Self-powered supercapacitive microbial fuel cell: The ultimate way of boosting and harvesting power

Carlo Santoro, Francesca Soavi, Alexey Serov, Catia Arbizzani, Plamen Atanassov

Research output: Contribution to journalArticlepeer-review

114 Scopus citations

Abstract

In this work, for the first time, we demonstrate a supercapacitive microbial fuel cell which integrates the energy harvesting function of a microbial fuel cell (MFC) with the high-power operation of an internal supercapacitor. The pursued strategies are: (i) the increase of the cell voltage by the use of high potential cathodes like bilirubin oxidase (BOx) or iron-aminoantipyrine (Fe-AAPyr); (ii) the use of an additional capacitive electrode (additional electrode, AdE) which is short-circuited with the MFC cathode and coupled with the MFC anode (MFC-AdE). The high working potential of BOx cathode and the low impedances of the additional capacitive electrode and the MFC anode permitted to achieve up to 19mW (84.4Wm-2, 152Wm-3), the highest power value ever reported for MFCs. Exploiting the supercapacitive properties of the MFC electrodes allows the system to be simpler, cheaper and more efficient without additional electronics management added with respect to an MFC/external supercapacitor coupling. The use of the AdE makes it possible to decouple energy and power and to achieve recharge times in the order of few seconds making the system appealing for practical applications.

Original languageEnglish
Pages (from-to)229-235
Number of pages7
JournalBiosensors and Bioelectronics
Volume78
DOIs
StatePublished - Apr 15 2016
Externally publishedYes

Funding

This project was funded by the Electrochemical Society and Bill & Melinda Gates Foundation under initiative: “Applying Electrochemistry to Complex Global Challenges”. FS and CA acknowledge financial support by Alma Mater Studiorum-Università di Bologna (Researcher Mobility Program).

FundersFunder number
Alma Mater Studiorum-Università di Bologna
Bill and Melinda Gates Foundation
Electrochemical Society

    Keywords

    • Additional electrode
    • EDLC
    • High-current/power
    • Microbial fuel cell
    • Supercapacitor

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