Aerosol-cloud interactions (ACI) constitute the single largest uncertainty in anthropogenic radiative forcing. To reduce the uncertainties and gain more confidence in the simulation of ACI, models need to be evaluated against observations, in particular against measurements of cloud condensation nuclei (CCN). Here we present a data set - ready to be used for model validation - of long-term observations of CCN number concentrations, particle number size distributions and chemical composition from 12 sites on 3 continents. Studied environments include coastal background, rural background, alpine sites, remote forests and an urban surrounding. Expectedly, CCN characteristics are highly variable across site categories. However, they also vary w...
International audienceAerosol–cloud interactions (ACI) constitute the single largest uncertainty in ...
International audienceAerosol–cloud interactions (ACI) constitute the single largest uncertainty in ...
International audienceAerosol–cloud interactions (ACI) constitute the single largest uncertainty in ...
Aerosol-cloud interactions (ACI) constitute the single largest uncertainty in anthropogenic radiativ...
Aerosol-cloud interactions (ACI) constitute the single largest uncertainty in anthropogenic radiativ...
Aerosol-cloud interactions (ACI) constitute the single largest uncertainty in anthropogenic radiativ...
Aerosol-cloud interactions (ACI) constitute the single largest uncertainty in anthropogenic radiativ...
Aerosol-cloud interactions (ACI) constitute the single largest uncertainty in anthropogenic radiativ...
Aerosol-cloud interactions (ACI) constitute the single largest uncertainty in anthropogenic radiativ...
Aerosol-cloud interactions (ACI) constitute the single largest uncertainty in anthropogenic radiativ...
Aerosol-cloud interactions (ACI) constitute the single largest uncertainty in anthropogenic radiativ...
Aerosol-cloud interactions (ACI) constitute the single largest uncertainty in anthropogenic radiativ...
Aerosol–cloud interactions (ACI) constitute the single largest uncertainty in anthropogenic radiativ...
Aerosol–cloud interactions (ACI) constitute the single largest uncertainty in anthropogenic radiativ...
Aerosol–cloud interactions (ACI) constitute the single largest uncertainty in anthropogenic radiativ...
International audienceAerosol–cloud interactions (ACI) constitute the single largest uncertainty in ...
International audienceAerosol–cloud interactions (ACI) constitute the single largest uncertainty in ...
International audienceAerosol–cloud interactions (ACI) constitute the single largest uncertainty in ...
Aerosol-cloud interactions (ACI) constitute the single largest uncertainty in anthropogenic radiativ...
Aerosol-cloud interactions (ACI) constitute the single largest uncertainty in anthropogenic radiativ...
Aerosol-cloud interactions (ACI) constitute the single largest uncertainty in anthropogenic radiativ...
Aerosol-cloud interactions (ACI) constitute the single largest uncertainty in anthropogenic radiativ...
Aerosol-cloud interactions (ACI) constitute the single largest uncertainty in anthropogenic radiativ...
Aerosol-cloud interactions (ACI) constitute the single largest uncertainty in anthropogenic radiativ...
Aerosol-cloud interactions (ACI) constitute the single largest uncertainty in anthropogenic radiativ...
Aerosol-cloud interactions (ACI) constitute the single largest uncertainty in anthropogenic radiativ...
Aerosol-cloud interactions (ACI) constitute the single largest uncertainty in anthropogenic radiativ...
Aerosol–cloud interactions (ACI) constitute the single largest uncertainty in anthropogenic radiativ...
Aerosol–cloud interactions (ACI) constitute the single largest uncertainty in anthropogenic radiativ...
Aerosol–cloud interactions (ACI) constitute the single largest uncertainty in anthropogenic radiativ...
International audienceAerosol–cloud interactions (ACI) constitute the single largest uncertainty in ...
International audienceAerosol–cloud interactions (ACI) constitute the single largest uncertainty in ...
International audienceAerosol–cloud interactions (ACI) constitute the single largest uncertainty in ...