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Biological anodic oxidation and cathodic reduction reactions for improved bioelectrochemical treatment of petroleum refinery wastewater

机译:生物阳极氧化和阴极还原反应改善石油炼厂废水的生物电化学处理

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摘要

Bioelectrochemical systems (BESs) were evaluated for the bioelectrochemical treatment (BET) of petroleum refinery wastewater (PRW) by applying mild electrochemical potential in the range of 400 -1000 mV on a single chamber membrane-less BES configured with anodic and cathodic biofilms. After four days of cycle operation in batch mode, BES achieved a maximum current density of 278 mAim2 and a power density of 222 mW/m(2) using applied potential of 800 mV. This system also achieved COD degradation rate of 0.364 kg COD/m(3)-day. Diesel range organics (DROs) exhibited more than 90% degradation, which is 15 times higher than the abiotic control. Electrochemically active bioanode and biocathode contributed to the degradation of PRW through both oxidation and reduction reactions with mild applied potentials. This also resulted in a 30% improvement in COD removal compared to MFC with biocatalyst only on the anode. The function of improved bioelectrochemical treatment was also exhibited by redox current values of cyclic voltammograms. (C) 2018 Elsevier Ltd. All rights reserved.
机译:通过在配置有阳极和阴极生物膜的单室无膜BES上施加400 -1000 mV范围内的适度电化学势,评估了生物电化学系统(BESs)对石油炼厂废水(PRW)的生物电化学处理(BET)。在批处理模式下运行四天后,BES使用800 mV的施加电势达到了278 mAim2的最大电流密度和222 mW / m(2)的功率密度。该系统还实现了0.364 kg COD / m(3)-day的COD降解率。柴油机范围内的有机物(DRO)表现出超过90%的降解,比非生物类对照高15倍。具有电化学活性的生物阳极和生物阴极通过轻度施加电势的氧化和还原反应促进了PRW的降解。与仅在阳极上使用生物催化剂的MFC相比,这还使COD去除率提高了30%。循环伏安图的氧化还原电流值也显示出改进的生物电化学处理的功能。 (C)2018 Elsevier Ltd.保留所有权利。

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