4.6 Article

Influence of meteorological conditions on the air quality during the 2022 Winter Olympics in Beijing

Journal

FRONTIERS IN ENVIRONMENTAL SCIENCE
Volume 10, Issue -, Pages -

Publisher

FRONTIERS MEDIA SA
DOI: 10.3389/fenvs.2022.987272

Keywords

2022 Beijing Winter Olympics; T-mode PCA; air quality; EXPART-WRF model; meteorological conditions

Funding

  1. National Natural Science Foundation Committee of China [41875181, 41475021, 41375154, 41405146]
  2. National Key R&D Program of China [2018YFC0213600]
  3. Chinese Prime Minister Fund [DQGG0104]

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The 24th Winter Olympics in Beijing attracted global attention to the air quality in the area. The Beijing government implemented strict measures to control pollutant emissions and used the opportunity to study the impact of meteorological conditions on pollutants. The study found that different circulation types influenced the concentrations of PM2.5, NO2, SO2, and CO in Beijing. Analysis of circulation types, wind fields, and pollutant concentrations during the Winter Olympics showed that the air quality in Beijing was generally better.
The 24th Winter Olympics was held in Beijing, and the air quality in the Beijing area has become the focus of the world's attention. The Beijing government has taken a series of strict measures to control pollutant emissions during the Winter Olympics, which also provides us with a valuable opportunity to study the impact of meteorological conditions on pollutants. We defined November, December, January, February, and March as the polluted period in Beijing, and used the T-PCA method to divide the circulation types (CTs) affecting Beijing into six kinds (CT1-CT6). It was found that under the control of the western high pressure (CT1) and the northwest high pressure (CT4), the concentrations of PM2.5, NO2, SO2 and CO in Beijing were lower; while under the control of the northern high pressure (CT2), eastern high pressure (CT5), southeast high (CT3) and northeast low pressure (CT6), the concentration of PM2.5, NO2, SO2 and CO is higher. By analyzing the daily CTs, wind field and pollutant concentration changes in the Beijing area during the Beijing Winter Olympics, it was found that when two pollution events occurred during the Winter Olympics, the Beijing area was mainly prevailed by CT2, CT3, and CT6. Comparing the frequency of occurrence of six CTs during the 2022 Winter Olympics and the same period from 2014 to 2021, it was found that the proportion of CT1 and CT4 increased significantly during the Winter Olympics. Finally, the FLEXPART-WRF model was used to analyze the 48-h backward footprint distribution of pollutant particles in Beijing during the Winter Olympics. It further showed that the circulation in the Beijing area during the Winter Olympics was generally conducive to the dispersion of pollutants, and the air quality was better.

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