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Improved azo dye decolorization in an advanced integrated system of bioelectrochemical module with surrounding electrode deployment and anaerobic sludge reactor

机译:先进的生物电化学模块集成系统中具有周围电极部署和厌氧污泥反应器的改进的偶氮染料脱色

摘要

A new integrated system, embedding a modular bioelectrochemical system (BES) with surrounding electrode deployment into an anaerobic sludge reactor (ASR), was developed to improve azo dye decolorization. Results demonstrated that the AO7 decolorization and COD removal can be improved without co-substrate in such system. The kinetic rate of decolorization (0.54 h(-1)) in integrated system was 1.4-fold and 54.0-fold higher than that in biocathode BES (0.39 h(-1)) and ASR (0.01 h(-1)), respectively. COD can be removed after cleavage of azo bond, different from biocathode BES. The combined advantages of this integrated system were achieved by the cooperation of biocathode in modular BES and sludge in ASR. Biocathode was a predominant factor in AO7 decolorization, and anaerobic sludge contributed negligibly to AO7 reduction decolorization but mostly in the COD removal. These results demonstrated the great potential of integrating a BES module with anaerobic treatment process for azo dye treatment. (C) 2014 Elsevier Ltd. All rights reserved.
机译:开发了一种新的集成系统,该模块将带有周围电极部署的模块化生物电化学系统(BES)嵌入厌氧污泥反应器(ASR)中,以改善偶氮染料的脱色。结果表明,在这种系统中不使用共底物,可以改善AO7的脱色和COD去除。集成系统中的脱色动力学速率(0.54 h(-1))分别比生物阴极BES(0.39 h(-1))和ASR(0.01 h(-1))高1.4倍和54.0倍。与生物阴极BES不同,偶氮键断裂后可以去除COD。通过模块化BES中的生物阴极和ASR中的污泥的协作,实现了该集成系统的综合优势。生物阴极是AO7脱色的主要因素,厌氧污泥对AO7还原脱色的贡献可忽略不计,但主要是在COD去除方面。这些结果证明了将BES模块与厌氧处理工艺集成在一起以进行偶氮染料处理的巨大潜力。 (C)2014 Elsevier Ltd.保留所有权利。

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