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- W2783993630 abstract "The oxidation removal process of nitric oxide (NO) from flue gas using an ultraviolet (UV) light and heat coactivated oxone (potassium peroxymonosulfate, 2KHSO5·KHSO4·K2SO4) system in an UV (254 nm)-impinging stream reactor was studied. The main process parameters (e.g., light intensity, oxone concentration, solution temperature, solution pH, flue gas composition, and flow rate of flue gas and solution), products, mechanism, and kinetics of NO removal were studied. The results show that UV and oxone have a significant synergistic effect for promoting free radical production and improving NO removal. NO removal was improved via increasing the light intensity, oxone concentration, or solution flow rate and was inhibited with increasing the NO concentration, SO2 concentration, or flue gas flow rate. Solution temperature and pH have double impacts on NO removal. UV light activation for oxone is the main source of SO4– • and •OH. Heat activation for oxone is the complementary source of SO4– • and •OH. SO4– • a..." @default.
- W2783993630 created "2018-01-26" @default.
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- W2783993630 date "2018-01-26" @default.
- W2783993630 modified "2023-10-17" @default.
- W2783993630 title "Oxidation Removal of Nitric Oxide from Flue Gas Using an Ultraviolet Light and Heat Coactivated Oxone System" @default.
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- W2783993630 doi "https://doi.org/10.1021/acs.energyfuels.7b03165" @default.
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