Environmental Engineering Reference
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Kasinath A, Novotn ý Č , Svobodov á K, Patel KC, Š a š ek V (2003) Decolorization of synthetic dyes
by Irpex lacteus in liquid cultures and packed-bed bioreactor. Enzyme Microb Tech 32:
167 - 173
Keller M, Braun FJ, Dirmeier R, Hafenbradl D, Burggraf S, Rachel R, Stetter KO (1995)
Thermococcus alcaliphilus sp. nov., a new hyperthermophilic archaeum growing on polysulde
at alkaline pH. Arch Microbiol 164:390
395
Khalid A, Arshad M, Crowley DE (2008a) Accelerated decolorization of structurally different azo
dyes by newly isolated bacterial strains. Appl Microbiol Biot 78:361
-
369
Khalid A, Arshad M, Crowley DE (2008b) Decolorization of azo dyes by Shewanella sp. under
saline conditions. Appl Microbiol Biot 79:1053
-
1059
Khalid A, Kausar F, Arshad M, Mahmood T, Ahmed I (2012) Accelerated decolorization of
reactive azo dyes under saline conditions by bacteria isolated from Arabian seawater sediment.
Appl Microbiol Biotechnol 96:1599
-
1606
Kolekar YM, Pawar SP, Gawai KR, Lokhande PD, Shouche YS, Kodam KM (2000)
Decolorization and degradation of disperse blue 79 and acid orange 10, by Bacillus fusiformis
KMK5 isolated from the textile dye contaminated soil. Bioresour Technol 99:8999 - 9003
Kublanov IV, Perevalova AA, Slobodkina GB, Lebedinsky AV, Bidzhieva SK, Kolganova TV,
Bonch-Osmolovskaya EA (2009) Biodiversity of thermophilic prokaryotes with hydrolytic
activities in hot springs of Uzon Caldera, Kamchatka (Russia). Appl EnvironMicrob 75:286 - 291
Kulla HG, Klausener F, Meyer U, L ü deke B, Leisinger T (1983) Interference of aromatic sulfo
groups in the microbial degradation of the azo dyes orange I and orange II. Arch Microbiol
135:1 - 7
Kumar A, Bisht BS, Joshi VD, Dhewa T (2011) Review on bioremediation of polluted
environment: a management tool. Int J Environ Sci 1:1079
-
1093
Kumar BM, Kumar PUA, Unnamatla V (2013) Studies on biodegradation of
-
using
Saccharomyces cerevisiae and Lactobacillus sporogenes. Asian J Microbiol Biotechnol
Environ Sci 15:743
congo red
748
Kunjadia PD, Patel FD, Nagee A, Mukhopadhyaya PN, Dave GS (2012) Crystal violet
(triphenylmethane dye) decolorization potential of Pleurotus ostreatus (MTCC142). BioRes
7:1189
-
1199
Kushner DJ, Kamekura M (1988) Physiology of halophilic eubacteria. Halophilic Bact 1:109
-
140
Lamers PP, Janssen M, De Vos RCH, Bino RJ, Wijffels RH (2008) Exploring and exploiting
carotenoid accumulation in Dunaliella salina for cell-factory applications. Trends Biotechnol
26:631 - 638
Leidig E, Pr ü sse U, Vorlop KD, Winter J (1999) Biotransformation of Poly R-478 by continuous
cultures of PVAL-encapsulated Trametes versicolor under non-sterile conditions. Bioprocess
Eng 21:5 - 12
Le ó n R, Mart ı́ n M, Vigara J, Vilchez C, Vega JM (2003) Microalgae mediated photo production of
ʲ -carotene in aqueous - organic two phase systems. Biomol Eng 20:177 - 182
Li X, Jia R (2008) Decolorization and biosorption for Congo red by system rice hull-
Schizophyllum sp. F17 under solid-state condition in a continuous ow packed-bed bioreactor.
Bioresour Technol 99:6885
-
6892
Liebgott PP, Labat M, Casalot L, Amouric A, Lorquin J (2007) Bioconversion of tyrosol into
hydroxytyrosol and 3, 4-dihydroxyphenylacetic acid under hypersaline conditions by the new
Halomonas sp. strain HTB24. FEMS Microbiol Lett 276:26
-
33
Lin J, Zhang X, Li Z, Lei L (2010) Biodegradation of Reactive blue 13 in a two-stage anaerobic/
aerobic uidized beds system with a Pseudomonas sp. isolate. Bioresour Technol 101:34
-
40
Liu G, Zhou J, Wang J, Song Z, Qv Y (2006) Bacterial decolorization of azo dyes by
Rhodopseudomonas palustris. World J Microb Biot 22:1069
-
1074
Liu G, Zhou J, Meng X, Fu SQ, Wang J, Jin R, Lv H (2013) Decolorization of azo dyes by marine
Shewanella strains under saline conditions. Appl Microbiol Biotechnol 97:4187 - 4197
Lu J, Tappel RC, Nomura CT (2009) Mini-review: biosynthesis of poly (hydroxyalkanoates).
J Macromol Sci Part C: Polymer Rev 49:226 - 248
-
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