Study of Coal Microbiocenosis for Development of Biotechnological Method for its Desulfurization

2021;
: pp. 74 - 80
1
Odessa I.I. Mechnikov National University
2
Odessa I.I. Mechnikov National University
3
Odessa I.I. Mechnikov National University
4
Odessa I.I. Mechnikov National University
5
Odessa I.I. Mechnikov National University

A presence of microscopic fungi, heterotrophic bacteria, as well as neutrophilic and acidophilic chemolitotrophic bacteria was determined in coal microbiocenosis. The largest and most active towards pyrite sulfur removal is the Acidithiobacillus genus. Heterotrophic bacteria have the biggest potential when it comes to removal of organic sulfur. Preceding treatment of coal with “silicate” bacteria from the Bacillus genus will allow to use coal microbiocenosis for its biodesulfurisation at its full potential.

  1. Nazimko E.: Visti Donetskogo Girnichnogo Institutu, 2014, 2, 60.
  2. Tregubov D., Miroshnichenko D.: Koks i Khimiya, 2005, 6, 21.
  3. Blayda I., Vasyleva T.: Microbiologia i Biotechnologia, 2017, 3, 6. https://doi.org/10.18524/2307-4663.2017.3(39).110877
  4. Rossi G.: Adv. Biochem. Eng. Biotechnol., 2014, 142, 147. https://doi.org/10.1007/10_2013_178
  5. Karavayko G., Dubinina G., Kondrateva T: Mikrobiologia, 2006, 5, 593.
  6. Karavaiko G., Lobyreva L.: Fuel Process. Technol., 1994, 40, 167. https://doi.org/10.1016/0378-3820(94)90140-6
  7. Blayda I., Vasileva T., Baranov V. et al.: Biotechnologia Acta, 2015, 8, 56. https://doi.org/10.15407/biotech8.06.056
  8. Rawlings D.: Microb. Cell Fact., 2005, 4, 4. https://doi.org/10.1186/1475-2859-4-13
  9. Ralph F. Purdy, Joe E. Lepo, Bailey Ward: Сurr. Microbiol., 1993, 27, 219. https://doi.org/10.1007/BF01692879
  10. Malik A., Ali M., Jamal A. et al.: Geomicrobiol. J., 2017, 34, 109. https://doi.org/10.1080/01490451.2016.1143538
  11. Herhard F. (Ed.): Metody Obshchei Bacteriologii, t.2. Mir, Moskva 1984.
  12. Karavayko G., Rossi Dzh., Agate A.: Centr Mezhdunarodnyh Proektov GKNT, Moskva 1989.
  13. Belly R., Brock T.: J. Bacteriol., 1974, 117, 726.
  14. Ramesh M., Anbusaravanan N., Loganathan A.: J. Pharmacy Biol. Sci., 2014, 9, 38.
  15. Liu W., Xu X., Wu X. et al.: Environ. Geochem. Health, 2006, 28, 133. https://doi.org/10.1007/s10653-005-9022-0
  16. Karavaiko G., Krutsko V., Mel'nikova E. et al.: Mikrobiologiia, 1980, 49, 547.
  17. Yang X., Wang S., Liu Y. et al.: Can. J. Microbiol., 2015, 61, 65. https://doi.org/10.1139/cjm-2014-0250
  18. Johnson D., Ghauri M., Said M.: Appl. Environ. Microbiol., 1992, 58, 1423.
  19. Blayda I.: Biotechnologia Acta, 2014, 7, 94. https://doi.org/10.15407/biotech7.05.094
  20. Kuzyakina T., Hainasova T., Levenez O.: Vestnik KRAUNTs. Nauki o Zemle, 2008, 2, 76.