Environmental Engineering Reference
In-Depth Information
Ra i F, Cerniglia CE (1995) Reduction of azo dyes and nitroaromatic compounds by bacterial
enzymes from the human intestinal tract. Environ Health Persp 103:17 - 19
Ra i F, Franklin W, Cerniglia CE (1990) Azoreductase activity of anaerobic bacteria isolated from
human intestinal microora. Appl Environ Microbiol 56:2146 - 2151
Ridge P, Lin M, Larsen I, Fegan M, McEwan G, Sly I (2007) A multicopper oxidase is essential
for manganese oxidation and laccase-like activity in Pedomicrobium sp. ACM 3067. Environ
Microbiol 9:944
953
Roxon JJ, Ryan AJ, Wright SE (1967) Enzymatic reduction of tartrazine by Proteus vulgaris from
rats. Food Cosmet Toxicol 5:645
-
656
Russ R, Rau J, Stolz A (2000) The function of cytoplasmic Flavin reductases in the reduction of
azo dyes by bacteria. Appl Environ Microbiol 66:1429
-
1434
Salokhe MD, Govindwar SP (1999) Effect of carbon source on the biotransformation enzymes in
Serratia marcescens. World J Microbiol Biotechnol 15:229
-
232
-
Senan RC, Abraham TE (2004) Bioremediation of
textile azo dyes by aerobic bacterial
280
Solano F, Sanchez-Amat A (1999) Studies on the phylogenetic relationships of melanogenic
marine bacteria: proposal of Marinomonas mediterranea sp. nov. Int J Syst Evol Microbiol
49:1241 - 1246
Solano F, Garcia E, De Perez EE, Sanchez-Amat A (1997) Isolation and characterization of strain
MMB-1 (CECT 4803), a novel melanogenic marine bacterium. Appl Environ Microbiol
63:3499 - 3506
Tamboli DP, Telke AA, Dawkar VV, Jadhav SB, Govindwar SP (2011) Purication and
characterization of bacterial aryl alcohol oxidase from Sphingobacterium sp. ATM and its uses
in textile dye decolorization. Biotechnol Bioprocess Eng 16:661
consortium. Biodegradation 15:275
-
668
Telke AA (2009) Microbes and its enzymes as bioremediation tool for degradation of bisphenol A
and textile dyes. Ph.D. thesis, Shivaji University, Kolhapur
Telke AA, Kalyani DC, Jadhav JP, Govindwar SP (2008) Kinetics and mechanism of reactive red
141 degradation by a bacterial isolate Rhizobium radiobacter MTCC 8161. Acta Chim Slov
55:320
-
329
Telke A, Kalyani D, Dawkar V, Govindwar S (2009) In uence of organic and inorganic
compounds on oxidoreductive decolorization of sulfonated azo dye C.I. Reactive orange 16.
J Hazard Mater 172:298
-
309
Telke A, Ghodake G, Kalyani C, Dhanve R, Govindwar S (2011) Biochemical characteristics of a
textile dye degrading extracellular laccase. Bacillus sp ADR Bioresour Technol 02:1752 - 1756
Thurnheer T, Kohler T, Cook AM, Leisinger T (1986) Orthanilic acid and analogues as carbon
sources for bacteria: growth physiology and enzymic desulphonation. J Gen Microbiol
132:1215 - 1220
Tien M, Kirk TK (1983) Lignin-degrading enzyme from the hymenomycete Phanerochaete
chrysosporium burds. Science 221:661 - 663
Tien M, Kirk TK, Bull C, Fee JA (1986) Steady-state and transient-state kinetic studies on the
oxidation of 3, 4-Dimethoxybenzyl alcohol catalyzed by the ligninase of Phanerochaete
chrysosporium burds. J Biol Chem 261:1687
-
1693
Umezawa T, Higuchi T (1987) Mechanism of aromatic ring cleavage of h-O-4 lignin substructure
models by lignin proxidase. FEBS Lett 218:255
-
260
van der Zee FP, Lettinga G, Field JA (2001a) Azo dye decolorisation by anaerobic granular
sludge. Chemosphere 21:1169
-
1176
van der Zee FP, Burwman RHM, Strik DPTB, Lettinga G, Field JA (2001b) Application of redox
mediators to accelerate the transformation of reactive azo dyes in anaerobic bioreactor.
Biotechnol Bioengin 75:691
-
701
van der Zee F, Bisschops I, Lettings G, Field J (2003) Activated carbon as an electron acceptor and
redox mediator during the anaerobic biotransformation of azo dyes. Environ Sci Technol
37:402 - 408
Walker R (1970) The metabolism of azo compounds: a review of the literature. Food Cosmet
Toxicol 8:659 - 676
-
Search WWH ::




Custom Search