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- W3010356422 abstract "• BPC-MFCs provide sustainable high-energy recovery. • Nitrifying bacteria on the BPC effectively remove NH 4 + -N. • BPC biomass remains below 0.3 g protein/m 2 throughout two years of operation. • The reduced biomass of the BPC has no negative effect on MFC performance. Biofouling frequently causes catalyst deterioration at the cathode of microbial fuel cells (MFCs). A biofilm-covered Pt/C cathode (BPC) was fabricated via in situ cultivation of a biofilm on a Pt/C cathode (PC) in a dual-chambered MFC, which enables effective removal of NH 4 + -N and copious generation of electricity. Experimental results show 99% NH 4 + -N removal by the nitrifying bacteria that constitute 35.7% of all microorganisms on the BPC and a maximum BPC-MFC power density of 0.97 W/m 2 , which is comparable to that of PC-MFCs (0.99 W/m 2 ). BPC biofilm size is restricted by the limited amount of organic material in the cathode chamber, which constrains the biomass to less than 0.3 g protein /m 2 . The bifunctional-cathode equipped MFC shows great promise as an energy-saving technology for wastewater treatment in the future." @default.
- W3010356422 created "2020-03-13" @default.
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- W3010356422 date "2020-06-01" @default.
- W3010356422 modified "2023-10-14" @default.
- W3010356422 title "Bifunctional cathode using a biofilm and Pt/C catalyst for simultaneous electricity generation and nitrification in microbial fuel cells" @default.
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- W3010356422 doi "https://doi.org/10.1016/j.biortech.2020.123120" @default.
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