山东科学

• 环境与生态 •    

土壤微生物燃料电池对有机物污染降解研究进展

谷广锋1,刘铭辉1,李凤祥2*   

  1. 1海油发展安全环保公司,天津300457; 2南开大学 环境科学与工程学院,天津300350
  • 收稿日期:2025-05-11 接受日期:2025-06-07 上线日期:2026-03-13
  • 通信作者: 李凤祥 E-mail:lifx@nankai.edu.cn
  • 作者简介:谷广锋(1988—),硕士研究生,高级工程师,研究方向为石油污染土壤环境调查风险评估及修复管控技术研发。E-mail:gugf880124@163.com
  • 基金资助:
    海油发展安全环保公司科技项目(HFKJ-AHY2022-10

Research progress of soil microbial fuel cells for degrading organic pollutants

GU Guangfeng1, LIU Minghui1, LI Fengxiang2*   

  1. 1. CNOOC Development Safety and Environmental Protection Company, Tianjin 300457, China; 2. School of Environmental Science and Engineering, Nankai University, Tianjin 300350, China
  • Received:2025-05-11 Accepted:2025-06-07 Online:2026-03-13
  • Contact: LI Fengxiang E-mail:lifx@nankai.edu.cn

摘要: 土壤微生物燃料电池(soil microbial fuel cell,SMFC)是一种制作成本低廉的装置,能够利用阳极微生物将土壤中的有机物化学能转化为电能,同时降解土壤中的有机污染物,在土壤修复与可持续农业方面具有广阔的应用前景。然而,当前SMFC在产电效率和降解效率方面仍有待提升,其在土壤有机污染物修复中的应用还存在诸多空白。为此,本文系统总结了SMFC对土壤中各种有机物污染去除的研究进展,旨在为SMFC产电效率和降解效率的提升及未来研究方向的探索提供参考。首先,详细阐述了SMFC降解土壤有机污染物的原理,分析了顶部式、插入式、U型SMFC的应用情况,并深入探讨了电极材料、土壤介质对SMFC性能的影响及选择依据。其次,分析阳极不同微生物种类的作用及其在SMFC中的分布变化。在此基础上,总结了多种提升SMFC产电效率和降解效率的方法,如优化电极结构、添加电子穿梭体、调控环境条件等。最后,指出未来SMFC的发展方向应聚焦于提高其稳定性和规模化应用能力,探索更高效的电极材料和微生物菌种,以及拓展其在不同土壤类型和污染物种类中的应用范围。

关键词: 土壤微生物燃料电池, 有机物污染, 降解机制, 降解影响因素, 降解效率

Abstract: Soil microbial fuel cells (SMFCs) are low-cost devices capable of converting chemical energy of organic matter into electricity through anodic microorganisms while simultaneously degrading organic pollutants in the soil. Therefore, they have promising applications in soil remediation and sustainable agriculture. However, the existing SMFCs still face limitations in terms of power generation and pollutant degradation efficiency. Moreover, many gaps are observed in their application for soil remediation of organic pollutants. Therefore, this article systematically reviews the research progress of SMFCs for degrading various organic pollutants in the soil, aiming to provide references for enhancing the power generation and degradation efficiency of SMFC and guiding future research directions. First, the article elucidates the principles of SMFCs in degrading soil organic pollutants, analyzes the application of top-, insertion-, and U-type SMFCs, and deeply discusses the impacts of electrode materials and soil media on the SMFC performance as well as the criteria for their selection. Second, it analyzes the different microbial species roles in the anode and their distribution changes in SMFCs. Accordingly, this article summarizes various methods to improve the power generation and degradation efficiency of SMFCs, such as optimizing electrode structures, adding electron mediators, and regulating environmental conditions. Future directions for developing SMFCs should focus on enhancing their stability and scalability, exploring highly efficient electrode materials and microbial strains, and expanding their applicability across different soil types and pollutants.

Key words: soil microbial fuel cells, organic pollutants, mechanism of degradation, factors affecting degradation, degradation efficiency

中图分类号: 

  • P14

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