Optimization of Culture Conditions for Enhanced Decolorization …
153
Bergsten-Torralba LR, Nishikawa MM, Baptista DF, Magalhães DP Silva da M (2009) Decolorization of different textile dyes by Penicillium simplicissimum and toxicity evaluation after fungal
treatment. Braz J Microbiol 40:808–817
Cappuccino J, Sherman N (2004) In Cummings B (ed) Microbiology: a laboratory manual, 7 edn.
San Francisco, California, USA
Chen K-C, Wu J-Y, Liou D-J, Hwang S-CJ (2003) Decolorization of the textile dyes by newly
isolated bacterial strains. J Biotechnol 101:57–68
Chivukula M, Renganathan V (1995) Phenolic azo dye oxidation by laccase from Pyricularia
oryzae. Appl. Environ. Microbiol. 61:4374–4377
Eichlerová I, Homolka L, Nerud F (2006) Synthetic dye decolorization capacity of white rot fungus
Dichomitus squalens. Bioresour Technol 97:2153–2159
Forss J, Welander U (2009) Decolourization of reactive azo dyes with microorganisms growing on
soft wood chips. Int Biodeterior Biodegrad. 63:752–758
Fu Y, Viraraghavan T (2001) Fungal decolorization of dye wastewaters: a review. Bioresour Technol
79:251–262
Gajera HP, Bambharolia RP, Hirpara DG, Patel SV, Golakiya BA (2015) Molecular identification
and characterization of novel Hypocrea koningii associated with azo dyes decolorization and
biodegradation of textile dye effluents. Process Safe Environ Protec 98:406–416
Heinfling A, Martínez MJ, Martínez AT, Bergbauer M, Szewzyk U (1998) Transformation of
industrial dyes by manganese peroxidases from Bjerkandera adusta and Pleurotus eryngii in
a manganese-independent reaction. Appl Environ Microbiol 64:2788–2793
Hofrichter M (2002) Review: lignin conversion by manganese peroxidase (MnP). Enzyme Microb
Technol 30:454–466
Jarosz-Wilkołazka A, Malarczyk E, Pirszel J, Skowro´ nski T, Leonowicz A (2002) Uptake of
cadmium ions in white-rot fungus trametes versicolor: effect of Cd (ii) ions on the activity of
laccase. Cell Biol Int 26:605–613
Kapdan IK, Kargi F, McMullan G, Marchant R (2000) Biological decolorization of textile dyestuff
by coriolus versicolor in a packed column reactor. Environ Technol 21:231–236
Kılıç NK, Nielsen JL, Yüce M, Dönmez G (2007) Characterization of a simple bacterial consortium
for effective treatment of wastewaters with reactive dyes and Cr(VI). Chemosphere 67:826–831
Kodam KM, Soojhawon I, Lokhande PD, Gawai KR (2005) Microbial decolorization of reactive
azo dyes under aerobic conditions. World J Microbiol Biotechnol 21:367–370
Kuhad RC, Sood N, Tripathi KK, Singh A, Ward OP (2004) Developments in microbial methods
for the treatment of dye effluents. In: Microbiology. Academic Press, p. 185–213.
Máximo C, Amorim MTP, Costa-Ferreira M (2003) Biotransformation of industrial reactive azo
dyes by Geotrichum sp. CCMI 1019. Enzyme Microb Technol 32:145–151
Moutaouakkil A, Zeroual Y, Zohra Dzayri F, Talbi M, Lee K, Blaghen M (2003) Purification and
partial characterization of azoreductase from Enterobacter agglomerans a. Biochem Biophys
413:139–146
Murugesan K, Kalaichelvan PT (2003) Synthetic dye decolourization by white rot fungi. Indian J
Esp Biol 41(09)
Ollikka P, Alhonmäki K, Leppänen V-M, Glumoff T, Raijola T, Suominen I (1993) Decolorization
of Azo, Triphenyl Methane, Heterocyclic, and Polymeric Dyes by Lignin Peroxidase Isoenzymes
from Phanerochaete chrysosporium. Appl Environ Microbiol 59:4010–4016
Pandey A, Singh P, Iyengar L (2007) Bacterial decolorization and degradation of azo dyes. Int
Biodeterior Biodegrad 59:73–84
Pazarlıoˇ glu NK, Sarii¸ sik M, Telefoncu A (2005) Laccase: production by Trametes versicolor and
application to denim washing. Process Biochem 40:1673–1678
Rafii F, Franklin W, Cerniglia CE (1990) Azoreductase activity of anaerobic bacteria isolated from
human intestinal microflora. Appl Environ Microbiol 56:2146–2151
Rodríguez Couto S (2009) Dye removal by immobilized fungi Biotechnol Adv 27:227–235
Précédent

- 157/323

Suivant