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Original Articles

Modeling and Simulation for Biodegradation of Mono-, Binary-, and Tertiary-substrate Batch Systems of Different Polyaromatic Sulfur Heterocyclic Compounds

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REFERENCES

  • Agarry, S.E., Solomon, B.O., and Layokun, S.K. (2008). Substrate inhibition kinetics of phenol degradation by binary mixed culture of Pseudomonas aeruginosa and Pseudomonas fluorescence from steady state and wash-out data. Afr. J. Biotechnol. 7:3927–3933.
  • Alam, K.Y., Worland, M.J., and Clarck, D.P. (1990). Analysis and molecular cloning of genes involved in thiophene and furan oxidation by E. coli. Appl. Biochem. Biotechnol. 24:843–855.
  • Caro, A., Boltes, K, Letón, P., and García-Calvo, E. (2008). Biodesulfurization of dibenzothiophene by growing cells of Pseudomonas putida CECT 5279 in biphasic media. Chemosphere 73:663–669.
  • Constanti, M., Giralt, J., and Bordons, A. (1996). Degradation and desulfurization of dibenzothiophene sulfone and other sulfur compounds by Agrobacterium NC501 and a mixed culture. Enzyme Microbiol. Technol 19:214–219.
  • Dean-Ross, D., Moody, J., and Cerniglia, C.E. (2002). Utilization of mixtures of polycyclic aromatic hydrocarbons by bacteria isolated from contaminated sediment. FEMS Microbiol. Ecol. 41:1–7.
  • Deriase, S.F., and El-Gendy, N.Sh. (2014). Mathematical correlation between microbial biomass and total viable countfor different bacterial strains used in biotreatment of oil pollution. Biosci. Biotechnol. Res. Asia 11:61–65.
  • Deriase, S.F., El-Gendy, N.Sh., and Ali, Sh. (2013). Kinetic Evaluation and Modeling for Batch Degradation of 2-Hydroxybiphenyl and 2,2'-Dihydroxybiphenyl by Corynebacterium variabilis Sh42. Desalination Water Treat. 51:4719–4728.
  • Deriase, S.F., El-Gendy, N.Sh., and Nassar, H.N. (2012). Enhancing biodegradation of dibenzothiophene by Bacillus sphaericus HN1 using factorial design and response surface optimization of medium components. Energy Sources Part A 34:2073–2083.
  • Duarte, G.F., Rosado, A.S., Seldin, L., De Araujo, W., and van Elsas, J.D. (2001). Analysis of bacterial community structure in sulfurous-oil containing soils and detection of species carrying dibenzothiophene desulfurization (dsz) genes. Appl. Environ. Microbiol. 67:1052–1062.
  • El-Gendy, N.Sh. (2006). Biodegradation potentials of dibenzothiophene by new bacteria isolated from hydrocarbon polluted soil in Egypt. Biosci. Biotechnol. Res. Asia 3:95–106.
  • Gai, Z., Yu, B., Li, L., Wang, Y., Ma, C., Feng, J., Deng, Z., and Xu, P. (2007). Cometabolic degradation of dibenzofuran and dibenzothiophene by a newly isolated carbazole-degrading Sphingomonas sp. strain. Appl. Environ. Microbiol. 73:2832–2838.
  • Guha, S., Peters, C.A., and Jaffe, P.R. (1999). MultiSubstrate biodegradation kinetics of naphthalene, phenanthrene, and pyrene mixtures. Biotechnol. Bioeng. 65:491–499.
  • Khedkar, S., and Shanker, R. (2014). Degradation of dibenzothiophene and its metabolite 3-hydroxy-2-formylbenzothiophene by an environmental isolate. Biodegradation 25:643–654.
  • Kim, S.B., Brown, R., Oldfield, C., Gilbert, S.C., and Goodfellow, M. (1999). Gordonia desulfuricans sp. nov., a benzothiophene-desulphurizing actinomycete. Int. J. Syst. Bacteriol. 49:1845–1851.
  • Kirkwood, K.M., Andersson, J.T., Fedorak, P.M., Foght, J.M., and Gary, M.R. (2007). Sulfur from benzothiophene and alkylbenzothiophenes supports growth of Rhodococcus sp. strain J7H1. Biodegradation 18:541–549.
  • Knightes, C.D., and Peters, C.A. (2006). Multi-Substrate biodegradation kinetics for binary and complex mixtures of polycyclic aromatic hydrocarbons. Environ. Toxicol. Chem. 25:1746–1756.
  • Nadalig, T., Raymond, N., Ni'matuzahroh, M, Budzinsk, H., and Bertrand, J.C. (2002). Degradation of phenanthrene, methylphenanthrenes and dibenzothiophene by a Sphingomonas strain 2mpII. Appl. Microbiol. Biotechnol 59:79–85.
  • Nuhoglu, A., and Yalcin, B. (2005). Model of phenol removal in a batch reactor. Proc. Biotechnol. 40:1233–1239.
  • Okpokwasili, G.C., and Nweke, C.O. (2005). Microbial growth and substrate utilization kinetics. Afr. J. Biotechnol. 5:305–317.
  • Park, K.S., Sims, R.C., Dupont, R.R., Doucette, W.J., and Matthews, J.E. (1990). Fate of PAH compounds in two soil types: Influence of volatilization, abiotic loss and biological activity. Environ. Toxicol. Chem. 9:187–195.
  • Sahinkaya, E., and Dilek, F.B. (2007). Biodegradation kinetics of 2,4-dichlorophenol by acclimated mixed cultures. Biotechnology 127:716–726.
  • Shuttleworth, K.L., and Cerniglia, C.E. (1996). Bacterial degradation of low concentrations of phenanthrene and inhibition by naphthalene. Microb. Ecol. 31:305–317.
  • Stringfellow, W.T., and Aitken, M.D. (1995). Competitive metabolism of naphthalene, methylnaphthalene, and fluorine by phenanthrene-degrading pseudomonads. Appl. Environ. Microbiol. 61:357–362.
  • Ukpaka, C.P. (2011). Biodegradation model on the effect of some physicochemical parameters on aromatic compounds in fresh water medium. Afr. J. Bacteriol. Res. 3:42–55.

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