Ma C,Zhou S,Lu Q,et al. Decolorization of Orange I under alkaline and anaerobic conditions by a newly isolated humus-reducing bacterium. Planococcus sp MC01[J]. International Biodeterioration & Biodegradation,2013,83:17-24.
[2]
Khehra M S,Saini H S,Sharma D,et al. Decolorization of various azo dyes by bacterial consortium[J]. Dyes and Pigments,2005,67(1):55-61.
[3]
Coughlin M F,Kinkle B K,Bishop P L,et al. High performance degradation of azo dye Acid Orange 7 and sulfanilic acid in a laboratory scale reactor after seeding with cultured bacterial strains[J]. Water Research,2003,37(11):2757-2763.
Khehra M S,Saini H S,Sharma D,et al. Effectual decolorization and detoxification of triphenylmethane dye malachite green (MG) by Pseudomonas aeruginosa NCIM 2074 and its enzyme system[J]. Clean Technologies and Environmental Policy,2012,14(5):989-1001.
[7]
Mukherjee T,Bhandari M,Halder S,et al. Decolorization of malachite green by a novel strain of Enterobacter[J]. Journal of the Indian Chemical Society,2012,89(10):1369-1374.
Bharathiraja B,Jayamuthunagai J,Jayakumar M,et al. Biodegradation of poly(vinyl alcohol) using Pseudomonas alcaligenes[J]. Asian Journal of Chemistry,2013,25(15):8663-8667.
[14]
Weiss M,Denger K,Huhn T,et al. Two enzymes of a complete degradation pathway for linear alkylbenzenesulfonate (LAS) surfactants:4-sulfoacetophenone baeyer-villiger monooxygenase and 4-sulfophenylacetate esterase in comamonas testosteroni KF-1[J]. Applied and Environmental Microbiology,2012,78(23):8254-8263.
[15]
Denger K,Cook A M. Linear alkylbenzenesulphonate (LAS) bioavailable to anaerobic bacteria as a source of sulphur[J]. Journal of Applied Microbiology,1999,86(1):165-168.
[16]
Asok A,Jisha M S. Biodegradation of the anionic surfactant linear alkylbenzene sulfonate (LAS) by Autochthonous Pseudomonas sp[J]. Water,Air & Soil Pollution,2012,223(8):5039-5048.
[17]
Meng H,Xia Y,Chen H. Bioremediation of surface water co-contaminated with zinc (Ⅱ) and linear alkylbenzene sulfonates by Spirulina platensis[J]. Physics and Chemistry of the Earth,Parts A/B/C,2012,47-48:152-155.
Takenaka S,Tonoki T,Taira K,et al. Adaptation of Pseudomonas sp. strain 7-6 to quaternary ammonium compounds and their degradation via dual pathways[J]. Applied and Environmental Microbiology,2007,73(6):1797-1802.
Naylor C G. Environmental fate of alkylphenol ethoxylates[J]. Soap Cosmet. Chem. Spec.,1992,68(8):27-31.
[23]
Gabriel F L P,Giger W,Guenther K,et al. Differential degradation of nonylphenol isomers by Sphingomonas xenophaga bayram[J]. Applied and Environmental Microbiology,2005,71(3):1123-1129.
[24]
Tanghe T,Dhooge W,Verstraete W. Isolation of a bacterial strain able to degrade branched nonylphenol[J]. Applied and Environmental Microbiology,1999,65(2):746-751.
[25]
Iwaki H,Fujioka M,Hasegawa Y. Isolation and characterization of marine nonylphenol-degrading bacteria and description of Pseudomaricurvus alkylphenolicus gen. nov.,sp. nov[J]. Current Microbiology,2014,68(2):167-173.
Oxspring D A,McMullan G,Smyth W F,et al. Decolourisation and metabolism of the reactive textile dye,Remazol Black B,by an immobilized microbial consortium[J]. Biotechnology Letters,1996,18(5):527-530.
[29]
Saratale R G,Saratale G D,Chang J S,et al. Bacterial decolorization and degradation of azo dyes:A review[J]. Journal of the Taiwan Institute of Chemical Engineers,2011,42(1):138-157.
[30]
Patel Y,Mehta C,Gupte A,et al. Assessment of biological decolorization and degradation of sulfonated di-azo dye Acid Maroon V by isolated bacterial consortium EDPA[J]. International Biodeterioration & Biodegradation,2012,75:187-193.
