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Microbial removal of pyrite from coal using a percolation bioreactor

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Summary

To compare the suspension and the percolation process system for the microbial desulphurization of coal the microbial pyrite oxidation in coal during storage in dumps was investigated in laboratory experiments with Thiobacillus ferrooxidans using a percolation bioreactor and resulted in a removal of 75% of pyrite within 70 days. In the initial desulphurization phase 450 mg pyritic-S/kg coal per day were oxidized at maximum rate, while the overall rate was determined to 130 mg pyritic-S/kg coal per day. During the desulphurization the mean particle size of the coal was reduced from 0.55 mm to 0.175 mm. As shown by microscopy and elemental analyses of the coal the pyrite was completely removed from small coal particles, whereas parts of it remained in the core of the greater particles.

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References

  • Anonymous (1985). Deutsche Einheitsverfahren zur Wasser-, Abwasser- und Schlammuntersuchung, DIn 38407, Weinheim: Verlag Chemie

  • Beier, E. (1982). Glückauf Forschunshefte, 43, 132–134.

    Google Scholar 

  • Beier, E. (1985). Removal of pyrite from coal using bacteria. In: Coal Science and Technology 9, Attia, Y.A., ed. pp 653–672, Amsterdam: Elsevier

    Google Scholar 

  • Beyer, M., Ebner, H.G., and Klein, J. (1986a). Appl. Microbiol. Biotechnol. 24, 342–346

    Google Scholar 

  • Beyer, M., Ebner, H.G., Assenmacher, H., and Frigge, J. (1986b). Fuel, (in press)

  • Bosecker, K. (1982). Mikrobielle Laugung (Leaching). In: Handbuch der Biotechnologie, Präve, R.; Faust, K.; Sittig, W. and Sukatsch, D.A., eds. pp 535–553, Wiesbaden: Akademische Verlagsgesellschaft

    Google Scholar 

  • Hoffman, M.R., Faust, B.C., Panda, F.A., Koo, H.H., and Tsuchiya, H.M. (1981). Appl. Environm. Microbiol. 42, 259–271

    Google Scholar 

  • Huber T.F., Ras, C., and Kossen, N.W.F. (1984) In: Proceedings of the third European conference on biotechnology, Vol. III, pp 151–159, Weinheim: Verlag Chemie

    Google Scholar 

  • Kargi, F. (1984). Adv. Biotechnol. Processes, 3, 241–272

    Google Scholar 

  • Kiesskalt, S., and Matz, G. (1951). VDI-Zeitschrift, 93, 58–60

    Google Scholar 

  • Pooley, F.D., and Atkins, A.S. (1983). Desulphurization of coal using bacteria by both dump and process plant techniques. In: Recent Progress in Biohydrometallurgy, Rossi, G.; and Torma, A.E., eds. pp 511–526, Cagliari: Associazione Mineraria Sarda

    Google Scholar 

  • Leathen, W.W., McIntyre, L.D., and Braley, S.A. (1951). Science, 114, 280–281

    Google Scholar 

  • McCready, R.G.L., and Zentilli, M. (1985). CIM Bulletin, 78, No. 876, 67–68

    Google Scholar 

  • Meyers, R.A. (1977). Coal Desulphurization, New York: Marcel Dekker

    Google Scholar 

  • Monticello, D.J., and Finnerty, W.R. (1985) Ann. Rev. Microbiol. 39, 371–389

    Google Scholar 

  • Stach, E.M., Mackowsky, M.I., Teichmüller, M., Taylor, G.H., Chandra, D., and Teichmüller, R. (1982), Stach s Textbook of Coal Petrology, Berlin: Gebrüder Bornträger

    Google Scholar 

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Beyer, M. Microbial removal of pyrite from coal using a percolation bioreactor. Biotechnol Lett 9, 19–24 (1987). https://doi.org/10.1007/BF01043386

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