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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Stratospheric Aerosols, Polar Stratospheric Clouds, and Polar Ozone Depletion After the Mount Calbuco Eruption in 2015
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Stratospheric Aerosols, Polar Stratospheric Clouds, and Polar Ozone Depletion After the Mount Calbuco Eruption in 2015

机译:2015年山丘爆发后的平流层气溶胶,极地平流层云和极地臭氧消耗

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摘要

We investigate the impact of the 2015 Mount Calbuco eruption and previous eruptions on stratospheric aerosols, polar stratospheric clouds, and ozone depletion using the Community Earth System Model coupled with the Community Aerosol and Radiation Model for Atmospheres compared with several satellite and balloon observations. The modeled volcanic sulfate aerosol size distribution agrees with the Light Optical Aerosol Counter observation at the Reunion Island site (21°S, 55°E) on 19 August at 20 km within estimated 0.1- to 1-μm radius error bars. Both the observed and simulated backscatter and extinction show that volcanic sulfate aerosol from the Mount Calbuco eruption was transported from midlatitude toward the Antarctic and slowly descended during transport. They also indicate that the SO_2 emission into the stratosphere from Mount Calbuco is 0.2-0.4 Tg. The modeled number density indicates that the volcanic sulfate aerosol from the Mount Calbuco eruption penetrated into the Antarctic polar vortex in May and thereafter and reduced the polar stratospheric clouds effective radius. In the simulations, the Antarctic stratosphere denitrified too early and by too much compared with Microwave Limb Sounder observations. Heterogeneous nucleation of nitric acid trihydrate or sophisticated gravity wave representations may be required to simulate nitric acid trihydrate particles with smaller falling velocity. The volcanic sulfate aerosol increases the ozone depletion in September especially around 100 hPa and 70°S, relative to a case without any volcanic eruptions. The simulated surface area density, earlier ozone loss, and larger area of the ozone hole are consistent with the presence of volcanic sulfate layers observed at 16 km as well as previous studies.
机译:我们研究了2015年砂砾爆发的影响和先前使用社区地球系统模型对平流层气溶胶,极地平面云和臭氧耗尽的影响,与众多卫星和气球观测相比,通过群落地球系统模型与环境气溶胶和辐射模型相比。模型的火山硫酸盐气溶胶尺寸分布在8月19日估计0.1至1微米半径误差条内,在8月19日左右的陆地岛网站(21°S,55°e)的光光气溶胶对应观察。观察和模拟的反散射和消灭表明,从持续的Calbuco喷发中的火山硫酸盐气溶胶从中间地向南极运输并在运输过程中缓慢降临。他们还表明,SO_2从Calbuco Mount的平流层排放为0.2-0.4 Tg。模型的数量密度表明,来自安装座的火山硫酸盐气溶胶喷发,渗透到5月,然后减少了极性平流层云的有效半径。在模拟中,与微波肢体发声观察相比,南极平流层过早反对,而且与微波肢体发声观察相比过多。可能需要异质成氮化硝酸三水合物或复杂的重力波表示,以模拟具有较小速度下降的硝酸三水合物颗粒。火山硫酸气溶胶气溶胶在9月份的臭氧耗尽增加,特别是在100 HPA和70°S中,相对于没有任何火山爆发的情况。臭氧孔的模拟表面积密度,早期的臭氧损失和较大面积与在16公里和以前的研究中观察到的火山硫酸盐层的存在一致。

著录项

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  • 作者单位

    Laboratory for Atmospheric and Space Physics University of Colorado Boulder Boulder CO USA;

    Laboratory for Atmospheric and Space Physics University of Colorado Boulder Boulder CO USA;

    Atmospheric Chemistry Observations and Modeling Laboratory National Center for Atmospheric Research Boulder CO USA;

    Laboratory for Atmospheric and Space Physics University of Colorado Boulder Boulder CO USA;

    Atmospheric Chemistry Observations and Modeling Laboratory National Center for Atmospheric Research Boulder CO USA;

    Atmospheric Chemistry Observations and Modeling Laboratory National Center for Atmospheric Research Boulder CO USA;

    Langley Research Center Hampton VA USA;

    Laboratoire de l’Atmosphère et des Cyclones UMR 8105 CNRS Université de la Réunion Saint- Denis France;

    Laboratoire de Physique et Chimie de l’Environnement et de l’Espace Université d’Orléans Orléans France;

    Laboratoire de Physique et Chimie de l’Environnement et de l’Espace Université d’Orléans Orléans France;

    Laboratoire de Physique et Chimie de l’Environnement et de l’Espace Université d’Orléans Orléans France;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

    Stratospheric Aerosols; Polar Stratospheric; Mount Calbuco Eruption;

    机译:平流层气溶胶;极地平流层;山丘山爆发;

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