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增强单室空气阴极微生物燃料电池中异化电子菌的反硝化活性。

Enhancement of the denitrification activity by exoelectrogens in single-chamber air cathode microbial fuel cells.

机构信息

State Key Laboratory of Clean Energy, Department of Energy Engineering, Zhejiang University, Hangzhou, 310027, PR China.

State Key Laboratory of Clean Energy, Department of Energy Engineering, Zhejiang University, Hangzhou, 310027, PR China.

出版信息

Chemosphere. 2019 Jun;225:548-556. doi: 10.1016/j.chemosphere.2019.03.052. Epub 2019 Mar 11.

Abstract

Single-chamber microbial fuel cells (MFCs) can efficiently treat wastewater containing nitrate, probably because the interaction between exoelectrogens and denitrifying bacteria may enhance the denitrification activity of MFCs. In this study, the denitrification of nitrate with a wide range of concentrations was investigated by using single-chamber air cathode MFCs. The maximum average denitrification rate of the MFCs inoculated and operated under closed-circuit conditions (Group N-CC) was up to 12.2 ± 0.6 kg NO-N m d at a high nitrate concentration of 2000 mg NO-N L, which was 74.3% higher than that of the MFCs inoculated and operated under open-circuit conditions and which was significantly higher than those of other MFC systems and many traditional bioreactors. The high denitrification activity of the MFCs of Group N-CC was attributed to the significant reduction of nitrite accumulation through the possible bioelectrochemical nitrite reduction by exoelectrogens that were only enriched at the anodes of the MFCs of Group N-CC. In addition, the MFCs of Group N-CC showed good stability (over 3.5 years) and low apparent activation energy (34.0 kJ mol) of the denitrification, indicating the good coexistence of exoelectrogens (Geobacter) and denitrifying bacteria (Thauera) with high performance on denitrification during the long-term operation.

摘要

单室微生物燃料电池(MFC)可以有效地处理含硝酸盐的废水,这可能是因为电子供体和反硝化菌之间的相互作用可能会增强 MFC 的反硝化活性。在这项研究中,使用单室空气阴极 MFC 研究了具有宽浓度范围的硝酸盐的反硝化作用。在高硝酸盐浓度为 2000 mg NO-N L 下,接种并在闭路条件下运行的 MFC(N-CC 组)的最大平均反硝化速率高达 12.2 ± 0.6 kg NO-N m d ,比在开路条件下接种和运行的 MFC 提高了 74.3%,也明显高于其他 MFC 系统和许多传统生物反应器。N-CC 组 MFC 的高反硝化活性归因于通过仅在 N-CC 组 MFC 的阳极富集的电子供体可能进行的生物电化学亚硝酸盐还原,显著减少了亚硝酸盐的积累。此外,N-CC 组的 MFC 表现出良好的稳定性(超过 3.5 年)和低的反硝化表观活化能(34.0 kJ mol),这表明在长期运行过程中,具有高性能反硝化作用的电子供体(Geobacter)和反硝化菌(Thauera)可以良好共存。

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