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Microbial fuel cell-photoelectrocatalytic cell combined system for the removal of azo dye wastewater

机译:微生物燃料电池 - 光电催化细胞组合系统去除Azo染料废水

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In this study, a novel parallel circuit microbial fuel cell-photoelectrocatalytic cell (MFC-PEC) combined system was established to enhance azo dye removal. Results showed that this system had synergistic effects compared with the MFC alone. In the MFC part, a 56% decrease in chemical oxygen demand (COD) and 85% decolorization were achieved, and further reduced by 25% and 12% in the PEC part where titania nanotube functioned as the photoelectrode. For one thing, the PEC raised the maximum current of the MFC by 14.2%, which facilitated COD removal and decolorization in the MFC and promoted adenosine triphosphate (ATP) level of anode microorganisms, for another, this system significantly increased the dye removal in the PEC. Besides, cyclic voltammograms illustrated intermediate products degradation in this system. Hence, the system achieved marked deep decolorization and rapid toxic intermediate products degradation of high concentration azo dyes. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在该研究中,建立了一种新颖的平行电路微生物燃料电池 - 光电催化细胞(MFC-PEC)组合系统,以增强偶氮染料去除。结果表明,与单独的MFC相比,该系统具有协同效应。在MFC部分中,化学需氧量(COD)降低56%,达到85%的脱色,并且在作为光电极的二氧化钛部分中进一步减少25%和12%。首先,PEC将MFC的最大电流提高14.2%,促进了MFC中的COD去除和脱色,并促进了阳极微生物的腺苷三磷酸(ATP)水平,对于另一个,该系统显着提高了染料去除的染料去除PEC。此外,循环伏安图示出了该系统中的中间产品降解。因此,该系统实现了明显的深度脱色和快速有毒的中间产物,降低了高浓度的偶氮染料。 (c)2017 Elsevier Ltd.保留所有权利。

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