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Sulfide capacity of high alumina blast furnace slags

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Abstract

Sulfide capacities of high alumina blast furnace slags were experimentally determined using the gas-slag equilibration technique. Two different slag systems were considered for the current study, namely, CaO-SiO2-MgO-Al2O3 quaternary and CaO-SiO2-MgO-Al2O3-TiO2 quinary system. The liquid slag was equilibrated with the Ar-CO-CO2-SO2 gas mixture. Experiments were conducted in the temperature range of 1773 to 1873 K. The effects of temperature, basicity, and the MgO and TiO2 contents of slags on sulfide capacity were studied. As expected, sulfide capacity was found to increase with the increase in temperature and basicity. At the higher experimental temperature, titania decreases the sulfide capacity of slag. However, at the lower temperature, there was no significant effect of titania on the sulfide capacity of slag. Sulfide capacity increases with the increase in MgO content of slag if the MgO content is more than 5 pct.

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References

  1. F.D. Richardson and C.J.B. Fincham: J. Iron Steel Inst., 1954, vol. 178, pp. 4–15.

    CAS  Google Scholar 

  2. K. Kärsrud: Scand. J. Metall., 1984, vol. 13, pp. 173–75.

    Google Scholar 

  3. I. Ghita and H.B. Bell: Ironmaking and Steelmaking, 1982, vol. 9 (6), pp. 239–43.

    Google Scholar 

  4. K. Kärsrud: Scand. J. Metall., 1984, vol. 13, pp. 265–68.

    Google Scholar 

  5. V.S. Venkatadri and S.K. Gupta: Trans. Indian Inst. Met., 1979, vol. 32 (3), pp. 235–38.

    CAS  Google Scholar 

  6. R.W. Young, J.A. Duffy, G.J. Hassall, and Z. Xu: Ironmaking and Steelmaking, 1992, vol. 19 (3), pp. 201–19.

    CAS  Google Scholar 

  7. D.J. Sosinsky and I.D. Sommerville: Metall. Trans. B, 1986, vol. 17B, pp. 331–37.

    Article  CAS  Google Scholar 

  8. M.M. Nzotta, D. Sichen, and S. Seetharaman: Iron Steel Inst. Jpn., 1998, vol. 38 (11), pp. 1170–79.

    CAS  Google Scholar 

  9. T. Xin and X. Chushao: Iron Steel Inst. Jpn. Int., 1995, vol. 35 (4), pp. 367–71.

    Google Scholar 

  10. S.D. Brown, R.J. Roxburgh, I. Ghita, and H.B. Bell: Ironmaking and Steelmaking, 1982, vol. 9 (4), pp. 163–67.

    Google Scholar 

  11. M.M. Nzotta, D. Sichen, and S. Seetharaman: Iron Steel Inst. Jpn., 1999, vol. 39 (7), pp. 1657–63.

    Google Scholar 

  12. S.R. Simeonov, R. Sridhar, and J.M. Toguri: Metall. Trans. B, 1995, vol. 26B, pp. 325–34.

    CAS  Google Scholar 

  13. I.D. Sommerville and H.B. Bell: Can. Metall. Q., 1982, vol. 21 (2), pp. 145–55.

    CAS  Google Scholar 

  14. J.A. Duffy and M.D. Ingram: J. Am. Chem. Soc., 1971, vol. 93, pp. 6448–55.

    Article  CAS  Google Scholar 

  15. C.B. Fincham and F.D. Richardson: Proc. R. Soc. A, 1954, vol. 223, pp. 40–62.

    Article  Google Scholar 

  16. K.P. Abraham and F.D. Richardson: J. Iron Steel Inst., 1960, vol. 196, pp. 309–17.

    CAS  Google Scholar 

  17. K. Karsrud: Scand. J. Metall., 1984, vol. 13, pp. 144–50.

    Google Scholar 

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Correspondence to Amitabh Shankar.

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Shankar, A., Görnerup, M., Seetharaman, S. et al. Sulfide capacity of high alumina blast furnace slags. Metall Mater Trans B 37, 941–947 (2006). https://doi.org/10.1007/BF02735016

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