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Performance of single-layer paper-based co-laminar flow microbial fuel cells

Authors
Lee, Cheon HoHa, HongyoungAhn, YoominLiu, Hong
Issue Date
Oct-2023
Publisher
Elsevier B.V.
Keywords
Disposable; Hybrid biofuel cell; Membraneless; Microfabricated; Microfluidic; Self-pumping
Citation
Journal of Power Sources, v.580, pp 1 - 11
Pages
11
Indexed
SCIE
SCOPUS
Journal Title
Journal of Power Sources
Volume
580
Start Page
1
End Page
11
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/113842
DOI
10.1016/j.jpowsour.2023.233456
ISSN
0378-7753
1873-2755
Abstract
This paper presents a novel design and operation of microbial fuel cells (ΜFCs), which contain monolayer paper-based substrate/electrodes and microchannels with co-laminar flow. The electrodes with multi-wall carbon nanotubes are fabricated by the screen-printing method and the microchannels are patterned using photo-lithography. A double-inlet and diverging channel design is incorporated in the fuel cell configuration and demonstrated significantly improved performance. The fluid flows of electrolytes through the porous paper media are simulated using steady-state and transient computational fluid dynamics The best performance is achieved under the following conditions: an electroactive microbial (S. oneidensis) concentration of OD6001.5, 50 mM electron donor (lactate), and direct immobilized of the inoculum on the anode surface. The developed MFCs achieves a peak power density of 19.4 ± 0.23 μW cm−2 and maximum current density of 190.4 ± 1.39 μA cm−2, surpassing the performance of all previously reported paper-based single MFCs that utilize paper-based electrodes. In addition, hybrid-type MFCs that containing enzymatic air-breathing cathodes are investigated to enhance their performance. The novel paper based self-pumping MFC has the potential to make lab-on-a-chip type portable medical diagnosis devices with integrated power sources practical and feasible. © 2023 Elsevier B.V.
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ERICA 공학대학 (DEPARTMENT OF MECHANICAL ENGINEERING)
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