[31]
Arunarani A,Chandran P,Ranganathan B V,et al. Bioremoval of Basic Violet 3 and Acid Blue 93 by Pseudomonas putida and its adsorption isotherms and kinetics[J]. Colloids and Surfaces B:Biointerfaces,2013,102:379-384.
[32]
He Y,Gao J F,Feng F Q,et al. The comparative study on the rapid decolorization of azo,anthraquinone and triphenylmethane dyes by zero-valent iron[J]. Chemical Engineering Journal,2012,179:8-18.
Adebiyi A O,Togo C A,Mutanda T,et al. Decolourisation and degradation of reactive blue 2 by sulphate reducing bacteria (SRB) and zero valent iron in a biosulphidogenic reactor[J]. African Journal of Biotechnology,2011,10(4):584-588.
[35]
Wu Y,Xiao X,Xu C,et al. Decolorization and detoxification of a sulfonated triphenylmethane dye aniline blue by Shewanella oneidensis MR-1 under anaerobic conditions[J]. Applied Microbiology and Biotechnology,2013,97(16):7439-7446.
[36]
Liu Y,Jin J H,Liu H C,et al. Dokdonella immobilis sp nova,isolated from a batch reactor for the treatment of triphenylmethane dye effluent[J]. International Journal of Systematic and Evolutionary Microbiology,2013,63:1557-1561.
[37]
Liao C S,Hung C H,Chao S L,et al. Decolorization of azo dye reactive black B by Bacillus cereus strain HJ-1[J]. Chemosphere,2013,90(7):2109-2114.
[38]
Wang H,Zheng X W,Su J Q,et al. Biological decolorization of the reactive dyes Reactive Black 5 by a novel isolated bacterial strain Enterobacter sp EC3[J]. Journal of Hazardous Materials,2009,171(1-3):654-659.
[39]
Banat I M,Nigam P,Singh D,et al. Microbial decolorization of textile-dyecontaining effluents:A review[J]. Bioresource Technology,1996,58(3):217-227.
[40]
Chen K C,Huang W T,Wu J Y,et al. Microbial decolorization of azo dyes by Proteus mirabilis[J]. Journal of Industrial Microbiology and Biotechnology,1999,23(1):686-690.
[41]
Liu X,Zhang J,Jiang J,et al. Biochemical degradation pathway of reactive blue 13 by Candida rugopelliculosa HXL-2[J]. International Biodeterioration & Biodegradation,2011,65(1):135-141.
[42]
Jain K,Shah V,Chapla D,et al. Decolorization and degradation of azo dye-Reactive Violet 5R by an acclimatized indigenous bacterial mixed cultures-SB4 isolated from anthropogenic dye contaminated soil[J]. Journal of Hazardous Materials,2012,213:378-386.
[43]
Moosvi S,Kher X,Madamwar D,et al. Isolation,characterization and decolorization of textile dyes by a mixed bacterial consortium JW-2[J]. Dyes and Pigments,2007,74(3):723-729.
[44]
Khouni I,Marrot B,Ben Amar R,et al. Treatment of reconstituted textile wastewater containing a reactive dye in an aerobic sequencing batch reactor using a novel bacterial consortium[J]. Separation and Purification Technology,2012,87:110-119.
[45]
金玉洁. 基因工程菌对偶氮染料脱色研究[D]. 大连:大连理工大学,2005.
[46]
Jin R,Yang H,Zhang A,et al. Bioaugmentation on decolorization of C. I. Direct Blue 71 by using genetically engineered strain Escherichia coli JM109 (pGEX-AZR)[J]. Journal of Hazardous Materials,2009,163(2-3):1123-1128.
Wang Y P,Zhu K,Dong G W,et al. Bacterial community dynamics during treatment of anthraquinone dye in a hydrolytic reactor,an aerobic biofilm reactor,and a combined hydrolytic-aerobic reactor system[J]. Environmental Engineering Science,2011,28(2):121-128.
[50]
Dong X,Zhou J,Liu Y. Peptone-induced biodecolorization of Reactive Brilliant Blue (KN-R) by Rhodocyclus gelatinosus XL-1[J].Process Biochemistry,2003,39(1):89-94.
[51]
Maru?incová H,Husárová L,R??i?ka J,et al. Polyvinyl alcohol biodegradation under denitrifying conditions[J]. International Biodeterioration & Biodegradation,2013,84:21-28.