Evaluation of a Pilot-Scale Water Treatment System with Passive Aerated, Membraneless Microbial Fuel Cell

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Abstract

Wastewater treatment has become a priority in the global attempt to address environmental pollution. Conventional wastewater treatment processes are often limited by their high energy consumption, so it is necessary to develop new technologies. This work shows the results obtained using a passive aerated membraneless microbial fuel cell (PAML-MFC) system consisting of 10 individual units, designed to treat 1000 L/day of real wastewater, using granular activated carbon anodes and cathodes. The pilot-scale water treatment system under study combines design and materials to result in low-cost operation. After 300 days of treating real wastewater originally characterized by a chemical oxygen demand (COD) value of 500 mg/L on average, it was found that the PAML-MFC under study removed 60 to 80% of the COD contained in real wastewater. Under these conditions, the individual MFCs reached an average power density below 1 mW/m3.

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Juarez, Z. A., Ramírez, V., Hernández-Benítez, C., Godínez, L. A., Gutierrez, I. R., & Rodríguez-Valadez, F. J. (2025). Evaluation of a Pilot-Scale Water Treatment System with Passive Aerated, Membraneless Microbial Fuel Cell. Catalysts, 15(8). https://doi.org/10.3390/catal15080765

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