EN
Investigation and modeling of wastewater treatment, electricity generation and coulombic efficiency by new design nested cylindrical dual chamber microbial fuel cell
Abstract
Microbial fuel cells (MFCs) have attracted significant attention in recent years due to their potential in the biological treatment of waste and wastewater, as well as in energy conversion technologies. In this study, a reactor was designed using polypropylene material. The design positioned the cathode chamber inside the anode chamber to reduce diffusion resistance by minimizing the distance between the two chambers. Additionally, composite anode/cathode electrodes were developed using PTFE (polytetrafluoroethylene). As a result of the study, values for maximum voltage, maximum power density, and COD (chemical oxygen demand) removal efficiency were determined. The coulombic efficiency was also calculated and found to be 11.49%. pH and temperature values were monitored and these parameters remained within a consistent range throughout the study. The findings showed that this reactor design achieved comparable electricity generation potential and effective COD removal efficiency. Finally, voltage and COD removal values were used in Dizayn Expert 7.0.0 (Stat-Ease Inc., Minneapolis, MN, USA) for full factorial experimental modeling to validate the experimental results. Overall, the study is expected to contribute significantly to the literature on reactor designs in microbial fuel cell research.
Keywords
Supporting Institution
Gazi University BAP
Project Number
FDK-2021-7349
Thanks
The authors gratefully thank the Gazi University BAP for support (FDK-2021-7349).
References
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Details
Primary Language
English
Subjects
Clean Production Technologies
Journal Section
Research Article
Publication Date
June 26, 2025
Submission Date
January 6, 2025
Acceptance Date
June 16, 2025
Published in Issue
Year 2025 Volume: 10 Number: 2
APA
Akçay, G. H., & Ar, İ. (2025). Investigation and modeling of wastewater treatment, electricity generation and coulombic efficiency by new design nested cylindrical dual chamber microbial fuel cell. International Journal of Energy Studies, 10(2), 511-522. https://doi.org/10.58559/ijes.1614224
AMA
1.Akçay GH, Ar İ. Investigation and modeling of wastewater treatment, electricity generation and coulombic efficiency by new design nested cylindrical dual chamber microbial fuel cell. Int J Energy Studies. 2025;10(2):511-522. doi:10.58559/ijes.1614224
Chicago
Akçay, Gizem Hazan, and İrfan Ar. 2025. “Investigation and Modeling of Wastewater Treatment, Electricity Generation and Coulombic Efficiency by New Design Nested Cylindrical Dual Chamber Microbial Fuel Cell”. International Journal of Energy Studies 10 (2): 511-22. https://doi.org/10.58559/ijes.1614224.
EndNote
Akçay GH, Ar İ (June 1, 2025) Investigation and modeling of wastewater treatment, electricity generation and coulombic efficiency by new design nested cylindrical dual chamber microbial fuel cell. International Journal of Energy Studies 10 2 511–522.
IEEE
[1]G. H. Akçay and İ. Ar, “Investigation and modeling of wastewater treatment, electricity generation and coulombic efficiency by new design nested cylindrical dual chamber microbial fuel cell”, Int J Energy Studies, vol. 10, no. 2, pp. 511–522, June 2025, doi: 10.58559/ijes.1614224.
ISNAD
Akçay, Gizem Hazan - Ar, İrfan. “Investigation and Modeling of Wastewater Treatment, Electricity Generation and Coulombic Efficiency by New Design Nested Cylindrical Dual Chamber Microbial Fuel Cell”. International Journal of Energy Studies 10/2 (June 1, 2025): 511-522. https://doi.org/10.58559/ijes.1614224.
JAMA
1.Akçay GH, Ar İ. Investigation and modeling of wastewater treatment, electricity generation and coulombic efficiency by new design nested cylindrical dual chamber microbial fuel cell. Int J Energy Studies. 2025;10:511–522.
MLA
Akçay, Gizem Hazan, and İrfan Ar. “Investigation and Modeling of Wastewater Treatment, Electricity Generation and Coulombic Efficiency by New Design Nested Cylindrical Dual Chamber Microbial Fuel Cell”. International Journal of Energy Studies, vol. 10, no. 2, June 2025, pp. 511-22, doi:10.58559/ijes.1614224.
Vancouver
1.Gizem Hazan Akçay, İrfan Ar. Investigation and modeling of wastewater treatment, electricity generation and coulombic efficiency by new design nested cylindrical dual chamber microbial fuel cell. Int J Energy Studies. 2025 Jun. 1;10(2):511-22. doi:10.58559/ijes.1614224