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Important Yet Overlooked HONO Source from Aqueous-phase Photochemical Oxidation of Nitrophenols.

Wangjin Yang, Hui Ji, Fu Li, Xue He, Shan Zhang,Xiangli Nan,Tao Du,Kun Li,Chong Han

ENVIRONMENTAL SCIENCE & TECHNOLOGY(2024)

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摘要
Nitrites (NO2-/HONO), as the primary source of hydroxyl radicals ((OH)-O-center dot) in the atmosphere, play a key role in atmospheric chemistry. However, the current understanding of the source of NO2-/HONO is insufficient and therefore hinders the accurate quantification of atmospheric oxidation capacity. Herein, we highlighted an overlooked HONO source by the reaction between nitrophenols (NPs) and (OH)-O-center dot in the aqueous phase and provided kinetic data to better evaluate the contribution of this process to atmospheric HONO. Three typical NPs, including 4-nitrophenol (4NP), 2-nitrophenol (2NP), and 4-nitrocatechol (4NC), underwent a denitration process to form aqueous NO2- and gaseous HONO through the (OH)-O-center dot oxidation, with the yield of NO2-/HONO varied from 15.0 to 33.5%. According to chemical composition and structure analysis, the reaction pathway, where the ipso addition of (OH)-O-center dot to the NO2 group on 4NP generated hydroquinone, can contribute to more than 61.9% of the NO2-/HONO formation. The aqueous photooxidation of NPs may account for HONO in the atmosphere, depending on the specific conditions. The results clearly suggest that the photooxidation of NPs should be considered in the field observation and calculation to better evaluate the HONO budget in the atmosphere.
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关键词
liquid phase,denitration,kinetics,reactive oxygen species,photochemical degradation
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