English

Diverse response of surface ozone to COVID-19 lockdown in China

Atmospheric and Oceanic Physics 2021-06-08 v4 Physics and Society

Abstract

Ozone (O3_{3}) is a key oxidant and pollutant in the lower atmosphere. Significant increases in surface O3_{3} have been reported in many cities during the COVID-19 lockdown. Here we conduct comprehensive observation and modeling analyses of surface O3_{3} across China for periods before and during the lockdown. We find that daytime O3_{3} decreased in the subtropical south, in contrast to increases in most other regions. Meteorological changes and emission reductions both contributed to the O3_{3} changes, with a larger impact from the former especially in central China. The plunge in nitrogen oxide (NOx_{x}) emission contributed to O3_{3} increases in populated regions, whereas the reduction in volatile organic compounds (VOC) contributed to O3_{3} decreases across the country. Due to a decreasing level of NOx_{x} saturation from north to south, the emission reduction in NOx_{x} (46%) and VOC (32%) contributed to net O3_{3} increases in north China; the opposite effects of NOx_{x} decrease (49%) and VOC decrease (24%) balanced out in central China, whereas the comparable decreases (45-55%) in these two precursors contributed to net O3_{3} declines in south China. Our study highlights the complex dependence of O3_{3} on its precursors and the importance of meteorology in the short-term O3_{3} variability.

Keywords

Cite

@article{arxiv.2008.10851,
  title  = {Diverse response of surface ozone to COVID-19 lockdown in China},
  author = {Yiming Liu and Tao Wang and Trissevgeni Stavrakou and Nellie Elguindi and Thierno Doumbia and Claire Granier and Idir Bouarar and Benjamin Gaubert and Guy P. Brasseur},
  journal= {arXiv preprint arXiv:2008.10851},
  year   = {2021}
}

Comments

36 pages, 16 figures. Published in Science of the Total Environment