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Atmospheric NOx oxidation as major sources for nitrous acid (HONO)

Min Song, Xiaoxi Zhao, Pengfei Liu, Jichun Mu, Guangzhi He, Chenglong Zhang, Shengrui Tong, Chaoyang Xue, Xiujuan Zhao, Maofa Ge, Yujing Mu

2023npj Climate and Atmospheric Science65 citationsDOIOpen Access PDF

Abstract

Abstract Nitrous acid (HONO) is the major precursor of hydroxyl (OH) radicals to initiate tropospheric chemistry leading to formation of secondary pollutants. The sources of atmospheric HONO, however, are not fully understood. Here we show two additional HONO sources that stem from atmospheric oxidation of nitrogen oxide (NO x = NO + NO 2 ). Nitric acid (HNO 3 ) formed from photooxidation of NO 2 can be converted into HONO with a yield of ~53%, and dark NO oxidation by NO 3 radicals in the presence of H 2 O produces HONO with a yield of 2%. The diurnal variations of HONO levels from field observations in the urban (Beijing) and rural (Wangdu) areas of the North China Plain can be well reproduced by the WRF-Chem model when the two new HONO sources are taken into account. The findings imply that atmospheric NO x oxidation pathways are the major sources for HONO, which can significantly accelerate ozone formation in polluted regions as well.

Topics & Concepts

Nitrous acidNOxRadicalChemistryOzoneEnvironmental chemistryAtmospheric chemistryPhotochemistryNitrous oxideNitrogen oxideYield (engineering)Nitrogen dioxideHydroxyl radicalNitric acidInorganic chemistryOrganic chemistryMaterials scienceMetallurgyCombustionAtmospheric chemistry and aerosolsAtmospheric Ozone and ClimateAtmospheric aerosols and clouds
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