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Utilization of single-chamber microbial fuel cells as renewable power sources for electrochemical degradation of nitrogen-containing organic compounds

机译:利用单室微生物燃料电池作为可再生电源,用于电化学降解含氮有机化合物

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摘要

By employing promising single-chamber microbial fuel cells (MFCs) as renewable power sources, an aerated electrochemical system is proposed and for nitrogen-containing organic compounds (pyridine and methyl orange) removals. Carbon felt performed the best as electrode material while lower initial contaminantconcentration and lower initial pH value could improve the performance. A degradation efficiency of 82.9% for pyridine was achieved after 360 min electrolysis with its initial concentration of 200 mg/L, initial pH of 3.0 and applied voltage of 700 mV. Mechanisms study implied that indirect electrochemical oxidation by generated hydrogen peroxide was responsible for their degradation. This study provides an alternative utilization form of low bioelectricity from MFCs and reveals that applying it to electrochemical process is highly-efficient as well as cost-effective for degradation of nitrogen-containing organic compounds.
机译:通过使用有前途的单室微生物燃料电池(MFC)作为可再生能源,提出了一种充气电化学系统,用于去除含氮有机化合物(吡啶和甲基橙)。碳毡作为电极材料的性能最佳,而较低的初始污染物浓度和较低的初始pH值可以改善性能。电解360分钟后,吡啶的降解效率为82.9%,初始浓度为200 mg / L,初始pH为3.0,施加电压为700 mV。机理研究表明,生成的过氧化氢间接电化学氧化是其降解的原因。这项研究提供了MFCs的低生物电替代利用形式,并揭示了将其应用于电化学过程对于降解含氮有机化合物既高效又具有成本效益。

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