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Updated: May 3, 2026

Characterizing Electron Transport through Living Biofilms
Published on: June 1, 2018
Enhanced azithromycin removal in microalgae-microbial fuel cells: comparative analysis of anode and cathode
Jesna Fathima1, P R Sreekutty2, Pritha Chatterjee3
1Department of Civil Engineering, Indian Institute of Technology Hyderabad, Kandi-Mandal, Sangareddy District, Telangana Pin: 502284, India.
None:
Azithromycin (AZ), a broad-spectrum antibiotic, is commonly found in aquatic habitats. This study investigated two microalgae-microbial fuel cell (m-MFC) configurations, A-AZ-MFC (AZ in the anode) and C-AZ-MFC (AZ in the cathode), which were run in fed-batch mode under open- and closed-circuit conditions (10-200 mg/L AZ). AZ removal increased from 43 % in an open circuit to 83 % when the circuit was closed in A-AZ-MFC and from 68 % to 84 % in C-AZ-MFC. While both A-AZ-MFC and C-AZ-MFC achieved comparable AZ degradation (83-84 %), A-AZ-MFC demonstrated superior electrochemical output (Power density: 275 mW/m3; Net energy recovery: 0.11 kWh/kg COD; Coulombic efficiency: 26 %) and higher microbial tolerance (IC50 = 77.02 mg/L), indicating effective electron transfer and steady biofilm activity. Both designs achieved successful detoxification, as evidenced by comparable transformation product profiles and lower effluent toxicity. These findings demonstrate m-MFCs, especially anode-optimized systems, as sustainable platforms for the removal of antibiotics and the production of bioenergy.
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