Kinetic Limitations Affect Cloud Condensation Nuclei Activity Measurements Under Low Supersaturation

Author:

Tao Jiangchuan12,Kuang Ye12ORCID,Luo Biao12,Liu Li3,Xu Hanbin4,Ma Nan12ORCID,Liu Pengfei5,Xue Biao12,Zhai Miaomiao12,Xu Wanyun6ORCID,Xu Weiqi7,Sun Yele7ORCID

Affiliation:

1. Institute for Environmental and Climate Research Jinan University Guangzhou China

2. Guangdong‐Hongkong‐Macau Joint Laboratory of Collaborative Innovation for Environmental Quality Jinan University Guangzhou China

3. Key Laboratory of Regional Numerical Weather Prediction Institute of Tropical and Marine Meteorology, China Meteorological Administration Guangzhou China

4. Experimental Teaching Center Sun Yat‐Sen University Guangzhou China

5. School of Earth and Atmospheric Sciences Georgia Institute of Technology GA Atlanta USA

6. State Key Laboratory of Severe Weather Key Laboratory for Atmospheric Chemistry Institute of Atmospheric Composition Chinese Academy of Meteorological Sciences Beijing china

7. State Key Laboratory of Atmospheric Boundary Layer Physics and Atmospheric Chemistry Institute of Atmospheric Physics Chinese Academy of Sciences Beijing China

Abstract

AbstractThe commercial continuous‐flow streamwise thermal‐gradient cloud condensation nuclei (CCN) counter is widely used in aerosol CCN activity measurements which are critical for investigating aerosol‐cloud interactions. In CCN measurements, a critical threshold is needed for distinguishing interstitial aerosols and activated droplets, and a default threshold of 0.75 μm was set in CCN counter. Theoretically, interstitial aerosols could also grow larger than 0.75 μm in CCN counter at low supersaturations, thus theoretical thresholds derived from the Köhler theory were suggested. Here, we report that droplet growth in the CCN counter is kinetically limited and CCN‐active droplets does not reach their theoretical diameters under low supersaturations. Neglecting the kinetic growth limitation in CCN identification would count less CCN and underestimate the aerosol hygroscopicity parameter by up to 50% for supersaturations lower than 0.1%. We recommend that thresholds considering kinetic limitations should be used as new criteria for CCN identification under low supersaturations.

Funder

National Natural Science Foundation of China

Publisher

American Geophysical Union (AGU)

Subject

General Earth and Planetary Sciences,Geophysics

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