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Degradation pathway and mechanism of Reactive Brilliant Red X-3B in electro-assisted microbial system under anaerobic condition

机译:厌氧条件下电助微生物系统中活性艳红X-3B的降解途径及机理

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摘要

The degradations of Reactive Brilliant Red X-3B (RBRX-3B) in an electric-assisted microbial system (EAMS), a microbial system (MS) and an electrochemical system (ECS) were compared. The degradation efficiency of RBRX-3B in EAMS (99.8%) was 10.8% higher than the sum in MS (61.9%) and ECS (27.1%) at 24 h at the optimal voltage of 0.4V, indicating that there was a synergistic effect between the electrode reaction and the biodegradation. The RBRX-3B degradation in EAMS followed first-order kinetic model. The activation energy of RBRX-3B degradation in EAMS was calculated to be 60.53 kJ mol(-1) by the Arrhenius equation, showing that the degradation rate of RBRX-3B mainly depended on bio-chemical reaction. RBRX-3B was degraded to both low-strength toxic compounds and nontoxic compounds in EAMS and those intermediates were easier to be further degraded. The pathway of RBRX-3B degradation in EAMS was different from that in MS. (C) 2017 Elsevier B.V. All rights reserved.
机译:比较了电辅助微生物系统(EAMS),微生物系统(MS)和电化学系统(ECS)中活性艳红X-3B(RBRX-3B)的降解情况。在0.4V的最佳电压下24小时内,RBMS-3B在EAMS中的降解效率(99.8%)比MS(61.9%)和ECS(27.1%)的总降解效率高10.8%,表明有协同作用。在电极反应和生物降解之间。 EAMS中的RBRX-3B降解遵循一阶动力学模型。通过Arrhenius方程计算出EAMS中RBRX-3B降解的活化能为60.53 kJ mol(-1),表明RBRX-3B的降解速率主要取决于生化反应。 RBRX-3B在EAMS中被降解为低强度有毒化合物和无毒化合物,这些中间体更易于进一步降解。 EAMS中RBRX-3B降解的途径与MS中不同。 (C)2017 Elsevier B.V.保留所有权利。

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