Lidar Observations of Dust‐Anthropogenic Pollutant Interactions: Relative Humidity Modulates Competing Aerosol Scavenging and SO₂ Conversion Over Northern China
ID:125 View Protection:ATTENDEE Updated Time:2026-03-24 11:06:13 Hits:106 Oral Presentation

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Abstract
This study presents comprehensive observations combining dual-wavelength lidars (355 nm and 532 nm), ground-based aerosol composition measurements, and gaseous pollutant monitoring during a prolonged dust event from March 15 to 18, 2021, over northern China. Our lidar observations revealed that dust particles became increasingly spherical during transport (particle depolarization ratio decreased from 0.24 to 0.12), indicating progressive coating by anthropogenic aerosols. Concurrently, anthropogenic aerosol mass in PM₂.₅ decreased by 78%, primarily through coating onto coarse dust particles and subsequent enhanced deposition. To evaluate SO₂ conversion, we introduced the SO₂/CO ratio, which increased from 4.33 to 5.46 ppb ppm⁻¹ during dust periods across 977 stations, indicating weakened SO₂ conversion. This was attributed to sharply decreased relative humidity (72.07% to 39.58%), which suppressed heterogeneous SO₂ reactions on dust surfaces. Results demonstrate competing processes: physical scavenging removes existing aerosols while low RH suppresses new aerosol formation, with RH as the critical modulating factor.
Keywords
Lidar,Dust-Anthropogenic Pollutant Interactions,Relative Humidity,Aerosol Scavenging,SO₂ Heterogeneous Conversion
Speaker
潘昱冰
副研究员 北京城市气象研究院

Submission Author
潘昱冰 北京城市气象研究院
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  • Conference Date

    Apr 25

    2026

    to

    Apr 29

    2026

  • Apr 07 2026

    Draft paper submission deadline

  • Jun 17 2026

    Registration deadline

Sponsored By
未来大气科学论坛理事会
Organized By
河海大学海洋学院
南京大学南京赫尔辛基大气与地球系统科学学院
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