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Extracellular elements-mobilizing compounds produced by consortium of indigenous bacteria isolated from kupferschiefer black shale – implication for metals biorecovery from neutral and alkaline polymetallic ores

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Extracellular compounds produced by a consortium of indigenous bacteria interact with the polymetallic Kupferschiefer black shale and implicate for elements mobilization and/or complexation. The extracellular compounds were identified by GC-MS as carboxylic acids, but also aromatic acids and alcohols. Due to their action in batch experiment 16 elements were mobilized from black shale. Among mobilized elements precious metals (Cu, Ni, Co, V) as well as toxic heavy metals (As) were determined. Extracellular metabolites produced by studied consortium may be utilized in non-contact biorecovery of precious metals from neutral or slightly alkaline ores, and in the bioremediation of heavy metalcontaminated sites.
Rocznik
Strony
87--96
Opis fizyczny
Bibliogr. 20 poz., rys., tab.
Twórcy
  • Laboratory of Environmental Pollution Analysis, Faculty of Biology, University of Warsaw, Miecznikowa 1, 02-096 Warsaw, Poland
  • Laboratory of Environmental Pollution Analysis, Faculty of Biology, University of Warsaw, Miecznikowa 1, 02-096 Warsaw, Poland
autor
  • Laboratory of Environmental Pollution Analysis, Faculty of Biology, University of Warsaw, Miecznikowa 1, 02-096 Warsaw, Poland
  • Laboratory of Environmental Pollution Analysis, Faculty of Biology, University of Warsaw, Miecznikowa 1, 02-096 Warsaw, Poland
Bibliografia
  • 1. ANJUM F., SHAHID M., AKCIL A., 2012, Biohydrometallurgy techniques of low grade ores: A review on black shale. Hydrometallurgy 117–118, 1–12.
  • 2. ANJUM F., BHATII H.N., ASGHER M., SHAHID M., 2010, Leaching of metal ions from black shale by organic acids produced by Aspergillus niger. J. App. Clay Sci. 47, 356–361.
  • 3. BIRCH L., BACHOFEN R., 1990, Complexing agents from microorganisms. Experientia 46, 827–834.
  • 4. BOSECKER K., 1997, Bioleaching: metal solubilization by microorganisms. FEMS Microbiol. Rev. 20, 591–604.
  • 5. BURGESTALLER W., SSHINNER F., 1993, Leaching of metals with fungi. J Biotechnol. 27, 91-116.
  • 6. GROUDEV S.N., 1987, Use of heterotrophic microorganisms in mineral biotechnology. Acta Biotechnol. 7, 299-306.
  • 7. HARTMANS S., SMITS J.P., VAN DER WERF M.J., VOLKERING F., DE BONT J.A.M., 1989, Metabolism of styrene oxide and 2-phenylethanol in the styrene-degrading Xanthobacter strain 124X. Appl. Environ. Microbiol. 55, 2850–2855.
  • 8. d’HUGES P., NORRIS P.R., HALLBERG K.B., SANCHEZ F., LANGWALDT J., GROTOWSKI A., CHMIELEWSKI T., GROUDEV S., BIOSHALE CONSORTIUM, 2008, Bioshale FP6 European project: exploiting black shale ores using biotechnologies? Minerals Engineering 21, 111–120.
  • 9. MATLAKOWSKA R., SKlODOWSKA A., 2009, The culturable bacteria isolated from organic-rich black shale potentially useful in biometallurgical procedures. J. Appl. Microbiol. 107, 858–866.
  • 10. MATLAKOWSKA R., NARKIEWICZ W., SKlODOWSKA A., 2010, Biotransformation of organic-rich copper bearing black shale ore by indigenous microorganisms isolated from Lubin copper mine (Poland). Environ. Sci. Technol. 44, 2433–2440.
  • 11. MATLAKOWSKA R., SKlODOWSKA A., NEJBERT K., 2012, Bioweathering of Kupferschiefer black shale (Fore-Sudetic Monocline, SW Poland) by indigenous bacteria: implication for dissolution and precipitation of minerals in deep underground mine. FEMS Microbiol. Ecol. 81, 99–110.
  • 12. MATLAKOWSKA R., RUSZKOWSKI D., SKlODOWSKA A., 2013, Microbial transformations of fossil organic matter of Kupferschiefer black shale – elements mobilization from metalloorganic compounds and metalloporphyrins by a community of indigenous microorganisms. Physicochem. Probl. Miner. Process. 49, 223–231.
  • 13. OSZCZEPALSKI S., 1999, Origin of the Kupferschiefer polymetallic mineralization in Poland. Mineral Deposita 34, 599–613.
  • 14. PARES Y., 1964a, Intervention des bacteries dans la solubilisation du cuivre. Ann. Inst. Pasteur (Paris) 107, 132–135.
  • 15. PARES Y., 1964b, Action de Serratia marcescens dans le cycle biologique des metaux. Ann. Inst. Pasteur (Paris) 107, 136–141.
  • 16. PARES Y. 1964c, Action d’Agrobacterium tumefaciens dans la mise en solution de l’or. Ann. Inst. Pasteur (Paris) 107, 141–143.
  • 17. RAJPERT L., SKLODOWSKA A., MATLAKOWSKA R., 2013, Biotransformation of copper from Kupferschiefer black shale (Fore-Sudetic Monocline, Poland) by yeast Rhodotorula mucilaginosa LM9. Chemosphere 91, 1257–1265.
  • 18. SAMBROOK J., RUSSEL D.W., 2001, Molecular cloning: A laboratory manual. 3rd edn. New York USA: Cold Spring Harbor Laboratory Press.
  • 19. SPECZIK S., 1994, Kupferschiefer mineralization in the light of organic geochemistry and coal petrology studies. Geol. Quarterly 38, 639–650.
  • 20. WENBERR G.M., ERBISH F.H., VOLIN M., 1971, Leaching of copper by fungi. Trans. Soc. Min. Eng. AIME 250, 207–212.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-24fef793-b676-4804-876a-595b43deca27
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