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ORIGINAL ARTICLE

Immobilization of pycnoporus coccineus laccase on Eupergit C: Stabilization and treatment of olive oil mill wastewaters

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Pages 130-134 | Published online: 11 Jul 2009

References

  • Aggelis G, Iconomou D, Christou M, Bokas D, Kotzailias S, Christou G, Tsagou V, Papanikolaou S. Phenolic removal in a model olive oil mill wastewater using Pleurotus ostreatus in bioreactor cultures and biological evaluation of the process. Water Res 2003; 37: 3897–3904
  • Alcalde M. Laccases: Biological functions, molecular structure and industrial applications. Industrial enzymes: Structure, function and applications, J Polaina, AP MacCabe. Springer, New York 2007; 459–474
  • Aust SD, Benson JT. The fungus among us – use of white rot fungi to biodegrade environmental pollutants. Environ Health Perspect 1993; 101: 232–233
  • Boller T, Meier C, Menzler S. Eupergit oxirane acrylic beads: How to make enzymes fit for biocatalysis. Org Process Res Dev 2002; 6: 509–519
  • Casa R, D'Annibale A, Pieruccetti F, Stazi SR, Sermanni GG, Lo Cascio B. Reduction of the phenolic components in olive-mill wastewater by an enzymatic treatment and its impact on durum wheat (Triticum durum Desf.) germinability. Chemosphere 2003; 50: 959–966
  • D'Annibale A, Stazi SR, Vinciguerra V, Sermanni GG. Oxirane-immobilized Lentinula edodes laccase: Stability and phenolics removal efficiency in olive mill wastewater. J Biotechnol 2000; 77: 265–273
  • D'Annibale A, Ricci M, Quaratino D, Federici F, Fenice M. Panus tigrinus efficiently removes phenols, color and organic load from olive-mill wastewater. Res Microbiol 2004; 155: 596–603
  • García I, Jiménez PR, Bonilla JL, Martín A, Martín MA, Ramos E. Removal of phenol compounds from olive mill wastewater using Phanerochaete chrysosporium, Aspergillus niger, Aspergillus terreus and Geotrichum candidum. Process Biochem 2000; 35: 751–758
  • Gianfreda L, Sannino F, Rao MA, Bollag JM. Oxidative transformation of phenols in aqueous mixtures. Water Res 2003; 37: 3205–3215
  • Gómez de Segura A, Alcalde M, Yates M, Rojas-Cervantes ML, López-Cortés N, Ballesteros A, Plou FJ. Immobilization of dextransucrase from Leuconostoc mesenteroides NRRL B-512F on Eupergit C supports. Biotechnol Prog 2004; 20: 1414–1420
  • Grabski AC, Coleman PL, Drtina GJ, Burgess RR. Immobilization of manganese peroxidase from Lentinula edodes on azlactone-functional polymers and generation of Mn3+ by the enzyme–polymer complex. Appl Biochem Biotech 1995; 55: 55–73
  • Higuchi T. Microbial degradation of lignin: Role of lignin peroxidase, manganese peroxidase, and laccase. Proc Jpn Acad B 2004; 80: 204–214
  • Jaouani A, Sayadi S, Vanthournhout M, Penninckx M. Potent fungi for decolourization of olive oil mill wastewater. Enzyme Microb Technol 2003; 33: 802–809
  • Jaouani A, Guillén F, Penninckx MJ, Martínez AT, Martínez MJ. Role of Pycnoporus coccineus laccase in the degradation of aromatic compounds in olive oil mill wastewater. Enzyme Microb Technol 2005; 36: 478–486
  • Katchalski-Katzir E, Kraemer DM. Eupergit, a carrier for immobilization of enzymes of industrial potential. J Mol Catal B: Enzym 2000; 10: 157–176
  • Martínez J, Pérez J, de la Rubia T. Olive oil waste waters degradation by ligninolytic fungi. Recent research developments in microbiology, SG Pandalai. Research Singpost, India 1998; 373–403
  • Martirani L, Giardina P, Marzullo L, Sannia G. Reduction of phenol content and toxicity in olive oil mill waste waters with the ligninolytic fungus Pleurotus ostreatus. Water Res 1996; 30: 1914–1918
  • Paredes C, Cegarra J, Roig A, Sánchez-Monedero MA, Bernal MP. Characterization of olive mill wastewater (alpechin) and its sludge for agricultural purposes. Bioresour Technol 1999; 67: 111–115
  • Pointing SB. Feasibility of bioremediation by white-rot fungi. Appl Microbiol Biotechnol 2001; 57: 20–33
  • Sayadi S, Ellouz R. Screening of white rot fungi for the treatment of olive mill waste-waters. J Chem Technol Biotechnol 1993; 57: 141–146
  • Sayadi S, Allouche N, Jaoua M, Aloui F. Detrimental effects of high molecular-mass polyphenols on olive mill wastewater biotreatment. Process Biochem 2000; 35: 725–735
  • Somogyi M. A new reagent for the determination of sugars. J Biol Chem 1945; 160: 61–73
  • Tsioulpas A, Dimou D, Iconomou D, Aggelis G. Phenolic removal in olive oil mill wastewater by strains of Pleurotus spp. in respect to their phenol oxidase (laccase) activity. Bioresour Technol 2002; 84: 251–257
  • Zouari N, Ellouz R. Toxic effect of coloured olive compounds on the anaerobic digestion of olive oil mill effluent in UASB-like reactors. J Chem Tech Biotechnol 1996; 66: 414–420

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