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生态学杂志 ›› 2026, Vol. 45 ›› Issue (5): 1616-1622.doi: 10.13292/j.1000-4890.202605.030

• 研究报告 • 上一篇    下一篇

焦炭/黄铁矿强化微生物燃料电池人工湿地脱氮产电性能

张雪婷1,汪茂森1,秦杨毅1,牛玉龙1,樊鸿轩1,黄亚飞1,候悦林1,吕健翔1,杜京京1,2*   

  1. 1郑州轻工业大学材料与化学工程学院, 郑州 450001; 2环境污染治理与生态修复河南省协同创新中心, 郑州 450001)
  • 出版日期:2026-05-10 发布日期:2026-05-08

Enhancement of nitrogen removal and power generation by coke/pyrite microbial fuel cell-constructed wetland.

ZHANG Xueting1, WANG Maosen1, QIN Yangyi1, NIU Yulong1, FAN Hongxuan1, HUANG Yafei1, HOU Yuelin1, LYU Jianxiang1, DU Jingjing1,2*   

  1. (1School of Materials and Chemical Engineering, Zhengzhou University of Light Industry, Zhengzhou 450001, China; 2Henan Collaborative Innovation Center of Environmental Pollution Control and Ecological Restoration, Zhengzhou University of Light Industry, Zhengzhou 450001, China).

  • Online:2026-05-10 Published:2026-05-08

摘要: 微生物燃料电池-人工湿地(MFC-CW)因能够同时实现污染物去除与资源化利用而受到广泛关注。本研究以废焦炭和黄铁矿作为混合阳极填料构建了焦炭/黄铁矿强化MFC-CW系统(Mix-MFC-CW),并以黄铁矿单一阳极填料的MFC-CW系统(Py-MFC-CW)作对比,以探究焦炭与黄铁矿混合作为阳极填料是否能增强系统性能。结果表明,焦炭的介入使混合阳极层增加了微孔结构和比表面积,使系统的铵氮和总无机氮去除效率显著提高,分别达89.84%±1.63%和87.82%±1.58%,同时产电性能得到进一步提升,其最大输出电压和功率密度分别达到666 mV和1.18 mW·m-3。高通量测序结果显示,Py-MFC-CW在磷去除方面具有一定优势,这可能与系统中-norank_o__Run-SP154的丰度较高有关。相比之下,在Mix-MFC-CW中,如ThiothrixCandidatus_CompetibacterThauera等反硝化细菌丰度高于Py-MFC-CW。因此,Mix-MFC-CW有望成为一种具有竞争力的技术,同时提高脱氮和发电的性能。


关键词: 微生物燃料电池-人工湿地, 焦炭, 黄铁矿, 脱氮, 产电

Abstract: Microbial fuel cell-constructed wetland (MFC-CW) is considered an environment-friendly and sustainable technology to simultaneously purify water and generate bioelectricity. In this study, two MFC-CWs, including a coke/pyrite-based system (Mix-MFC-CW) and a pyrite-based system (Py-MFC-CW), were constructed to explore the role of coke and pyrite as mixed anode materials in enhancing system performance. Results showed that the incorporation of coke increased the microporous structure and specific surface area of the anode region, significantly enhancing the removal efficiency of ammonium nitrogen (89.84%±1.63%) and total inorganic nitrogen (87.82%±1.58%), as well as electricity generation. The maximum output voltage and power density reached 666 mV and 1.18 mW·m-3, respectively. High-throughput sequencing results showed that Py-MFC-CW exhibited advantage in phosphorus removal, which may be related to the higher abundance of norank_o__Run-SP154. In contrast, the abundances of denitrifying bacteria such as Thiothrix, Candidatus_Competibacter, and Thauera were higher in Mix-MFC-CW than in Py-MFC-CW. Therefore, Mix-MFC-CW would be a competitive technology facilitating both nitrogen removal and electricity generation.


Key words: microbial fuel cell-constructed wetland, coke, pyrite, nitrogen removal, electricity generation