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Integrated organic and nitrogen removal with electricity generation in a tubular dual-cathode microbial fuel cell

机译:管状双阴极微生物燃料电池中的有机脱氮和发电一体化

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This study presented a dual-cathode microbial fuel cell (MFC) that was designed to accomplish nitrification in its outer cathode and denitrification in the inner cathode. The MFC was continuously operated for more than 150 days and achieved organic removal of 85-99% in the anode, dependingon the initial organic loading rates. More than 96% of the ammonium was removed, while the total nitrogen removal was between 66.7 and 89.6%, largely affected by the remaining nitrate in the effluent of the inner cathode. The coulombic efficiency suggested that the nitrate was primarily removed by bioelectrochemcial denitrification in the inner cathode, especially at the low nitrogen loading rates. However, a higher nitrogen loading rate encouraged nitrate migration through the anion exchange membrane, thereby being removed by conventional denitrification. The preliminary energy analysis suggested that the energy production in the dual-cathode MFC could potentially support its pumping system. To achieve an energy-neutral system, aeration must be omitted in the future design and passive oxygen supply should be considered with a proper design of the outer cathode. Those results demonstrated the feasibility of using a tubular dual-cathode MFC to remove both organics and nitrogen while producing electricity.
机译:这项研究提出了一种双阴极微生物燃料电池(MFC),旨在实现其外阴极的硝化和内阴极的反硝化。 MFC连续运行超过150天,并根据初始有机负载率在阳极中实现了85-99%的有机去除率。去除了超过96%的铵,而去除的总氮在66.7%至89.6%之间,这在很大程度上受到内部阴极废水中残留硝酸盐的影响。库仑效率表明,硝酸盐主要是通过生物电化学反硝化作用在内部阴极中去除的,特别是在低氮负载率下。然而,较高的氮负载速率促使硝酸盐迁移通过阴离子交换膜,从而通过常规的反硝化除去。初步的能量分析表明,双阴极MFC的能量产生可能支持其泵送系统。为了实现能量中立的系统,在将来的设计中必须省略曝气,并且应该在外部阴极的适当设计下考虑被动供氧。这些结果证明了在发电时使用管状双阴极MFC去除有机物和氮的可行性。

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