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Removal of ammonia from leachate by using thermophilic microbial fuel cells equipped with membrane electrode

机译:通过使用配备有膜电极的嗜热微生物燃料电池从渗滤液中除去氨

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In wastewater treatment, biological nitrogen removal is an important topic, and the optimal condition for it is a mesophilic environment. This study developed a thermophilic microbial fuel cells (thermo-MFCs) equipped with a hydrophobic membrane electrode to remove and recover ammonia and water from leachate. The results were compared with those of the mesophilic MFCs (meso-MFCs) and they show that the current and power densities for meso-MFCs are higher. The ammonia removal efficiencies of thermo-MFCs are 83% (closed circuit) and 60% (open circuit), higher than those of closed- and open-circuit meso-MFCs (48 and 38%, respectively). Water vapor, the main recovery water flux for the thermo-MFCs, provided 36.5?L?m??2 d??1 using the closed-circuit mode without applied energy. Moreover, thermo-MFCs and meso-MFCs can be restored within 24?h even under inhibition by using 7200?mg?L??1 ammonia. The proposed process presents an economic and ecofriendly method to not only recover water and ammonia from leachate but also alleviate ammonia inhibition.
机译:在废水处理中,生物氮去除是一个重要的话题,并且它的最佳条件是融合环境。该研究开发了配备有疏水性膜电极的嗜热微生物燃料电池(Thermo-MFC),以除去并从渗滤液中回收氨和水。将结果与嗜培素MFCs(Meso-MFC)的结果进行比较,并且他们表明Meso-MFC的电流和功率密度更高。热-MFC的氨去除效率为83%(闭合电路)和60%(开路),高于闭合和开路Meso-MFC(分别为48和38%)。水蒸气,热量MFC的主要恢复水通量,提供36.5?L≤m≤2d2d,使用闭合电路模式而无需施加能量。此外,即使在使用7200?MG?1氨在抑制下,也可以在24μl中恢复Thermo-MFC和Meso-MFC。该拟议的方法呈现经济和生态的方法,不仅可以从渗滤液中恢复水和氨,而且还可以减轻氨抑制。

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