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活性黑5的生物脱色、复色现象及机理 被引量:6

Decolorization and repigmentation of reactive black 5 biodegradation and their mechanisms
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摘要 印染废水问题形势依然严峻,目前常用生物法来治理,筛选高效降解染料的微生物是生物法处理印染废水的关键。本文利用梯度浓度压力驯化法,从印染废水水解酸化反应器中筛选出对染料活性黑5具有良好脱色性能的混合菌群DDMY1。利用该菌群在兼氧条件下对活性黑5进行脱色研究,首先采用拍照方式记录其反复脱色、复色的直观效果,其次运用紫外-可见光分光光度计检测其不同时间、不同状态下脱色液吸光值情况,最后运用气相色谱质谱联用仪和傅里叶变换红外光谱仪等检测方法分析脱色、复色过程中产物情况。结果表明,混合菌群DDMY1对活性黑5的脱色性能显著,24h脱色率能达到97.4%。同时,发现活性黑5的兼氧生物脱色反应可有效反复脱色、复色达17次之多,根据分析测试的结果,初步推测该现象可能是由活性黑5降解产物中的苯胺类物质或萘醌类物质造成的。 Wastewater from printing and dyeing industrials is still a severe problem,and biological treatment is the most widely used method currently, for which screening high efficient dye biodegradation microorganisms is the key. In this paper,by using the concentration gradient pressure screening method,we selected a mixed bacterial flora DDMY1,which has good decolorization performance to reactive black 5(RB5),from the well-running hydrolytic acidification reactor for subsequent printing and dyeing wastewater treatment. The bacterial flora was used to study the RB5 decolorization under the facultative-aerobic condition. Firstly,photos were taken in the process of decolorization and repigmentation to record the repeated results visually. Secondly,ultraviolet-visible spectrophotometry was used to scan the decoloring liquid at different times and different states. At last,GC-MS( Gas Chromatography-Mass Spectrometer) and FTIR( Fourier Transform Infrared Spectroscopy)were employed to analyze the degradation products. Results indicated that,the mixed flora DDMY1 performed satisfatorily in decoloring of RB5,and with 400mg/L RB5 for 24 h cultivation,the decolorization rate could reach 97.4%. At the same time,the study found that the biological oxygen decolorization reaction could effectively repeat the decolorization-repigmentation for 17 times. According to the analysis results of the tests,it could be speculated that RB5 degradation products such as aniline,naphthoquinones might be responsible.
出处 《化工进展》 EI CAS CSCD 北大核心 2016年第9期2987-2996,共10页 Chemical Industry and Engineering Progress
基金 国家自然科学基金(21377023 51508083) 中央高校基本科研业务费专项资金(2232015D3-22) 上海市重点学科建设项目(B604)
关键词 混合菌群 染料脱色 活性黑5 氧化还原反应 bacterial consortium biological decoloring reactive black 5 redox
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  • 1F. J. Cervantes,L. Vu-Thi-Thu,G. Lettinga,J. A. Field. Quinone-respiration improves dechlorination of carbon tetrachloride by anaerobic sludge[J] 2004,Applied Microbiology and Biotechnology(5):702~711
  • 2A. B. Santos,F. J. Cervantes,J. B. Lier. Azo dye reduction by thermophilic anaerobic granular sludge, and the impact of the redox mediator anthraquinone-2,6-disulfonate (AQDS) on the reductive biochemical transformation[J] 2004,Applied Microbiology and Biotechnology(1):62~69
  • 3S. Blümel,A. Stolz. Cloning and characterization of the gene coding for the aerobic azoreductase from Pigmentiphaga kullae K24[J] 2003,Applied Microbiology and Biotechnology(2-3):186~190
  • 4H. Claus,G. Faber,H. K?nig. Redox-mediated decolorization of synthetic dyes by fungal laccases[J] 2002,Applied Microbiology and Biotechnology(6):672~678
  • 5A. Stolz. Basic and applied aspects in the microbial degradation of azo dyes[J] 2001,Applied Microbiology and Biotechnology(1-2):69~80
  • 6A. Heinfling,M. Bergbauer,U. Szewzyk. Biodegradation of azo and phthalocyanine dyes by Trametes versicolor and Bjerkandera adusta[J] 1997,Applied Microbiology and Biotechnology(2):261~266
  • 7B. Donlon,E. Razo-Flores,M. Luijten,H. Swarts,G. Lettinga,J. Field. Detoxification and partial mineralization of the azo dye mordant orange 1 in a continuous upflow anaerobic sludge-blanket reactor[J] 1997,Applied Microbiology and Biotechnology(1):83~90
  • 8Thomas Zimmermann,Franz Gasser,Hans G. Kulla,Thomas Leisinger. Comparison of two bacterial azoreductases acquired during adaptation to growth on azo dyes[J] 1984,Archives of Microbiology(1):37~43
  • 9L. K. Novikov,A. P. Shmakov,I. D. Borisenko. Effect of blood serum fractions from cancer patients on leukocyte migration from capillary tubes[J] 1978,Bulletin of Experimental Biology and Medicine(5):1483~1487
  • 10LODHA B,CHAUDHARI S.Opti mization of Fenton-biologi-cal treat ment scheme for the treat ment of aqueous dye solu-tions. Journal of Hazardous Materials . 2007

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