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Research Article

Economic comparison of enzymatic reactors and advanced oxidation processes applied to the degradation of phenol as a model compound

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Pages 344-353 | Received 28 Jan 2011, Accepted 01 Nov 2011, Published online: 18 Nov 2011

References

  • Adav SS, Chen MY, Lee DJ, Ren NQ. 2007. Degradation of phenol by aerobic granules and isolated yeast Candida tropicalis. Biotechnol Bioeng 96:844–852.
  • Bassi A, Geng Z, Gijzen M. 2004. Enzymatic removal of phenol and chlorophenols using soybean seed hulls. Eng Life Sci 4:125–130.
  • Bódalo A, Gómez JL, Gómez E, Bastida J, Máximo MF. 2006. Comparison of commercial peroxidases for removing phenol from water solutions. Chemosphere 63:626–632.
  • Bódalo A, Gómez JL, Gómez E, Hidalgo AM, Gómez M, Yelo AM. 2006. Removal of 4-chlorophenol by soybean peroxidase and hydrogen peroxide in a discontinuous tank reactor. Desalination 195:51–59.
  • Bornscheuer UT. 2003. Immobilizing enzymes: how to create more suitable biocatalysts. Angewandte Chemie, Int Ed 42:3336–3337.
  • Bubnov AG, Grinevich VI, Kuvykin NA. 2004. Phenol degradation features in aqueous solutions upon dielectric-barrier discharge treatment. High Energ Chem 38:338–343.
  • Cahn RP, Li NN. 1974. Separation of phenol from waste water by the liquid membrane technique. Separ Sci 9:505–519.
  • Carvalho RH, Lemos F, Lemos MANDA, Vojinovic V, Fonseca LP, Cabral JMS. 2006. Kinetic modelling of phenol co-oxidation using horseradish peroxidase. Bioproc Biosyst Eng 29:99–108.
  • Davidenko TI, Oseychuk OV, Sevastyanov OV, Romanovskaya II. 2004. Peroxidase oxidation of phenols. Appl Biochem Microbiol 40:542–546.
  • Dec J, Haider K, Bollag JM. 2001. Decarboxylation and demethoxylation of naturally occurring phenols during coupling reactions and polymerization. Soil Sci 166:660–671.
  • Erhan E, Keskinler D, Algur OF. 2002. Isolation and characterization of phenol-degrading bacteria. Fresen Environ Bull 11:1110–1113.
  • Esplugas S, Giménez J, Contreras S, Pascual E, Rodríguez M. 2002. Comparison of different advanced oxidation processes for phenol degradation. Water Res 36:1034–1042.
  • Feijoo G, Lema JM. 1995. Tratamiento de efluentes de industrias de la madera con compuestos tóxicos y recalcitrantes mediante hongos. Afinidad 52:171–180.
  • Feijoo G, Moreira MT, Roca E, Lema JM. 1999. Use of cheese whey as a substrate to produce manganese peroxidase by Bjerkandera sp. BOS55. J Ind Microbiol Biotechnol 23:86–90.
  • Fernández-Lafuente R, Rosell CM, Rodríguez V, Santana CC, Soler G, Bastida A, Guisán JM. 1993. Preparation of activated supports containing low pK amino groups. A new tool for protein immobilization via the carboxyl coupling method. Enzyme Microb Technol 15:546–550.
  • Field JA, de Jong E, Feijoo G, de Bont JAM. 1992. Biodegradation of polycyclic aromatic hydrocarbons by new isolates of white-rot fungi. Appl Environ Microbiol 58:2219–2226.
  • Flock C, Bassi A, Gijzen M. 1999. Removal of aqueous phenol and 2-chlorophenol with purified soybean peroxidase and raw soybean hylls. J Chem Technol Biotechnol 74:303–309.
  • Gianfreda L, Iamarino G, Scelza R, Rao MA. 2006. Oxidative catalysts for the transformation of phenolic pollutants: a brief review. Biocatal Biotrans 24:177–187.
  • Guisán JM, Bastida A, Blanco RM, Fernández-Lafuente R, García-Junceda E. 1997. Immobilization of enzymes on glyoxyl agarose. Strategies for enzyme stabilization by multipoint attachment. Methods in Biotechnology. Immobilization of Enzymes and Cells. G. F. Bickerstaff. Totowa (N.J.), Humana Press Inc. 1:277–287.
