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Near IR Photolysis of HO2NO2: Implications for HOx

机译:近红外光谱分析HO2NO2:对HOx的影响

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We report observations and calculations of peroxynitric acid, HO2NO2, in the stratosphere and upper troposphere. The simulations show that photolysis of HO2NO2 via excitation of purely vibrational modes at wavelengths longward of 760 nanometers (the near IR) can dominate loss of this species. Consideration of this photolytic pathway reduces calculated HO2NO2, resolving a large discrepancy between standard model calculations and observations of HO2NO2 at high-latitude spring. The lower calculated abundance of HO2NO2 reduces the efficiency of the OH+HO2NO2 sink of HO(sub x). Consideration of this process leads to large increases in calculated HO(sub x) (20 to 60%) for high-latitude spring and better agreement with observed stratospheric abundances of HO(sub x). Near IR photolysis of HO2NO2 alters the coupling between NO(sub x) and HO(sub x) in stratospheric and upper tropospheric photochemical models.

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