平流层
臭氧消耗
大气科学
气溶胶
环境科学
臭氧
臭氧层
羽流
极涡
平流层突然变暖
高度(三角形)
气候学
气象学
物理
地质学
数学
几何学
作者
Chaoqun Ma,Hang Su,Jos Lelieveld,William J. Randel,Pengfei Yu,Meinrat O. Andreae,Yafang Cheng
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2024-07-12
卷期号:10 (28)
被引量:2
标识
DOI:10.1126/sciadv.adn3657
摘要
Australian mega-wildfires in the summer of 2019-2020 injected smoke into the stratosphere, causing strong ozone depletion in the lower stratosphere. Here, we model the smoke plume and reproduce its unexpected trajectory toward the middle stratosphere at ~35-kilometer altitude. We show that a smoke-charged vortex (SCV) induced and maintained by absorbing aerosols played a key role in lofting pollutants from the lower stratosphere and nearly doubled the southern hemispheric aerosol burden in the middle stratosphere. The SCV caused a redistribution of stratospheric aerosols, which boosted heterogeneous chemistry in the middle stratosphere and enhanced ozone production, compensating for up to 70% of the ozone depletion in the lower stratosphere. As global warming continues, we expect a growing frequency and importance of SCVs in promoting the impacts of wildfires on stratospheric aerosols and chemistry.
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