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Optimized matching modes of bioelectrochemical module and anaerobic sludge in the integrated system for azo dye treatment

机译:偶氮染料处理一体化系统中生物电化学模块与厌氧污泥的优化匹配方式

摘要

In this work, three matching modes (relative positions, catholyte flow sequences, and flow regimes) of bioelectrochemical module and anaerobic sludge were evaluated and optimized for azo dye treatment in the integrated system with embedding modular bioelectrochemical system into anaerobic sludge reactor. Results showed that it was favorable to operate this integrated system under the condition of 1/4 cathode soaking into sludge with spiral distributor in down-flow direction. Current, electrochemical impedance spectroscopy and pH clearly demonstrated the important role of 1/4 soaking in electron/proton transfer. The down-flow direction flowed through electrode zone and then sludge zone could benefit to the efficient use of cathode and improve AO7 treatment. Furthermore, the positive effect of spiral catholyte distributor might be due to its promoting role in mixing and creating a spiral flow channel around the cathode electrode-microbes-solution interface. These results exhibited great potential for matching modular bioelectrochemical system with anaerobic treatment process. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在这项工作中,对生物电化学模块和厌氧污泥的三种匹配模式(相对位置,阴极电解液流动顺序和流动方式)进行了评估和优化,以将模块化生物电化学系统嵌入厌氧污泥反应器的集成系统中的偶氮染料处理。结果表明,在带向下分布的螺旋分配器的1/4阴极浸入污泥的条件下,运行该集成系统是有利的。电流,电化学阻抗谱和pH值清楚地证明了1/4浸泡在电子/质子转移中的重要作用。向下流动的方向流经电极区,然后流向污泥区,这将有利于阴极的有效利用并改善AO7处理。此外,螺旋阴极电解液分配器的积极作用可能是由于其在阴极电极-微生物-溶液界面周围混合并创建螺旋流动通道方面的促进作用。这些结果显示了将模块化生物电化学系统与厌氧处理工艺相匹配的巨大潜力。 (C)2015 Elsevier Ltd.保留所有权利。

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