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Biological Denitrification in Microbial Fuel Cells

机译:微生物燃料电池中的生物反硝化

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Microbial fuel cells (MFCs) that remove carbon as well as nitrogen compounds out of wastewater are of special interest for practice. We developed a MFC in which microorganisms in the cathode performed a complete denitrification by using electrons supplied by microorganisms oxidizing acetate in the anode. The MFC with a cation exchange membrane was designed as a tubular reactor with an internal cathode and was able to remove up to 0.146 kg NO_3~--N m~(-3) net cathodic compartment (NCC) d~(-1) (0.080 kg NO_3~--N m~(-3) total cathodic compartment d~(-1) (TCC)) at a current of 58 A m~(-3) NCC (32 A m~(-3) TCC) and a cell voltage of 0.075 V. The highest power output in the denitrification system was 8 W m~(-3) NCC (4 W m~(-3) TCC) with a cell voltage of 0.214 V and a current of 35 A m~(-3) NCC. The denitrification rate and the power production was limited by the cathodic microorganisms, which only denitrified significantly at a cathodic electrode potential below 0 V versus standard hydrogen electrode (SHE). This is, to our knowledge, the first study in which a MFC has both a biological anode and cathode performing simultaneous removal of an organic substrate, power production, and complete denitrification without relying on H_2-formation or external added power.
机译:实践中特别关注从废水中去除碳和氮化合物的微生物燃料电池(MFCs)。我们开发了一种MFC,其中阴极中的微生物通过利用微生物将阳极中的乙酸盐氧化的微生物提供的电子进行完全脱氮。带有阳离子交换膜的MFC被设计为带有内部阴极的管式反应器,并且能够去除高达0.146 kg的NO_3〜--N m〜(-3)净阴极室(NCC)d〜(-1)( 0.080千克NO_3〜--N m〜(-3)总阴极室d〜(-1)(TCC)),电流为58 A m〜(-3)NCC(32 A m〜(-3)TCC)反硝化系统的最高输出功率为8 W m〜(-3)NCC(4 W m〜(-3)TCC),电池电压为0.214 V,电流为35 A m〜(-3)NCC。阴极微生物限制了反硝化速率和发电量,而阴极微生物仅在低于标准V电极(SHE)的0 V阴极电极电位下才显着反硝化。据我们所知,这是第一项研究,其中MFC同时具有生物阳极和阴极,可同时去除有机底物,发电和完全脱氮,而无需依赖于H_2的形成或外部增加的功率。

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