
Degradation of soil cyanide by single and mixed cultures of Pseudomonas stutzeri and Bacillus subtilis
Open Access
|Mar 2014References
- 1. Solomonson LP. Cyanide as a metabolic inhibitor. In: Vennesland B, Conn EE, Knowles CJ, Westley J, Wissing F, editors. Cyanide in biology. New York (NY): Academic Press; 1981. p. 11-28.
- 2. Knowles CJ. Cyanide utilization and degradation by microorganisms. CIBA - Found Symp 1988;140:3-15. PMID: 3073060
- 3. Knowles CJ. Microorganisms and cyanide. Bacteriol Rev 1976;40:652-80. PMCID: PMC413975
- 4. Yu XZ, Peng XY, Wang GL. Photo induced dissociation of ferri and ferro cyanide in hydroponic solutions. Intl J Environ Sci Technol 2011;8:853-62. doi: 10.1007/BF03326268
- 5. Smith A, Mudder TI. The Chemistry and Treatment of Cyanidation Wastes. London: Mining Journal Books Ltd; 1991.
- 6. Meyers PR, Rawlings DE, Woods DR, Lindsey GG. Isolation and characterization of a cyanide dihydratase fromC1. J Bacteriol 1993;175:6105-12. PMCID: PMC206703
- 7. Strobel GA. Cyanide utilization in soil. Soil Sci 1967;103:299-302.
- 8. Chena SC, Liu JK. The respiratory responses to cyanide of a cyanide-resistant Klebsiella oxytoca bacterial strain. FEMSMicrobiolLett1999;175:37-43.doi:10.1111/j.1574-6968.1999.tb13599.x
- 9. Ubalua AO. Cassava wastes: treatment options and value addition alternatives. Afr J Biotechnol 2007;6:2065-73.
- 10. Okechi RN, Ihejirika CE, Chiegboka NA, Ibe IJ. Evaluation of the effects of cassava mill effluent on the microbial populations and physicochemical parameters at different soil depths. Int J Biosci 2012;2:139-45.
- 11. Kaewkannetra P, Imai T, Garcia-Garcia FJ, Chiu TY. Cyanide removal from cassava mill waste water using Azotobacter vinelandii TISTR 1094 with mixed microorganisms in activated sludge treatment system. J Harzard Mater 2009;172:224-8. doi: 10.1016/j.jhazmat.2009.06.162
- 12. Naveena D, Majumder CB, Mondal P, Shubha D. Biological treatment of cyanide containing waste water. Res J Chem Sci 2011;1:15-21.
- 13. Parmar P, Soni A, Vyas K, Desai PV. Isolation and characterization of cyanide degrading bacterial strains from contaminated soil. Int J Environ Sci 2012;2:2006-14. doi: 10.6088/ijes.00202030084
- 14. Dursun AY, Aksu Z. Biodegradation kinetics of ferrous(II) cyanide complex ions by immobilizedin a packed bed column reactor. Process Biochem 2000;35:615-22. doi: 10.1016/S0032-9592(99)00110-7
- 15. Dash RR, Balomajumder C, Kumar A. Cyanide removal by combined adsorption and biodegradation processs. Iran J Environ Health Sci Eng 2006;3:91-6.
- 16. Collins CH, Lyne PM. Microbiological Methods. London: Butherworths; 1970.
- 17. Willians HJ, Edwards TG. Estimation of cyanide with alcaline picrate. J Sci Food Agric 1980;31:15-22. doi: 10.1002/ jsfa.2740310104
- 18. Skinner FA, Lovelock DW. Identification Methods for Microbiologists. 2nd ed. London: Academic Press; 1979.
- 19. Holt JG, Krieg NR, Sneath PHA, Staley JT, Williams ST.Bergey’s Manual of Determinative Bacteriology. 9th ed.Baltimore: Williams and Wilkins; 1994.
- 20. Ingvorsen K, Højer-Pedersen B, Godtfredsen SE. Novel cyanide hydrolyzing enzyme fromsubsp. denitrificans. Appl Environ Microbiol 1991;57:1783-9. PMID: 1872607
- 21. Ebbs S. Biological degradation of cyanide compounds. Curr Opin Biotechnol 2004;15:231-6. PMID: 15193331
- 22. Huertas MJ, Saez LP, Roldan MD, Luque-Almagro VM, Martinez-Luque M, Blasco R, Moreno-Vivian C, Castillo F, Garcia-Garcia I. Alkaline cyanide degradation byCECT5344 in a batch reactor: Influence of pH. J Harzard Mater 2010;179:72-8. doi: 10.1016/j.jhazmat.2010.02.059
- 23. Harris R, Knowles CJ. Isolation and growth of aspecie that utilizes cyanide as a source of nitrogen. J Gen Microbiol 1983;129:1005-11. doi: 10.1099/00221287-129-4-1005
- 24. Luque-Almagro VM, Blasco R, Huertas MJ, Martínez-Luque M, Moreno-Vivián C, Castillo F, Roldán MD. Alkaline cyanide biodegradation byCECT5344. Biochem Soc Trans 2005;33:168-9. PMID: 15667296
- 25. Sirianuntapiboon S, Chuamkaew C. Packed cage rotating biological contractor system for treatment of cyanide waste water. Bioresour Technol 2007;98:266-72. PMID: 16530409
- 26. Skowronski B, Strobel GA. Cyanide resistance and cyanide utilization by a strain of. Canad J Microbiol 1969;15:93-8. doi: 10.1139/m69-014
- 27. Castric PA, Conn EE. Formation of -cyanoalanine by O-acetylserine sulfhydrylase. J Bacteriol 1971;108:132-6.PMID: 5001194
- 28. Kunz DA, Wang C, Chen J. Alternative routes of enzymic cyanide metabolism inNCIMB11764. Microobiology 1994;140:1705-12. PMID: 8075806
- 29. Barclay M, Hart A, Knowles CJ, Meeussen JCL, Tett VA.Biodegradation of metal cyanides by mixed and pure cultures of fungi. Enzyme Microbial Technol 1998;22:223-31. doi: 10.1016/S0141-0229(97)00171-3
- 30. Ezzi MI, Lynch JM. Biodegradation of cyanide byspp. andspp. Enzyme Microbial Te chnol . 2005;36:849-54. doi : 10.1016/ j . enzmictec.2004.03.030
DOI: https://doi.org/10.2478/10004-1254-65-2014-2449 | Journal eISSN: 1848-6312 (formerly 0004-1254) | Journal ISSN: 0004-1254
Language: English, Croatian, Slovenian
Page range: 113 - 119
Published on: Mar 25, 2014
Published by: Institute for Medical Research and Occupational Health
In partnership with: Paradigm Publishing Services
Keywords:
Related subjects:
© 2014 Ogbonnaya Nwokoro, Marie Esther Uju Dibua, published by Institute for Medical Research and Occupational Health
This work is licensed under the Creative Commons License.