Evaluating the Importance of Nitrate-Containing Aerosols for the Asian Tropopause Aerosol Layer

IF 3.8 2区 地球科学 Q2 METEOROLOGY & ATMOSPHERIC SCIENCES
Yunqian Zhu, Pengfei Yu, Xinyue Wang, Charles Bardeen, Stephan Borrmann, Michael Höpfner, Christoph Mahnke, Ralf Weigel, Martina Krämer, Terry Deshler, Jianchun Bian, Zhixuan Bai, Hazel Vernier, Robert W. Portmann, Karen H. Rosenlof, Corinna Kloss, Laura L. Pan, Warren Smith, Shawn Honomichl, Jun Zhang, Kane A. Stone, Owen Brian Toon
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Abstract

The Asian Summer Monsoon (ASM) convection transports aerosols and their precursors from the boundary layer to the upper troposphere and lower stratosphere (UTLS). This process forms an annually recurring aerosol layer near the tropopause. Recent observations have revealed a distinct property of the aerosol layer over the ASM region, it is nitrate-rich. We present a newly implemented aerosol formation algorithm that enhances the representation of nitrate aerosol in the Community Aerosol and Radiation Model for Atmospheres (CARMA) coupled with the Community Earth System Model (CESM). The simulated aerosol chemical composition, as well as vertical distributions of aerosol size and mass, are evaluated using in situ and remote sensing observations. The simulated concentrations (ammonium, nitrate, and sulfate) and size distributions are generally within the error bars of data. We find nitrate, organics, and sulfate contribute significantly to the UTLS aerosol concentration between 15°–45°N and 0°–160°E. The two key formation mechanisms of nitrate-containing aerosols in the ATAL are ammonium neutralization to form ammonium nitrate in regions where convection is active, and condensation of nitric acid in regions of cold temperature. Furthermore, including nitrate formation in the model doubles the surface area density in the tropical tropopause region between 15°–45°N and 0°–160°E, which alters the chlorine partitioning and subsequently impacts the rate of ozone depletion.

评估含硝酸盐气溶胶对亚洲对流层顶气溶胶层的重要性
亚洲夏季季风(ASM)对流将气溶胶及其前体从边界层输送到对流层上部和平流层下部(UTLS)。这一过程在对流层顶附近形成了一个每年反复出现的气溶胶层。最近的观测发现了 ASM 区域气溶胶层的一个显著特点,即富含硝酸盐。我们介绍了一种新实施的气溶胶形成算法,它增强了大气气溶胶和辐射共同体模式(CARMA)与地球系统共同体模式(CESM)耦合中硝酸盐气溶胶的代表性。模拟的气溶胶化学成分以及气溶胶大小和质量的垂直分布利用现场和遥感观测数据进行了评估。模拟的浓度(铵、硝酸盐和硫酸盐)和粒度分布一般都在数据误差范围之内。我们发现硝酸盐、有机物和硫酸盐对北纬 15°-45°和东经 0°-160°之间的UTLS气溶胶浓度有很大影响。ATAL 中含硝酸盐气溶胶的两个关键形成机制是:在对流活跃的区域,铵中和形成硝酸铵;在低温区域,硝酸凝结。此外,在模型中加入硝酸盐的形成会使北纬 15°-45°和东经 0°-160°之间热带对流层顶区域的表面积密度增加一倍,从而改变氯的分配,进而影响臭氧消耗的速度。
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来源期刊
Journal of Geophysical Research: Atmospheres
Journal of Geophysical Research: Atmospheres Earth and Planetary Sciences-Geophysics
CiteScore
7.30
自引率
11.40%
发文量
684
期刊介绍: JGR: Atmospheres publishes articles that advance and improve understanding of atmospheric properties and processes, including the interaction of the atmosphere with other components of the Earth system.
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