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Microbial fuel cells (MFCs) can be used for industrial wastewater treatment and clean energy production, offering energy and economic benefits, but also have drawbacks such as short lifespan and membrane fouling.

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What they did

System
MFC

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Abstract

A huge amount of wastewater released from industries flow into different water resources such as rivers. Industrial effluents can be regarded as an important resource for water, nutrients and energy. Microbial fuel cell (MFC), a green eco-friendly approach can be applied for the treatment of wastewater with electricity generation concomitantly. It is a novel strategy to generate clean, renewable, safe green energy to maintain a clean environment. MFC technology can be used for effluent treatment, biochemical oxygen demand and chemical oxygen demand elimination, sulphate and removal of toxic metal and denitrification. MFC has an advantage as compared with other wastewater treatment methods because of certain unique properties such as energy and economic benefits, less effect on the environment and high stability. However, the operation of MFCs also has multiple setbacks such as short life span, high cost, membrane fouling and so on. MFC technology shows a pivotal function in solving problems of energy crisis and waste management. This chapter describes current applications of MFC technology for the treatment of industrial effluents with cost-effective energy generation and covers the gap by highlighting key future research areas to improve its performance.

Key findings

  • MFCs can treat industrial effluents, eliminating biochemical oxygen demand, chemical oxygen demand, sulphate, and toxic metals, and denitrification.
  • MFCs have advantages over other wastewater treatment methods due to their energy and economic benefits, and high stability.
  • MFCs can generate clean, renewable, and safe green energy to maintain a clean environment.

Keywords

BioremediationMicrobial fuel cellWaste managementProduction (economics)WastewaterIndustrial wastewater treatment

Identifiers

Journal
Resource Recovery from Industrial Wastewater through Microbial Electrochemical Technologies
Year
2024