4.8 Review

Recent progress in microbial fuel cells for industrial effluent treatment and energy generation: Fundamentals to scale-up application and challenges

Journal

BIORESOURCE TECHNOLOGY
Volume 346, Issue -, Pages -

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.biortech.2021.126462

Keywords

Microbial fuel cells; Industrial effluent; Wastewater treatment; Bioelectricity; Scale-up

Funding

  1. DST-FIST
  2. Hong Kong Baptist University, HKSAR [RC-OFSGT2/2021/SCI/010]

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This review article discusses the potential applications of microbial fuel cells in decarbonizing electricity generation and treating industrial effluents, as well as the challenges and future directions.
Microbial fuel cells (MFCs) technology have the potential to decarbonize electricity generation and offer an ecofriendly route for treating a wide range of industrial effluents from power generation, petrochemical, tannery, brewery, dairy, textile, pulp/paper industries, and agro-industries. Despite successful laboratory-scale studies, several obstacles limit the MFC technology for real-world applications. This review article aimed to discuss the most recent state-of-the-art information on MFC architecture, design, components, electrode materials, and anodic exoelectrogens to enhance MFC performance and reduce cost. In addition, the article comprehensively reviewed the industrial effluent characteristics, integrating conventional technologies with MFCs for advanced resource recycling with a particular focus on the simultaneous bioelectricity generation and treatment of various industrial effluents. Finally, the article discussed the challenges, opportunities, and future perspectives for the large-scale applications of MFCs for sustainable industrial effluent management and energy recovery.

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