在季风对流输送中,黑碳反映了极有效的气溶胶除湿

IF 3.8 2区 地球科学 Q2 METEOROLOGY & ATMOSPHERIC SCIENCES Journal of Geophysical Research: Atmospheres Pub Date : 2025-01-31 DOI:10.1029/2024JD042692
J. Berberich, S. A. Jacoby, G. Michailoudi, J. P. Schwarz, S. Viciani, F. D’Amato, G. Bianchini, M. Barucci, T. Campos, K. Ullman, J. R. Podolske, C. Gurganus, W. P. Smith, R. Ueyama, S. B. Honomichl, L. L. Pan, S. Woods, B. Wienzierl, M. Dollner, A. E. Perring
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引用次数: 0

摘要

耐火黑碳(rBC)是一种主要的气溶胶,通过不完全燃烧产生,它吸收阳光并有助于形成正辐射强迫。红细胞的整体气候效应取决于其空间分布和大气寿命,这两者都受到对流系统输送或移除红细胞的效率的影响。这些过程很少受到观测的约束。研究通过亚洲夏季风(ASM)的rBC运输效率是特别有趣的,因为这种气象模式将大量的边界层空气从亚洲输送到对流层上层/平流层下层(UT/LS),那里rBC的排放量很高,rBC的寿命预计会很长。本文介绍了2022年夏季亚洲夏季风化学和气候影响项目对rBC的现场观测结果。我们使用观察到的ASM流出液中rBC和CO之间的关系来表明,rBC几乎完全(98%)从上升空气中去除,并且ASM流出液中的rBC浓度与UT/LS背景在统计学上无法区分。我们将观察到的rBC和CO浓度与基于两种化学运输模型的预期浓度进行了比较,发现在所有海拔高度,模型将CO重现到2倍以内,而在与ASM流出相关的海拔高度,rBC被高估了20-100倍。我们发现,在最近的对流空气中,rBC颗粒的涂层比在UTLS背景中发现的更薄,这表明有少量rBC颗粒的运输,这些颗粒的浓度可以忽略不计。
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Black Carbon Reflects Extremely Efficient Aerosol Wet Removal in Monsoonal Convective Transport

Refractory black carbon (rBC) is a primary aerosol species, produced through incomplete combustion, that absorbs sunlight and contributes to positive radiative forcing. The overall climate effect of rBC depends on its spatial distribution and atmospheric lifetime, both of which are impacted by the efficiency with which rBC is transported or removed by convective systems. These processes are poorly constrained by observations. It is especially interesting to investigate rBC transport efficiency through the Asian Summer Monsoon (ASM) since this meteorological pattern delivers vast quantities of boundary layer air from Asia, where rBC emissions are high to the upper troposphere/lower stratosphere (UT/LS) where the lifetime of rBC is expected to be long. Here, we present in situ observations of rBC made during the Asian Summer Monsoon Chemistry and Climate Impact Project of summer, 2022. We use observed relationships between rBC and CO in ASM outflow to show that rBC is removed nearly completely (>98%) from uplifted air and that rBC concentrations in ASM outflow are statistically indistinguishable from the UT/LS background. We compare observed rBC and CO concentrations to those expected based on two chemical transport models and find that the models reproduce CO to within a factor of 2 at all altitudes whereas rBC is overpredicted by a factor of 20–100 at altitudes associated with ASM outflow. We find that the rBC particles in recently convected air have thinner coatings than those found in the UTLS background, suggesting transport of a small number of rBC particles that are negligible for concentration.

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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.
期刊最新文献
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