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Effect of electrode position on azo dye removal in an up-flow hybrid anaerobic digestion reactor with built-in bioelectrochemical system

机译:内置生物电化学系统的上流混合厌氧消化反应器中电极位置对偶氮染料去除的影响

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摘要

In this study, two modes of hybrid anaerobic digestion (AD) bioreactor with built-in BESs (electrodes installed in liquid phase (R1) and sludge phase (R2)) were tested for identifying the effect of electrodes position on azo dye wastewater treatment. Alizarin yellow R (AYR) was used as a model dye. Decolorization efficiency of R1 was 90.41 +/- 6.20% at influent loading rate of 800 g-AYR/ m(3).d, which was 39% higher than that of R2. The contribution of bioelectrochemical reduction to AYR decolorization (16.23 +/- 1.86% for R1 versus 22.24 +/- 2.14% for R2) implied that although azo dye was mainly removed in sludge zone, BES further improved the effluent quality, especially for R1 where electrodes were installed in liquid phase. The microbial communities in the electrode biofilms (dominant by Enterobacter) and sludge (dominant by Enterococcus) were well distinguished in R1, but they were similar in R2. These results suggest that electrodes installed in liquid phase in the anaerobic hybrid system are more efficient than that in sludge phase for azo dye removal, which give great inspirations for the application of AD-BES hybrid process for various refractory wastewaters treatment.
机译:在这项研究中,测试了两种内置BES的混合厌氧消化(AD)生物反应器模式(电极安装在液相(R1)和污泥相(R2)中),以确定电极位置对偶氮染料废水处理的影响。茜素黄R(AYR)用作模型染料。在进水率为800 g-AYR / m(3).d时,R1的脱色效率为90.41 +/- 6.20%,比R2的脱色效率高39%。生物电化学还原对AYR脱色的贡献(R1为16.23 +/- 1.86%,R2为22.24 +/- 2.14%)表明,尽管偶氮染料主要在污泥区去除,但BES进一步提高了废水质量,特别是对于R1电极以液相安装。电极生物膜(以肠杆菌为主)和污泥(以肠球菌为主)中的微生物群落在R1中得到了很好的区分,但在R2中却相似。这些结果表明,厌氧混合系统中液相安装的电极比污泥相中的偶氮染料去除效率更高,这为将AD-BES混合工艺应用于各种难处理废水处理提供了很大的启发。

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