Light Precipitation Rather Than Total Precipitation Determines Aerosol Wet Removal
ID:532 View Protection:ATTENDEE Updated Time:2025-03-31 13:24:32 Hits:498 Oral Presentation

Start Time:2025-04-20 17:35(Asia/Shanghai)

Duration:10min

Session:S1-15 专题1.15 地球系统模式与模拟 » S1-15专题1.15 地球系统模式与模拟

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Abstract
Precipitation scavenging is an important sink for both organic and inorganic pollutants in the atmosphere. However, there has been controversy over the relative importance of different precipitation characteristics (i.e., precipitation amount, intensity, frequency, and duration) in removing air pollutants. It is critical to reach a consensus on which precipitation characteristics are most significant in aerosol wet removal. In this study, the analysis of multi-source in-situ observations of aerosol wet deposition worldwide indicates that precipitation frequency plays a first-order role in scavenging aerosols. This is because large amounts of air pollutants are efficiently removed at precipitation initiation. As the duration and amount of precipitation increase, the scavenging efficiency decreases sharply. Consequently, it is featured that light precipitation, due to its high frequency of occurrence, rather than total precipitation, determines climatological aerosol wet deposition. To further confirm this, a state-of-the-art global climate model with convection resolved is modified to reduce light precipitation frequency in both stratiform and convective cloud regimes. Results show widespread increases in aerosol optical depth (AOD) due to reduced wet deposition. The spatial distribution of aerosol wet deposition changes resembles that of changes in light precipitation frequency rather than that of total precipitation changes. These findings are consistent with those from the Coupled Model Intercomparison Project Phase 6 multi-model simulations, which show that the inter-model uncertainty in simulated AOD correlates more strongly with the uncertainty in light precipitation frequency than with that in total precipitation.
 
Keywords
Climate modes,Precipitation,aerosol wet deposition
Speaker
夏雯雯
特别研究助理 中国科学院大气物理研究所

Submission Author
夏雯雯 中国科学院大气物理研究所
王勇 清华大学
张广俊 UCSD
王斌 中国科学院大气物理研究所
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    Apr 17

    2025

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    Apr 21

    2025

  • Apr 10 2025

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  • Apr 28 2025

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