Release Time:2019-03-09 Hits:
Indexed by: Journal Article
Date of Publication: 2015-01-01
Journal: RSC ADVANCES
Included Journals: Scopus、EI、SCIE
Volume: 5
Issue: 65
Page Number: 52361-52368
ISSN: 2046-2069
Abstract: Cost effective air-cathodes are very important for application of Microbial Fuel Cells (MFCs). Carbon fiber cloth was used as the base for preparing air-cathodes with cheap polyvinylidene fluoride (PVDF) coating on the solution-side to replace expensive Nafion as a separator regardless of the ion exchange part. The separator on the solution-side was a vital part for stable electricity generation. Another PVDF layer was coated on the air-side via a thickness-controllable method as the diffusion layer. The comparisons between Nafion and PVDF on the solution-side of cathode in electricity generation and fouling/regeneration were tested in MFCs without any catalyst. The cell voltage of the Nafion air-cathode MFC (0.23 V) was slightly higher than the PVDF MFC (0.2 V). Biofouling and cation deposition on air-cathodes became more severe with time, negatively affecting electricity generation. Soaking the air-cathode with solution-side Nafion in HCl (maximum power density: 338.1 mW m(-2)) can regenerate the cathodes and enhance the electricity generation much more than that regenerated by ultraviolet light (UV) irradiation.
Prev One:integration of stainless steel cathode with carbon and/oralgae in MFC-MBR system for enhanced power recoveryand improved nitrogen removal in wastewater treatment
Next One:Catalytic and filterable polyester-filter membrane electrode with a high performance carbon foam-Fe-Co catalyst improved electricity generation and waste-water treatment in MBR-MFC