Inferring thermodynamic properties from CCN activation experiments: single-component and binary aerosols
نویسندگان
چکیده
This study presents a new method, Köhler Theory Analysis (KTA), to infer the molar volume and solubility of organic aerosol constituents. The method is based on measurements of surface tension, chemical composition, and CCN activity coupled with Köhler theory. KTA is evaluated by inferring the molar volume of six known organics (four dicarboxylic acids, one amino acid, and one sugar) in pure form and in mixtures with ammonium sulfate ((NH4)2SO4). The average error in inferred molar volumes are to within 18% of their expected value for organic fractions between 50 and 90%. This suggests that KTA is a potentially powerful tool for determining the CCN characteristic of ambient water soluble organic carbon (WSOC), providing physically-based constraints for aerosol-cloud interaction parameterizations.
منابع مشابه
Inferring thermodynamic properties from CCN activation experiments: a) single-component and binary aerosols
K ¨ ohler theory analysis L. T. Padró et al.
متن کاملInteractive comment on “Inferring thermodynamic properties from CCN activation experiments: a) single-component and binary aerosols” by L. T. Padró et al
The authors have presented a new technique (Kohler Theory Analysis, KTA) to infer thermodynamic quantities from CCN experiments. This method has been tested for single-component and binary aerosols with moderate success but continues to show substantial errors. Even with these errors, this tool is clearly and important step in better obtaining information from real and complex aerosol particles...
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Inferring thermodynamic properties from CCN activation experiments: a) single-component and binary aerosols L. T. Padró, A. Asa-Awuku, R. Morrison, and A. Nenes School of Chemical and Biomolecular Engineering, Georgia Institute of Technology, Atlanta, GA, 30332, USA School of Earth and Atmospheric Sciences, Georgia Institute of Technology Atlanta, GA, 30332, USA now at: Department of Chemical E...
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