日本地球惑星科学連合2024年大会

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[J] 口頭発表

セッション記号 A (大気水圏科学) » A-AS 大気科学・気象学・大気環境

[A-AS09] 大気化学

2024年5月27日(月) 09:00 〜 10:30 104 (幕張メッセ国際会議場)

コンビーナ:入江 仁士(千葉大学環境リモートセンシング研究センター)、中山 智喜(長崎大学 大学院水産・環境科学総合研究科)、石戸谷 重之(産業技術総合研究所)、江波 進一(国立大学法人筑波大学)、座長:入江 仁士(千葉大学環境リモートセンシング研究センター)

09:15 〜 09:30

[AAS09-02] ドローン計測とモデル計算に基づく光化学オキシダントの発生源の高度別推定:長崎県福江島における2023年10月の集中観測から

*板橋 秀一1 (1.電力中央研究所)

キーワード:ドローン、数値シミュレーション、光化学オキシダント、越境大気汚染

Photochemical oxidants (Ox, mainly ozone (O3) are produced via chemical reactions involving nitrogen oxides (NOx) and volatile organic compounds (VOCs). The Japanese environmental quality standard (EQS) for Ox was established in 1973, and the EQS for Ox has not been satisfied at most monitoring stations in Japan. One possible reason for Ox pollution in Japan is the long-range from East Asia, and the worsening of Ox pollution in East Asia itself also has been a concerning issue. Numerical modeling is a useful approach to understanding long-range transport; however, the evaluation of modeling compared to routine measurements is generally limited at the surface level. Satellite measurements can be available but the observed concentration is the vertically integrated column from the surface through the entire troposphere. In this study, recent advances of drone to capture the air quality status was applied to measure the long-range transported Ox. We coordinated the intensive campaign in October 2023, and a total of ten times vertical Ox data from the surface to 1000 m were obtained at Fukue Island, Nagasaki Prefecture which is located in the westernmost part of Japan. Additionally using numerical modeling, we simulated the spatial distribution of Ox over East Asia during this campaign. We will discuss the details of estimated Ox sources at different altitudes in this conference.