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Glycerol degradation in single-chamber microbial fuel cells
Authors:Nimje Vanita Roshan  Chen Chien-Yen  Chen Chien-Cheng  Chen Hau-Ren  Tseng Min-Jen  Jean Jiin-Shuh  Chang Young-Fo
Institution:a Department of Life Science, National Chung Cheng University, 168 University Road, Minhsiung, Chiayi 621, Taiwan
b Department of Biotechnology, National Kaohsiung Normal University, No. 62, Shenjhong Rd., Yanchao Township, Kaohsiung County 82444, Taiwan
c Department of Earth and Environmental Sciences, National Chung Cheng University, 168 University Road, Minhsiung, Chiayi 621, Taiwan
d Department of Earth Sciences, National Cheng Kung University, No. 1 University Road, Tainan City 701, Taiwan
Abstract:Glycerol degradation with electricity production by a pure culture of Bacillus subtilis in a single-chamber air cathode of microbial fuel cell (MFC) has been demonstrated. Steady state polarization curves indicated a maximum power density of 0.06 mW/cm2 with an optimal external resistance of 390Ω. Analysis of the effect of pH on MFC performance demonstrated that electricity generation was sustained over a long period of time under neutral to alkaline conditions. Cyclic voltammetry exhibited the increasing electrochemical activity with the increase of pH of 7, 8 and 9. Voltammetric studies also demonstrated that a two-electron transfer mechanism was occurring in the reactor. The low Coulombic efficiency of 23.08% could be attributed to the loss of electrons for various activities other than electricity generation. This study describes an application of glycerol that could contribute to transformation of the biodiesel industry to a more environmentally friendly microbial fuel cell-based technology.
Keywords:Glycerol  Microbial fuel cells  Bacillus subtilis  Cyclic voltammograms  Coulombic efficiency
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