Environmental Engineering Reference
In-Depth Information
Bernhardt R (2006) Cytochromes P450 as versatile biocatalysts. J Biotechnol 124:128 - 145
Bidoia ED, Montagnolli RN, Lopes PRM (2010) Microbial biodegradation potential of
hydrocarbons evaluated by colorimetric technique: a case study. In: Mendez-Vilas A (ed)
Current research, technology and education topics in applied microbiology and microbial
biotechnology. Formatex, Spain, pp 1277 - 1288
Blumel S, Contzen M, Lutz M, Stolz M, Knackmuss HJ (1998) Isolation of a bacterial strain with
the ability to utilize the sulfonated azo compound 4-carboxy-4
- sulfoazobenzene as sole source
2317
Boopathy R (2000) Factors limiting bioremediation technologies. Bioresour Technol 74:63
of carbon and energy. Appl Microbiol Biotechnol 64:2315
-
67
-
Brohm K, Frohwein E (1937) Nachweis von durch S
ä
ueringentfarbten k
ü
nstlichen Eigelbfrabst-
offen in Milchspeiseeis. Zbl Lebensmitt Forsch 73:30
Brown D, Laboureur P (1983) The degradation of dyestuffs: part I
primary biodegradation under
404
Brown MA, Devito SC (1993) Predicting azo dye toxicity. Crit Rev Environ Sci Technol
23:249
anaerobic conditions. Chemosphere 12:397
-
324
Carliell CM, Barclay SJ, Buckely CA (1996) Treatment of exhausted reactive dye bath ef uent
using anaerobic digestion: laboratory and full scale trails. Water SA 22:225 - 233
Chang JS, Chou C, Lin PJ, Ho JY, Hu TL (2001) Kinetic characteristics of bacterial azo-dye
decolorization by Pseudomonas luteola. Water Res 35:2841 - 2850
Chaudhari AU, Tapase SR, Markad VL, Kodam KM (2013) Simultaneous decolorization of
reactive Orange M2R dye and reduction of chromate by Lysinibacillus sp. KMK-A. J Hazard
Mater 262:580 - 588
Chen KC, Wu JY, Huang CC, Liang YM, Hwang SCJ (2003) Decolorization of azo dye using
PVA-immobilized microorganisms. J Biotechnol 101:241
-
252
Chen Y, Jiang W, Liang DT, Tay JH (2007) Structure and stability of aerobic granules cultivated
under different shear
-
force in sequencing batch reactors. Appl Microbiol Biotechnol
1208
Chinwetkitvanich S, Tuntoolvest M, Panswad T (2000) Anaerobic decolorization of reactive dye
bath ef uents by a two stage UASB system with Tapioca as co-substrate. Water Res
34:2223
76:1199
-
2232
Chung KT, Stevens SE, Cerniglia CE (1992) The reduction of azo dyes by the intestinal
micro ora. Crit Rev Microbiol 18:175
-
190
Clarke A, Anliker R (1980) Organic dyes and pigments. In: Hutzinger O (ed) The handbook of
environmental chemistry, vol 3., Part A anthropogenic compoundsSpringer, Berlin, Heidel-
berg, New York, pp 181 - 215
Clarke EA, Steinle D (1995) Health and environmental safety aspects of organic colorants. Rev
Prog Color 25:1 - 10
Coughlin MF, Kinkle BK, Bishop PL (1999) Degradation of azo dyes containing aminonaphthol
by Sphingomonas sp. strain 1CX. J Ind Microbiol Biotechnol 23:341 - 346
Cui D, Li G, Zhao D, Gu X, Wang C, Zhao M (2012) Purication and characterization of an
azoreductase from Escherichia coli CD-2 possessing quinone reductase activity. Process
Biochem 47:544
-
549
David PB, Steven DA, Barr DP, Aust SD (1994) Mechanisms white rot fungi use to degrade
pollutants. Environ Sci Technol 28:78A
-
87A
Dos Santos AB, Cervantes FJ, Van Lier JB (2007) Review paper on current technologies for
decolorization of textile wastewaters: perspectives for anaerobic biotechnology. Bioresour
Technol 98:2369
-
2385
Ekici P, Leupold G, Parlar H (2001) Degradability of selected azo dye metabolites in activated
sludge systems. Chemosphere 44:721
-
728
Erden E, Kaymaz Y, Pazarlioglu NK (2011) Biosorption kinetics of a direct azo dye Sirius Blue K-
CFN by Trametes versicolor. Electron J Biotechnol 14:1 - 10
Field JA, Stams AJM, Kato M, Schraa G (1995) Enhanced biodegradation of aromatic pollutants
in co-cultures of anaerobic and aerobic bacterial consortia. Antonie Van Leeuwenhoek
67:47 - 77
-
Search WWH ::




Custom Search