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2011 | 20 | 2 |

Tytuł artykułu

Bioaccumulation of Cr(VI) ions from aqueos solutions by Aspergillus niger

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Our paper presents biological Cr(VI) removal from water solution by applying a clean fungi culture, namely Aspergillus niger. The growth of the organism and removal of chromium(VI) were done in water solution of various chromium(VI) contents and at optimal pH value. During 14 days of incubation, samples of 5 ml each were collected daily to determinate chromium(VI) contents in solution. Then the efficiency of this biological removal was also specified. The Cr(VI) removal process may occur via reduction, biosorption, or bioaccumulation pathways. To determine which pathway may be used in the study the Cr(III) contents were also determined in the samples as well chromium contents in ooze after mycelium irrigating and in mycelium.

Wydawca

-

Rocznik

Tom

20

Numer

2

Opis fizyczny

p.345-349,fig.,ref.

Twórcy

autor
  • Faculty of Mining and Geoengineering, University of Science and Technology, Mickiewicza 30, 30-059 Krakow, Poland
autor

Bibliografia

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  • 6. SEN M., DASTIDAR M.G., ROYCHOUDHURY P.K. Biological removal of Cr(VI) using Fusarium solani in batch and continuous modes of operation. Enzyme and Microbial Technology. 41, 51, 2007.
  • 7. BAI RS., ABRAHAM TE. Studies on chromium (VI) adsorption-desorption using immobilized fungal biomass. Bioresour Technol. 87, 17, 2003.
  • 8. SRINATH T., VERMA T., RAMTEKA PW., GARG SK.. Chromium(VI) biosorption and bioaccumulation by chromate resistant bacteria. Chemophere. 48, 427, 2002.
  • 9. DURSUN A.Y., ULSU G., CUCI Y., AKSU Z. Bioaccumulation of copper(II), lead(II) and chromium(VI) by growing Aspergillus niger. Process Biochem. 38, 1647, 2003.
  • 10. DONMEZ G., KOCBERBER N. Bioaccumulation of hexavalent chromium by enriched microbial cultures obtained from molasses and NaCl containing media. Process Biochem. 40, 2493, 2005.
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  • 12. MUNGASAVALLI D.P., VIRARAGHAVAN T., YEECHUNG JIN. Biosorption of chromium from aqueous solutions by pretreated Aspergillus niger: Batch and column studies. Colloid and surfaces A. 301, 214, 2007.
  • 13. KSHEMINSKA H., FEDOROVYCH D., BABYAK L., YANOVYCH D., KASZYCKI P., KOLOCZEK H. Chromium(III) and (VI) tolerance and bioaccumulation in yeast: a survey of cellular chromium content in selected strains of representative genera. Process Biochemistry. 40, 1565, 2005.
  • 14. SRIVASTAVAA S., THAKURB I.S. Evaluation of bioremediation and detoxification potentiality of Aspergillus niger for removal of hexavalent chromium in soil microcosm. Soil Biology & Biochemistry. 38, 1904, 2006.
  • 15. KAPOOR A., VIRARAGHAVAN T. Fungal biosorption – an alternative option for heavy metal bearing wastewaters. Bioresource Technology. 53, 195, 1995.
  • 16. PARKA D., YEOUNG-SANG YUNB, JI HYE JOA, JONGMOON PARKA. Mechanism of hexavalent chromium removal by dead fungal biomass of Aspergillus niger. Water Research. 39, 533, 2005.
  • 17. KUMAR R., NARSI R. BISHNOI GARIMA, KIRAN BISHNOI. Biosorption of chromium(VI) from aqueous solution and electroplating wastewater using fungal biomass. Chemical Engineering Journal. 135, 202, 2008.
  • 18. DONGHEE PARK, YEOUNG-SANG YUN, JONG MOON PARK. Use of dead fungal biomass for the detoxification of hexavalent chromium: screening and kinetics. Process Biochemistry. 40, 2559, 2005.
  • 19. ZIAGOVA M., DIMITRIADIS G., ASLANIDOU D., PAPAIOANNOU X., LITOPOULOU T.E., LIAKOPOULOU-KYRIAKIDES M. Comparative study of Cd(II) and Cr(VI) biosorption on Staphylococcus xylosus and Pseudomonas sp. in single and binary mixtures. Bioresource Technology. 98, 2859, 2007.
  • 20. MING ZHOU, YUNGUO LIU, GUANGMING ZENG, XIN LI, WEIHUA XU, TING FAN. Kinetic and equilibrium studies of Cr(VI) biosorption by dead Bacillus licheniformis biomass. World J. Microbiol. Biotechnol. 23, 43, 2007.
  • 21. MORALES-BARRERA L., CRISTIANI-URBINA E. Removal of hexavalent chromium by Trichoderma viride in an airlift bioreactor. Enzyme and Microbial Technology. 40, 107, 2006
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  • 23. GUPTA V.K., RASTOGI A. Sorption and desorption studies of chromium(VI) from nonviable cyanobacterium Nostoc muscorum biomass. Journal of Hazardous Materials. 154, 347, 2008.
  • 24. ANJANA K., KAUSHIK A., KIRAN B., NISHA R. Biosorption of Cr(VI) by immobilized biomass of two indigenous strains of cyanobacteria isolated from metal contaminated soil. Journal of Hazardous Materials. 148, 383, 2007.
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  • 27. GAJKOWSKA-STEFAŃSKA L., GUBERSKI S., GUŁOWSKI W., MAMAK Z., SZPERLIŃSKI Z. Laboratory research of water, sludge and sludge sediments. PW Publishing, Warsaw, 2001 [In Polish].
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  • 30. PN-C-04604:1977
  • 31. PN-EN ISO 18412:2007
  • 32. PN-EN 12441-10

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.dl-catalog-c3b28c4c-8e07-4d4c-b25b-ade0db61cfdd
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