Published January 10, 2022 | Version v1

Output data of the models used in "Comparison of six approaches to predicting droplet activation of surface active aerosol. Part 1: moderately surface active organics" by Vepsäläinen et al. (2022)

  • 1. Nano and Molecular Systems Research Unit, University of Oulu, P.O. Box 3000, FI-90014, Oulu, Finland
  • 2. Finnish Meteorological Institute, P.O. Box 1627, FI-70211, Kuopio, Finland
  • 3. Center for Atmospheric Research, University of Oulu, P.O. Box 4500, FI-90014, Oulu, Finland
  • 1. Center for Atmospheric Research, University of Oulu, P.O. Box 4500, FI-90014, Oulu, Finland
  • 2. Nano and Molecular Systems Research Unit, University of Oulu, P.O. Box 3000, FI-90014, Oulu, Finland
  • 3. Finnish Meteorological Institute, P.O. Box 1627, FI-70211, Kuopio, Finland

Description

Output data of the different models used in "Comparison of six approaches to predicting droplet activation of surface active aerosol. Part 1: moderately surface active organics" by Vepsäläinen et al. (2022).

Output data is included for 50 nm particles containing malonic acid (mna), succinic acid (sca) and glutaric acid (glutarica), mixed with ammonium sulphate (AS) in different organic mass fractions. 

A plotter that allows the user to plot the Köhler curves, surface tensions and organic
partitioning factors during droplet growth from the model output data provided is included. 

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Additional details

Related works

Is supplement to
Journal article: 10.5194/acp-2021-561 (DOI)

Funding

Research Council of Finland
Connecting materials science to climate change: powerful novel methods for direct investigations of aerosol surfaces and their atmospheric impact (SURFACE-IMPACT). 314175
European Commission
SURFACE - The unexplored world of aerosol surfaces and their impacts. 717022
Research Council of Finland
Connecting materials science to climate change: powerful novel methods for direct investigations of aerosol surfaces and their atmospheric impact (SURFACE-IMPACT). 335649
Research Council of Finland
Connecting materials science to climate change: powerful novel methods for direct investigations of aerosol surfaces and their atmospheric impact (SURFACE-IMPACT). 308238