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- W4214744713 abstract "Here, we establish an electrochemically promoted peroxymonosulfate (PMS) activation system based on Fe 2 O 3 -MnO 2 cathode for the degradation of levofloxacin (LEV). Compared with the single materials Fe 2 O 3 and MnO 2 , Fe 2 O 3 -MnO 2 exhibits more active sites and excellent electrochemical characteristics, including faster electron transfer and lower overpotential of oxygen reduction reaction (ORR). The degradation efficiency of the system can reach 92.1% within 60 min under the optimal conditions of 30 mA cm −2 , natural pH, 10 mM PMS, and 25 °C. The efficient degradation performance is due to the fact that electrochemistry can accelerate the electron transfer and further improve the cycle of the redox reactions of Fe Ⅱ /Fe Ⅲ and Mn Ⅱ /Mn Ⅲ /Mn Ⅳ , thereby, activating PMS to generate more active species (e.g., ·OH, SO 4 − · and 1 O 2 etc). And the 1 O 2 is found to be the main reactive substance. Besides, the degradation pathway of LEV is inferred based on the identification of reaction intermediates, including defluorination, decarboxylation, destruction of piperazinyl groups, and oxidation of quinolone rings. This research provides a reliable method for the effective removal of refractory organic pollutants." @default.
- W4214744713 created "2022-03-02" @default.
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- W4214744713 date "2022-02-01" @default.
- W4214744713 modified "2023-10-18" @default.
- W4214744713 title "Electrochemical Acceleration of Redox Reaction Cycles on the Surface of Fe<sub>2</sub>O<sub>3</sub>-MnO<sub>2</sub> Cathode to Activate the Peroxymonosulfate for the Efficient Removal of Levofloxacin" @default.
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- W4214744713 doi "https://doi.org/10.1149/1945-7111/ac51fa" @default.
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