Effects of the annular eclipse on the surface O3 in yunnan province, China
ID:3984 View Protection:PRIVATE Updated Time:2023-04-21 00:52:26 Hits:1506 Poster Presentation

Start Time:2023-05-06 08:16(Asia/Shanghai)

Duration:1min

Session:SP 张贴报告专场 » SP-14-114、气溶胶与大气环境

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Abstract
The impact of the annual solar eclipse, starting on 21st June 2020, attributable to surface ozone concentration (O3) has been investigated in this study. To estimate the influence of the solar eclipse on O3 better, the variations of one reaction precursor of ozone production [nitrogen dioxide (NO2)], coupled with the meteorological factors (including Total Solar Irradiance (TSI), Temperature (T), and Relative Humidity (RH)), were analyzed in Yunnan Province, China. The results show observed O3 decreases from the beginning of the eclipse, reaching its minimum value when the eclipse left Yunnan province. During the period of the solar eclipse, the O3 decrease lasted for 20 h with a reduction ofmore than 40%. The reduction of TSI lasted for 5h with a maximum at -90%. Simultaneously, the temperature decreased but the relative humidity increased during the reduction in solar radiation.O3 exhibits a significantly positive correlation with temperature and a negative correlation with relative humidity. However, NO2 did not show a clear response with changes lasting for 4 h.O3 and NO2 show a negative correlation. The influence of CO on O3 is minor except for Kunming. Thus, O3 in seriously polluted cities is more sensitive to NO2 and CO during the eclipse, such as in Kunming.
Keywords
solar eclipse, surface ozone, total irradiance, CO, NO2
Speaker
田瑜峰
工程师 中国地质调查局

Submission Author
田瑜峰 中国地质调查局昆明自然资源综合调查中心
李婧媛 南京信息工程大学
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Important Date
  • Conference Date

    May 05

    2023

    to

    May 08

    2023

  • Mar 31 2023

    Draft paper submission deadline

  • May 25 2023

    Registration deadline

Sponsored By
青年地学论坛理事会
中国科学院青年创新促进会地学分会
Organized By
武汉大学
中国科学院精密测量科学与技术创新研究院
中国地质大学(武汉)
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