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- W2792465535 abstract "The elimination of pyraclostrobin by simultaneous microbial degradation and Fenton oxidation was achieved in a microbial fuel cell (MFC) system. After 12 h of incubation, the removal rate of pyraclostrobin was 1.4 mg/L/h at the anode and 1.7 mg/L/h at the cathode. The pyraclostrobin concentration was less than the detection limit (0.1 mg/L) after 72 h at the anode and 24 h at the cathode. The air flow rate, temperature, and pH of the catholyte had significant effects on the generation of H2O2. The maximum production of H2O2 was 1.2 mg/L after reaction for 20 h during the Fenton process. Microbial community analysis indicated that functional bacteria in the genera Chryseobacterium, Stenotrophomonas, Arcobacter, and Comamonas were predominant in the anodic biofilm. In conclusion, the MFC-Fenton system provides an effective approach for treating environmental contaminants." @default.
- W2792465535 created "2018-03-29" @default.
- W2792465535 creator A5041754114 @default.
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- W2792465535 date "2018-06-01" @default.
- W2792465535 modified "2023-10-14" @default.
- W2792465535 title "Elimination of pyraclostrobin by simultaneous microbial degradation coupled with the Fenton process in microbial fuel cells and the microbial community" @default.
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- W2792465535 doi "https://doi.org/10.1016/j.biortech.2018.03.012" @default.
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