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Unveiling the underestimated direct emissions of nitrous acid (HONO).

Qian ZhangPengfei LiuYan WangChristian GeorgeTianshu ChenShuyi MaYangang RenYujing MuMin SongHartmut HerrmannAbdelwahid MelloukiJianmin ChenYang YueXiaoxi ZhaoShuguang WangYang Zeng
Published in: Proceedings of the National Academy of Sciences of the United States of America (2023)
Gaseous nitrous acid (HONO) is a critical source of hydroxyl radicals (OH) in the troposphere. While both direct and secondary sources contribute to atmospheric HONO, direct emissions have traditionally been considered minor contributors. In this study, we developed δ 15 N and δ 18 O isotopic fingerprints to identify six direct HONO emission sources and conducted a 1-y case study on the isotopic composition of atmospheric HONO at rural and urban sites. Interestingly, we identified that livestock farming is a previously overlooked direct source of HONO and determined its HONO to ammonia (NH 3 ) emission ratio. Additionally, our results revealed that spatial and temporal variations in atmospheric HONO isotopic composition can be partially attributed to direct emissions. Through a detailed HONO budget analysis incorporating agricultural sources, we found that direct HONO emissions accounted for 39~45% of HONO production in rural areas across different seasons. The findings were further confirmed by chemistry transport model simulations, highlighting the significance of direct HONO emissions and their impact on air quality in the North China Plain. These findings provide compelling evidence that direct HONO emissions play a more substantial role in contributing to atmospheric HONO than previously believed. Moreover, the δ 15 N and δ 18 O isotopic fingerprints developed in this study may serve as a valuable tool for further research on the atmospheric chemistry of reactive nitrogen gases.
Keyphrases
  • particulate matter
  • risk assessment
  • municipal solid waste
  • room temperature
  • air pollution
  • single cell
  • life cycle
  • climate change