  • Hill G, Robinson CW. 1975. Substrate inhibition kinetics: phenol degradation by Pseudomonas putida. Biotechnol Bioeng 17:1599–1615.
  • Kang N, Lee DS, Yoon J. 2002. Kinetic modeling of fenton oxidation of phenol and monochlorophenols. Chemosphere 47:915–924.
  • Khan AR, Al-Bahri TA, Al-Haddad A. 1997. Adsorption of phenol based organic pollutants on activated carbon from multi- component dilute aqueous solutions. Water Res 31: 2102–2112.
  • Kibret M, Somitsch W, Robra KH. 2000. Characterization of a phenol degrading mixed population by enzyme assay. Water Res 34:1127–1134.
  • López C. 2005. Oxidación del tinte azo Orange II mediante MnP en reactores enzimáticos operados en continuo. Doctoral Thesis. Departament of Chemical Engineering. Santiago de Compostela, University of Santiago de Compostela (Spain). 299 p.
  • López C, Mielgo I, Moreira MT, Feijoo G, Lema JM. 2002. Enzymatic membrane reactors for biodegradation of recalcitrant compounds. Application to dye decolourisation. J Biotechnol 99:249–257.
  • López C, Moreira MT, Feijoo G, Lema JM. 2004. Dye decolorization by manganese peroxidase in an enzymatic membrane bioreactor. Biotechnol Progr 20:74–81.
  • López C, Moreira MT, Feijoo G, Lema JM. 2007. Dynamic modeling of an enzymatic membrane reactor for the treatment of xenobiotic compounds. Biotechnol Bioeng 97: 1128–1137.
  • Mester T, Tien M. 2000. Oxidation mechanism of ligninolytic enzymes involved in the degradation of environmental pollutants. Int Biodeter Biodegr 46:51–59.
  • Mielgo I, López C, Moreira MT, Feijoo G, Lema JM. 2003a. Oxidative degradation of azo dyes by manganese peroxidase under optimized conditions. Biotechnol Progr 19:325–331.
  • Mielgo I, Palma C, Guisán JM, Fernández-Lafuente R, Moreira MT, Feijoo G, Lema JM. 2003b. Covalent immobilisation of manganese peroxidases (MnP) from Phanerochaete chrysosporium and Bjerkandera sp. BOS55. Enzyme Microb Technol 32:769–775.
  • Moreira MT, Feijoo G, Lema JM. 2000. Manganese peroxidase production by Bjerkandera sp. BOS55. 2. Operation in stirred tank reactors. Bioprocess Eng 23:663–667.
  • Ryan D, Leukes W, Burton S. 2007. Improving the bioremediation of phenolic wastewaters by Trametes versicolor. Bioresource Technol 98:579–587.
  • Sakurai A, Masuda M, Sakakibara M. 2003. Effect of surfactants on phenol removal by the method of polymerization and precipitation catalysed by Coprinus cinereus peroxidase. J Chem Technol Biotechnol 78:952–958.
  • Shang NC, Yu YH. 2001. The biotoxicity and color formation results from ozonation of wastewaters containing phenol and aniline. J Environ Sci Health A 36:383–393.
  • van de Velde F, Lourenco ND, Pinheiro HM, Bakker M. 2002. Carrageenan: a food-grade and biocompatible support for immobilisation techniques. Adv Synth Catal 344:815–835.
  • Viraraghavan T, Alfaro FdM. 1998. Adsorption of phenol from wastewater by peat, fly ash and bentonite. J Hazard Mater 57:59–70.
  • Wariishi H, Akaleswaran L, Gold MH. 1988. Manganese peroxidase from the basidiomycete Phanerochaete chrysosporium: spectral characterization of oxidized states and the catalytic cycle. Biochemistry 27:5365–5370.
  • Wilberg K, Assenhaimer C, Rubio J. 2002. Removal of aqueous phenol catalysed by a low purity soybean peroxidase. J Chem Technol Biotechnol 77:851–857.
  • Wu C, Liu X, Wei D, Fan J, Wang L. 2001. Photosonochemical degradation of phenol in water. Water Res 35:3927–3933.

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