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Power generation and organics removal from wastewater using activated carbon nanofiber (ACNF) microbial fuel cells (MFCs)
Authors:Udayarka Karra  Seetha S. Manickam  Jeffrey R. McCutcheon  Nirav Patel  Baikun Li
Affiliation:1. Department of Civil and Environmental Engineering, University of Connecticut, Storrs, CT 06269, United States;2. Department of Chemical Engineering, University of Connecticut, Storrs, CT 06269, United States
Abstract:Carbon-based materials are the most commonly used electrode material for anodes in microbial fuel cell (MFC), but are often limited by their surface areas available for biofilm growth and subsequent electron transfer process. This study investigated the use of activated carbon nanofibers (ACNF) as the anode material to enhance bacterial biofilm growth, and improve MFC performance. Qualitative and quantitative biofilm adhesion analysis indicated that ACNF exhibited better performance over the other commonly used carbon anodes (granular activated carbon (GAC), carbon cloth (CC)). Batch-scale MFC tests showed that MFCs with ACNF and GAC as anodes achieved power densities of 3.50 ± 0.46 W/m3 and 3.09 ± 0.33 W/m3 respectively, while MFCs with CC had a lower power density of 1.10 ± 0.21 W/m3 In addition, the MFCs with ACNF achieved higher contaminant removal efficiency (85 ± 4%) than those of GAC (75 ± 5%) and CC (70 ± 2%). This study demonstrated the distinct advantages of ACNF in terms of biofilm growth and electron transport. ACNF has a potential for higher power generation of MFCs to treat wastewaters.
Keywords:Microbial fuel cell (MFC)   Activated carbon nanofibers (ACNF)   Wastewater treatment   Biofilm   Bioavailable surface area
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