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Urea removal coupled with enhanced electricity generation in single-chambered microbial fuel cells

机译:尿素去除加上单腔微生物燃料电池中的增强发电

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High concentration of total ammonia nitrogen (TAN) in the form of urea is known to inhibit the performance of many biological wastewater treatment processes. Microbial fuel cells (MFCs) have great potential for TAN removal due to its unique oxic/anoxic environment. In this study, we demonstrated that increased urea (TAN) concentration up to 3940 mg/L did not inhibit power output of single-chambered MFCs, but enhanced power generation by 67% and improved coulombic efficiency by 78% compared to those obtained at 80 mg/L of TAN. Over 80% of nitrogen removal was achieved at TAN concentration of 2630 mg/L. The increased nitrogen removal coupled with significantly enhanced coulombic efficiency, which was observed for the first time, indicates the possibility of a new electricity generation mechanism in MFCs: direct oxidation of ammonia for power generation. This study also demonstrates the great potential of using one MFC reactor to achieve simultaneous electricity generation and urea removal from wastewater.
机译:已知以尿素形式的高浓度的总氨氮(TAN)抑制许多生物废水处理过程的性能。由于其独特的氧化/缺氧环境,微生物燃料电池(MFCs)具有很大的棕褐色去除潜力。在这项研究中,我们证明,增加的尿素(TAN)浓度高达3940mg / L不抑制单腔MFC的动力输出,但与80次获得的人相比,增强的电力增强了67%,并提高了库仑效率为78%棕褐色的mg / l。在2630mg / L的TaN浓度下实现超过80%的氮去除。增加的氮去除加上显著增强库仑效率,这是观察到的第一次,表示在微生物燃料电池新发电机制的可能性:氨用于发电的直接氧化。本研究还证明了使用一种MFC反应器来实现从废水中的同时发电和尿素去除的巨大潜力。

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