However, the effect of temperature on the formation of Ca3TiFe2O8 is not obvious. It is found that high CaO content contributes to the formation of Ca3TiFe2O8. Further, so long as TiO2 is present, Ca3TiFe2O8 is formed under the condition of equal molar concentration Fe2O3 and CaO.

     

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  • [8]
    Verein Deutscher Eisenhüttenleute. Slag Atlas. 2nd Ed. Dusseldorf:Verlag Stahleisen GmbH, 1995
    [9]
    Prasanna T R S, Navrotsky A. Energetics in the brownmilleriteperovskite pseudobinary Ca2Fe2O5-CaTiO3. J Mater Res, 1994, 9(12):3121
    [10]
    Rodriguez-Carvajal J, Vallet-Regi M, Calbet J M G. Perovskite threefold superlattices:a structure determination of the A3M3O8 phase. Mater Res Bull, 1989, 24(4):423
    [11]
    Grenier J C, Darriet J, Pouchard M, et al. Mise en evidence d' une nouvelle famille de phases de type perovskite lacunaire ordonnee de formule A3M3O8 (AMO2,67). Mater Res Bull, 1976, 11(10):1219
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