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Microaerophilic–aerobic sequential decolourization/biodegradation of textile azo dyes by a facultative Klebsiella sp. strain VN-31

机译:兼性Klebsiella sp对纺织品偶氮染料的微好氧-好氧顺序脱色/生物降解。 VN-31株

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摘要

Four different azo dyes were decolourized and biodegraded in a sequential microaerophilic–aerobic treatment by a facultative Klebsiella sp. strain VN-31, a bacterium isolated from activated sludge process of the textile industry. Dye decolourization was performed under microaerophilic conditions until no colour was observed (decolourization percentage >94%). The medium was then aerated to promote the biodegradation of the amines produced. The presence of aromatic amine in the microaerophilic stage and its absence in the aerobic stage demonstrate azo bond reduction and an oxidative biodegradation process, respectively. Total Organic Carbon (TOC) reduction for the growth medium plus dyes was ∼50% in the microaerophilic stage and ∼80% in the aerobic stage. The degradation products were also characterized by FT-IR and UV–vis techniques and their toxicity measured using Daphnia magna. The results provide evidence that the successive microaerophilic/aerobic stages, using a single Klebsiella sp. strain VN-31 in the same bioreactor, were able to form aromatic amines by the reductive break down of the azo bond and to oxidize them into non-toxic metabolites.
机译:四种不同的偶氮染料通过兼并的克雷伯菌属(Klebsiella sp)进行依次的微好氧-好氧处理而脱色和生物降解。菌株VN-31,是从纺织工业的活性污泥工艺中分离出来的细菌。在微需氧条件下进行染料脱色,直至未观察到颜色(脱色率> 94%)。然后对培养基充气,以促进产生的胺的生物降解。在微需氧阶段存在芳香胺和在好氧阶段不存在芳香胺分别表明偶氮键还原和氧化生物降解过程。在微需氧阶段,加有染料的生长培养基的总有机碳(TOC)减少约50%,有氧阶段约80%。还通过FT-IR和UV-vis技术对降解产物进行了表征,并使用水蚤(Daphnia magna)测定了其毒性。结果提供了证据,表明使用单个克雷伯菌属菌种连续进行了微好氧/好氧阶段。同一生物反应器中的VN-31菌株能够通过偶氮键的还原性分解形成芳香胺,并将其氧化为无毒的代谢产物。

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