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Original Articles

Synthetic dye decolourization, textile dye and paper industrial effluent treatment using white rot fungi Lentines edodes

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Pages 143-147 | Received 23 Apr 2008, Accepted 20 Jul 2008, Published online: 03 Aug 2012

References

  • Riu , J. , Schönsee , I. and Barcelo , D. 1998 . Determination of sulfonated azo dyes in groundwater and industrial effluents by automated solid-phase extraction followed by capillary electrophoresis/mass spectrometry . J. Mass Spectrom. , 33 : 653 – 663 .
  • Banat , I. M. , Nigam , P. , Singh , D. and Marchant , R. 1996 . Microbial decolourization of textile-dye containing effluents: a review . Bioresource Technol. , 58 : 217 – 227 .
  • Juang , R. S. , Tseng , R. L. , Wu , F. C. and Lin , S. J. 1996 . Use of chitin and chitosan in lobster shell wastes for colour removal from aqueous solutions . J. Environ. Sci. Health , 31 : 325 – 338 .
  • Zollinger , H. 2002 . “ Synthesis, properties and applications of organic dyes and pigments ” . In Colour Chemistry , 92 – 100 . NewYork : John Wiley-VCH Publishers .
  • Poots , V. J. P. and McKay , J. J. 1976 . The removal of acid dye from effluent using natural adsorbents – I Peat . Water Res. , 10 : 1061 – 1066 .
  • Setti , L. , Giuliani , S. , Spinozzi , G. and Pifferi , P. G. 1999 . Laccase catalyzed- oxidative coupling of 3-methyl 2-benzothiazolinone hydrazone and methoxyphenols . Enzyme Microb. Technol. , 25 : 285 – 289 .
  • Felby , C. , Pedersen , L. S. and Nielsen , B. R. 1997 . Enhanced auto adhesion of wood fibers using phenol oxidases . Holzforschung , 51 : 281 – 286 .
  • Hüttermann , A. , Mai , C. and Kharazipour , A. 2001 . Modification of lignin for the production of new compounded materials . Appl. Microbiol. Biotechnol. , 55 : 387 – 394 .
  • Lund , M. and Ragauskas , A. J. 2001 . Enzymatic modification of kraft lignin through oxidative coupling with water-soluble phenols . Appl. Microbiol. Biotechnol. , 55 : 699 – 703 .
  • Chandra , R. P. and Ragauskas , A. J. 2002 . Evaluating laccase-facilitated coupling of phenolic acids to high-yield kraft pulps . Enzyme Microb. Technol. , 30 : 855 – 861 .
  • Palmieri , G. , Giardina , P. , Marzullo , L. , Desiderio , B. , Nitti , B. , Cannio , R. and Sannia , G. 1993 . Stability and activity of phenol oxidase from ligninolytic fungus Pleurotus ostreatus . Appl. Microbiol. Biotechnol. , 39 : 632 – 636 .
  • Hosoya , T. 1960 . Turnip peroxidase. IV. The effect of pH and temperature upon the rate of reaction . J. Biochem. , 48 : 178 – 189 .
  • Mliki , A. and Zimmermann , W. 1992 . Purification and characterization of an intracellular peroxidase from Streptomyces cyaneus . Appl. Environ. Microbiol. , 58 : 916 – 919 .
  • Pointing , S. B. and Vrijmoed , L. L. P. 2000 . Decolourization of azo and triphenylmethane dyes by Pycnoporus sanguieneus producing laccase as the sole phenoloxidase . World J. Microbiol. Biotechnol. , 16 : 317 – 318 .
  • Kirk , K. and Cullen , K. 1998 . “ Enzymology and molecular genetics of wood degradation by white-rot fungi ” . In Environmentally Friendly Technologies for the Pulp and Paper Industry , Edited by: Young , E. and Akhtar , M. 273 – 307 . New York : John Wiley and Sons, Inc .
  • Graca , M. B. , Soares , M. T. , Kapdan , K. I. and Kargi , F. 2002 . Biological decolorization of textile dye stuff by Coriolus versicolor in a rotating biological contactor . Enzyme Microb. Technol. , 30 : 195 – 199 .
  • Shin , K. S. 2004 . The role of enzymes produced by white-rot fungus Irpex lacteus in the decolorization of textile industry effluent . J. Microbiol. , 42 : 37 – 41 .
  • Sanchez-Amat , A. and Solano , F. 1997 . A pluripotent polyphenol oxidase from the melanogenic marine Alteromonas sp. shares catalytic capabilities of tyrosinases and laccases . Biochem. Biophys. , 240 : 787 – 792 .
  • Shanmugam , S. , Palvannan , T. , Sathish Kumar , T. and Michael , A. 2005 . Biological decolourization of textile and paper effluents by Pleurotus florida and Agaricus bisporus (white-rot basidiomycetes) . World J. Microbiol. Biotechnol. , 21 : 1149 – 1151 .

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