Literature DB >> 21295969

Power overshoot in two-chambered microbial fuel cell (MFC).

Po-Chin Nien1, Chin-Yu Lee, Kuo-Chuan Ho, Sunil S Adav, Lihong Liu, Aijie Wang, Nanqi Ren, Duu-Jong Lee.   

Abstract

A two-chamber microbial fuel cell was started using iron-reducing strains as inoculum and acetate as carbon sources. The tested microbial fuel cell had an open-circuit voltage of 0.67 V, and reached 1045 mA m(-2) and a power density of 486 mW m(-2) at 0.46 V before power overshoot occurred. Anodic reactions were identified as the rate-determining steps. Stirring the anolyte insignificantly increased cell performance, suggesting a minimal external mass transfer resistance from the anolyte to the anodic biofilm. Data regression analysis indicates that charge transfer resistance at the biofilm-anode junction was negligible. The order of magnitude estimation of electrical conductance indicates that electron transfer resistance had an insignificant effect on microbial fuel cell performance. Resistance in electrogens for substrate utilization is proposed to induce microbial fuel cell power overshoot.
Copyright © 2011. Published by Elsevier Ltd.

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Year:  2010        PMID: 21295969     DOI: 10.1016/j.biortech.2010.12.015

Source DB:  PubMed          Journal:  Bioresour Technol        ISSN: 0960-8524            Impact factor:   9.642


  2 in total

Review 1.  The use of marine microalgae in microbial fuel cells, photosynthetic microbial fuel cells and biophotovoltaic platforms for bioelectricity generation.

Authors:  Zoe Hui-Yee Tay; Fong-Lee Ng; Tau-Chuan Ling; Mitsumasa Iwamoto; Siew-Moi Phang
Journal:  3 Biotech       Date:  2022-06-19       Impact factor: 2.893

2.  Composition and role of the attached and planktonic microbial communities in mesophilic and thermophilic xylose-fed microbial fuel cells.

Authors:  Paolo Dessì; Estefania Porca; Johanna Haavisto; Aino-Maija Lakaniemi; Gavin Collins; Piet N L Lens
Journal:  RSC Adv       Date:  2018-01-15       Impact factor: 3.361

  2 in total

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