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亚洲夏季风反气旋将对流层气溶胶有效输送到平流层。

Efficient transport of tropospheric aerosol into the stratosphere via the Asian summer monsoon anticyclone.

机构信息

Cooperative Institute for Research in Environmental Sciences, University of Colorado, Boulder, CO 80309.

Chemical Sciences Division, Earth System Research Laboratory, National Oceanic and Atmospheric Administration, Boulder, CO 80305.

出版信息

Proc Natl Acad Sci U S A. 2017 Jul 3;114(27):6972-6977. doi: 10.1073/pnas.1701170114. Epub 2017 Jun 19.

Abstract

An enhanced aerosol layer near the tropopause over Asia during the June-September period of the Asian summer monsoon (ASM) was recently identified using satellite observations. Its sources and climate impact are presently not well-characterized. To improve understanding of this phenomenon, we made in situ aerosol measurements during summer 2015 from Kunming, China, then followed with a modeling study to assess the global significance. The in situ measurements revealed a robust enhancement in aerosol concentration that extended up to 2 km above the tropopause. A climate model simulation demonstrates that the abundant anthropogenic aerosol precursor emissions from Asia coupled with rapid vertical transport associated with monsoon convection leads to significant particle formation in the upper troposphere within the ASM anticyclone. These particles subsequently spread throughout the entire Northern Hemispheric (NH) lower stratosphere and contribute significantly (∼15%) to the NH stratospheric column aerosol surface area on an annual basis. This contribution is comparable to that from the sum of small volcanic eruptions in the period between 2000 and 2015. Although the ASM contribution is smaller than that from tropical upwelling (∼35%), we find that this region is about three times as efficient per unit area and time in populating the NH stratosphere with aerosol. With a substantial amount of organic and sulfur emissions in Asia, the ASM anticyclone serves as an efficient smokestack venting aerosols to the upper troposphere and lower stratosphere. As economic growth continues in Asia, the relative importance of Asian emissions to stratospheric aerosol is likely to increase.

摘要

亚洲夏季季风(ASM)6-9 月期间,平流层顶附近的气溶胶层增强,最近通过卫星观测得到了证实。但其来源和气候影响目前还没有很好地描述。为了更好地了解这一现象,我们于 2015 年夏季在中国昆明进行了实地气溶胶测量,随后进行了建模研究以评估其全球意义。实地测量显示,气溶胶浓度显著增强,在平流层顶以上延伸至 2 公里。气候模型模拟表明,亚洲大量人为气溶胶前体排放与季风对流相关的快速垂直输送相结合,导致 ASM 反气旋内的上对流层中大量颗粒物形成。这些颗粒随后在整个北半球(NH)下平流层中传播,并在每年对 NH 平流层柱气溶胶表面积做出重要贡献(约 15%)。这一贡献与 2000-2015 年间小火山喷发总和相当。尽管 ASM 的贡献小于热带上升流(∼35%),但我们发现该区域每单位面积和时间内将气溶胶填充到 NH 平流层的效率是热带上升流的三倍左右。亚洲有大量的有机和硫排放,ASM 反气旋是将气溶胶有效排放到上对流层和下平流层的烟囱。随着亚洲经济的持续增长,亚洲排放对平流层气溶胶的相对重要性可能会增加。

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