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首页> 外文期刊>Ecotoxicology and Environmental Safety >Effect of quinoid redox mediators during azo dye decolorization by anaerobic sludge: Considering the catalyzing mechanism and the methane production
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Effect of quinoid redox mediators during azo dye decolorization by anaerobic sludge: Considering the catalyzing mechanism and the methane production

机译:血糖染料在厌氧污泥中喹啉氧化还原介质的影响:考虑到催化机理和甲烷生产

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摘要

The effects of quinoid compounds on azo dyes decolorization were studied. Compared with other quinones, menadione was the most effective at aiding azo dye decolorization. Sodium formate was a suitable carbon source for the anaerobic decolorization system. Polymerase chain reaction-denaturing gradient gel electrophoresis (PCR-DGGE) analysis indicated that the microbial structure changed in response to varying carbon sources. Phylogenetic analysis showed that the anaerobic sludge was consisted mainly of nine genera. The mechanism studies showed that the biotransformation of menadione to its hydroquinone form was the rate-limiting step in the dye decolorization process. Moreover, study of the electron transfer mechanism of quinone-mediated reduction showed that azo dye decolorization is not a specific reaction. The NADH chain was involved in the decolorization process. The methane production test indicated that azo dyes had an inhibitory effect on methane production. However, supplementation with a redox mediator could recover the inhibited methanogenesis. High-throughput sequencing analysis revealed that the methanogenic archaeal community was altered in the anaerobic sludge with or without azo dyes and the redox mediator.
机译:研究了喹啉化合物对偶氮染料脱色的影响。与其他醌相比,Menadione在帮助奥佐染料脱色时最有效。甲酸钠是厌氧脱色系统的合适碳源。聚合酶链反应变性梯度凝胶电泳(PCR-DGGE)分析表明微生物结构响应于不同的碳源而改变。系统发育分析表明,厌氧污泥主要由九属组成。该机制研究表明,植物中的生物转化为其氢醌形式是染料脱色过程中的速率限制步骤。此外,研究醌介导的还原的电子转移机制表明,偶氮染料脱色不是特异性反应。 NADH链参与了脱色过程。甲烷生产试验表明,偶氮染料对甲烷生产具有抑制作用。然而,用氧化还原介体补充可以恢复抑制的甲烷。高通量测序分析表明,甲基骨癌群落在厌氧污泥中改变或没有偶氮染料和氧化还原介体。

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