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- W2919248811 abstract "A single-chamber microbial fuel cell (MFC) is a promising technology for cost-effective wastewater treatment because it can remove organics and nitrogen simultaneously without aeration and external carbon source. This study evaluated organics and nitrogen removal and electricity production using flat-type air-cathode MFCs with three widths of anode chamber at various hydraulic retention times (HRTs). A shorter width and a longer HRT showed higher dissolved oxygen concentration. For optimum nitrification, the widths of 4 mm, 8 mm and 16 mm required HRTs of >2 h, >6 h and 8 h, respectively. The width of 8 mm (cathode specific surface area of 250 m2 /m3 as design factor) showed highest total nitrogen removal efficiency (94%). Removal efficiencies of organics were more than 80% at all conditions. Voltage generation occurred (16 mm > 8 mm > 4 mm) at HRT of 2 h. According to the change of design and HRT conditions, a flat-type air-cathode MFC can be developed as a versatile technology for organics and nitrogen removal and electricity production. Key words: Microbial Fuel Cell, Air-Cathode, Simultaneous Removal of Organics and Nitrogen, Width of Anode Chamber, Hydraulic Retention Time" @default.
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- W2919248811 date "2019-02-28" @default.
- W2919248811 modified "2023-10-18" @default.
- W2919248811 title "Effect of Reactor Width and HRT on Simultaneous Removal of Organic Compounds and Nitrogen in Flat-Type Air-Cathode Microbial Fuel Cell" @default.
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- W2919248811 doi "https://doi.org/10.4491/ksee.2019.41.2.69" @default.
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