A Comprehensive Observational Based Multiphase Chemical Model Analysis of the Sulfur Dioxide Oxidations in both Summer and Winter
ID:2479 View Protection:ATTENDEE Updated Time:2021-06-21 15:05:05 Hits:1788 Poster Presentation

Start Time:2021-07-10 09:15(Asia/Shanghai)

Duration:5min

Session:SP 张贴报告专场 » SP-12主题12、气溶胶与大气环境科学 墙报

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Abstract
Sulfate is one of the main components of the haze particles and the formation mechanism remains controversial. Lacking of detailed and comprehensive field data hindes the accurate evaluation of relative roles of prevailing sulphate formation pathways. Here, we analyzed the sulfate production rates using a state-of-art multiphase model constrained to the observed concentrations of transition metal ions (TMI), nitrogen dioxide, ozone, hydrogen peroxide, and other important parameters in winter and summer in the North China Plain. Our results showed that aqueous TMI-catalyzed oxidation was the most important pathway followed by the surface oxidation of Mn in both winter and summer, while the hydroxyl and criegee radicals oxidations contribute significantly in summer. In addition, we also modeled the published cases for the fog and cloud conditions. It is found that nitrogen dioxide oxidation is the dominant pathway for the fog in a higher pH range while hydroperoxide and ozone oxidations dominated for the cloud.
 
Keywords
sulfate formation,transition metal ions,field observation,radicals
Speaker
宋欢
北京大学

Submission Author
宋欢 北京大学
陆克定 北京大学
叶灿 北京大学
董华斌 北京大学
李姝乐 北京大学
陈仕意 北京大学
吴志军 北京大学
郑玫 北京大学
曾立民 北京大学
胡敏 北京大学
张远航 北京大学
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Important Date
  • Conference Date

    Jul 09

    2021

    to

    Jul 11

    2021

  • May 30 2021

    Abstract Submission Deadline

  • May 30 2021

    Draft paper submission deadline

  • May 30 2021

    Early Bird Registration

  • Jul 10 2021

    Registration deadline

  • Jul 11 2021

    Contribution Submission Deadline

Sponsored By
青年地学论坛理事会
Organized By
中国科学院地球化学研究所
贵州大学
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