Locating the Missing Absorption Enhancement Due to Multi-Core Black Carbon Aerosols
ID:436 View Protection:ATTENDEE Updated Time:2025-03-28 14:40:54 Hits:671 Oral Presentation

Start Time:2025-04-18 17:30(Asia/Shanghai)

Duration:15min

Session:S2-5 专题2.5 碳气溶胶性质和效应 » S2-5专题2.5 碳气溶胶性质和效应

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Abstract
Black carbon (BC) aerosols are major climate forcers due to their strong light absorption. Current models often estimate this effect by assuming single-core BC particles. Observations of wildfire smoke indicate that ~21% of BC-containing particles exhibit multiple cores, particularly those with diameters > 400 nm and core diameters > 200 nm. These multi-core BC particles were found to enhance light absorption by 82% compared to traditional single-core assumptions, based on dynamic effective medium approximation (DEMA) modelling. Inspired by these observations, we developed a machine-learning emulator for DEMA-based absorption enhancements and incorporated it into a global atmospheric model. Our results show that the enhanced absorption of multi-core BC led to a 19% increase in the global BC absorption aerosol optical depth. This study underscores the critical role of multi-core BC in amplifying radiative forcing, highlighting the necessity for revised models to better capture BC’s impact on the global climate.
 
Keywords
Black Carbon,Absorption Enhancement
Speaker
陈曦垚
助理研究员·博士后 浙江大学

Submission Author
陈曦垚 浙江大学
李卫军 浙江大学;{
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  • Conference Date

    Apr 17

    2025

    to

    Apr 21

    2025

  • Apr 10 2025

    Draft paper submission deadline

  • Apr 28 2025

    Registration deadline

Sponsored By
中国科学院大气物理研究所
Organized By
中国科学院大气物理研究所
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