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The Role of Sulfur Dioxide in Stratospheric Aerosol Formation Evaluated Using In-Situ Measurements in the Tropical Lower Stratosphere

机译:二氧化硫在平流层下部平流层原位测量中对平流层气溶胶形成的作用

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摘要

Stratospheric aerosols (SAs) are a variable component of the Earth's albedo that may be intentionally enhanced in the future to offset greenhouse gases (geoengineering). The role of tropospheric-sourced sulfur dioxide (SO2) in maintaining background SAs has been debated for decades without in-situ measurements of SO2 at the tropical tropopause to inform this issue. Here we clarify the role of SO2 in maintaining SAs by using new in-situ SO2 measurements to evaluate climate models and satellite retrievals. We then use the observed tropical tropopause SO2 mixing ratios to estimate the global flux of SO2 across the tropical tropopause. These analyses show that the tropopause background SO2 is about 5 times smaller than reported by the average satellite observations that have been used recently to test atmospheric models. This shifts the view of SO2 as a dominant source of SAs to a near-negligible one, possibly revealing a significant gap in the SA budget.
机译:平流层气溶胶(SAs)是地球反照率的可变组成部分,将来可能有意增强以抵消温室气体(地球工程学)。对流层来源的二氧化硫(SO2)在维持背景SA方面的作用已经争论了数十年,而没有在热带对流层顶对SO2进行现场测量来告知这一问题。在这里,我们通过使用新的原位SO2测量值来评估气候模型和卫星检索,阐明了SO2在维持SA方面的作用。然后,我们使用观测到的热带对流层顶二氧化硫混合比来估算整个热带对流层顶二氧化硫的全球通量。这些分析表明,对流层顶本底SO2约比最近用于测试大气模型的平均卫星观测所报告的要小5倍。这将SO2作为SA的主要来源的观点转变为几乎可以忽略不计的观点,这可能表明SA预算存在巨大缺口。

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