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Influence of nitrogen limitation on performance of a microbial fuel cell

机译:氮限制对微生物燃料电池性能的影响

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We describe the operation of a microbial fuel cell (MFC) system operating on a synthetic wastewater (acetic acid), under conditions of increasing nitrogen limitation. Two MFCs were operated under feed conditions which spanned a range of TKN/COD values of 1.6-28 mg/g. Stable operation was observed in all cases, even when no ammoniacal nitrogen was added to the cell. Improved electrochemical performance (measured as power density, W/m2) was observed as nitrogen limitation was imposed on the cells. Even with no ammonium addition, continuous function of the cell was maintained, at levels consistent with operation at balanced nutrient supplementation. The work has implicated biological nitrogen fixation as a potential source of nitrogen within the MFC. Whilst this hypothesis has yet to be confirmed, the work highlights the opportunity for continuous operation of microbial fuel cells utilising wastewaters with extremely low nitrogen levels, present in pulp and paper, pharmaceutical and petrochemical industries. Further, the described increases in some of the electrochemical indices (e.g. power density) under application of nitrogen limitation may provide a new approach to increasing fuel cell performance. Finally, the lack of any need to add supplemental nitrogen to a MFC-based wastewater treatment technology holds potential for significant financial and environmental savings.
机译:我们描述了在氮限制增加的条件下,对合成废水(乙酸)进行操作的微生物燃料电池(MFC)系统的操作。在进料条件下操作两种MFC,其进料范围为1.6-28 mg / g的TKN / COD值。在所有情况下都可以观察到稳定的运行,即使没有向池中添加氨氮也是如此。由于对电池施加了氮限制,观察到了电化学性能的改善(以功率密度,W / m2衡量)。即使不添加铵,也可以维持细胞的连续功能,其水平与平衡营养补充下的操作相一致。这项工作暗示了生物固氮是MFC中潜在的氮源。尽管这一假设尚未得到证实,但这项工作强调了利用纸浆和造纸,制药和石化行业中存在的极低氮含量废水的微生物燃料电池连续运行的机会。此外,在施加氮限制下所描述的一些电化学指数(例如功率密度)的增加可以提供提高燃料电池性能的新方法。最后,由于不需要在基于MFC的废水处理技术中添加补充氮,因此具有节省大量财务和环境的潜力。

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