Performance enhancement of single-chamber sediment-microbial fuel cell with variation in cathode surface area

This study investigates the impact of cathode surface area on single chamber sediment-microbial fuel cell (S-MFC). A fixed graphite anode surface area of 0.000471m2 has been used on four S-MFCs coupled with four carbon fiber cloth cathode electrodes with variation of surface area. Pond sediment has...

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Main Authors: Teng, H.C., Kok, B.C., Uttraphan, C., Yee, M.H.
Format: Article
Language:English
Published: GAZI University 2020
Subjects:
Online Access:http://eprints.uthm.edu.my/6550/1/AJ%202020%20%28347%29.pdf
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author Teng, H.C.
Kok, B.C.
Uttraphan, C.
Yee, M.H.
author_facet Teng, H.C.
Kok, B.C.
Uttraphan, C.
Yee, M.H.
author_sort Teng, H.C.
collection UTHM
description This study investigates the impact of cathode surface area on single chamber sediment-microbial fuel cell (S-MFC). A fixed graphite anode surface area of 0.000471m2 has been used on four S-MFCs coupled with four carbon fiber cloth cathode electrodes with variation of surface area. Pond sediment has been used as the anode medium that inoculated with acetate as substrate to ramp up the amount of electrochemical-active bacteria (EAB). The S-MFCs has been operated and monitored for 120 hours using Arduino based data logger. The outcomes of this observation period have indicated the S-MFC with larger cathode surface area (0.01m2) possess smaller internal resistance (123.96±2.68 Ω) and thus performed significantly better than other S-MFC with the smaller cathode surface area, resulting with average voltage and current of 0.598±0.008V and 4.827±0.124mA respectively, where a maximum power density of 2.867mW with a coulombic efficiency of 64.63% was achieved. Successful performance increase suggests enlargement of the cathode area could be the alternative to reduce the internal resistance in traditional MFCs for electricity generation.
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spelling uthm.eprints-65502022-03-01T01:13:53Z http://eprints.uthm.edu.my/6550/ Performance enhancement of single-chamber sediment-microbial fuel cell with variation in cathode surface area Teng, H.C. Kok, B.C. Uttraphan, C. Yee, M.H. TP Chemical technology This study investigates the impact of cathode surface area on single chamber sediment-microbial fuel cell (S-MFC). A fixed graphite anode surface area of 0.000471m2 has been used on four S-MFCs coupled with four carbon fiber cloth cathode electrodes with variation of surface area. Pond sediment has been used as the anode medium that inoculated with acetate as substrate to ramp up the amount of electrochemical-active bacteria (EAB). The S-MFCs has been operated and monitored for 120 hours using Arduino based data logger. The outcomes of this observation period have indicated the S-MFC with larger cathode surface area (0.01m2) possess smaller internal resistance (123.96±2.68 Ω) and thus performed significantly better than other S-MFC with the smaller cathode surface area, resulting with average voltage and current of 0.598±0.008V and 4.827±0.124mA respectively, where a maximum power density of 2.867mW with a coulombic efficiency of 64.63% was achieved. Successful performance increase suggests enlargement of the cathode area could be the alternative to reduce the internal resistance in traditional MFCs for electricity generation. GAZI University 2020 Article PeerReviewed text en http://eprints.uthm.edu.my/6550/1/AJ%202020%20%28347%29.pdf Teng, H.C. and Kok, B.C. and Uttraphan, C. and Yee, M.H. (2020) Performance enhancement of single-chamber sediment-microbial fuel cell with variation in cathode surface area. International Journal of Renewable Energy Research, 10 (1). pp. 512-518. ISSN 1309-0127
spellingShingle TP Chemical technology
Teng, H.C.
Kok, B.C.
Uttraphan, C.
Yee, M.H.
Performance enhancement of single-chamber sediment-microbial fuel cell with variation in cathode surface area
title Performance enhancement of single-chamber sediment-microbial fuel cell with variation in cathode surface area
title_full Performance enhancement of single-chamber sediment-microbial fuel cell with variation in cathode surface area
title_fullStr Performance enhancement of single-chamber sediment-microbial fuel cell with variation in cathode surface area
title_full_unstemmed Performance enhancement of single-chamber sediment-microbial fuel cell with variation in cathode surface area
title_short Performance enhancement of single-chamber sediment-microbial fuel cell with variation in cathode surface area
title_sort performance enhancement of single chamber sediment microbial fuel cell with variation in cathode surface area
topic TP Chemical technology
url http://eprints.uthm.edu.my/6550/1/AJ%202020%20%28347%29.pdf
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