Secondary organic aerosol (SOA) particles have been found to be efficient ice-nucleating particles under the cold conditions of (tropical) upper-tropospheric cirrus clouds. Whether they also are efficient at initiating freezing under slightly warmer conditions as found in mixed-phase clouds remains undetermined. Here, we study the ice-nucleating ability of photochemically produced SOA particles with the combination of the Manchester Aerosol Chamber and Manchester Ice Cloud Chamber. Three SOA systems were tested resembling biogenic and anthropogenic particles as well as particles of different phase state. These are namely α-pinene, heptadecane, and 1,3,5-trimethylbenzene. After the aerosol particles were formed, they were transferr...
International audienceAtmospheric ice nucleating particles (INPs) influence global climate by alteri...
Cirrus clouds, composed of water ice, cover 30% of the global surface and affect climate by scatteri...
We investigate the effect of water content and oxidative age on ice nucleation using 100 nm monodisp...
There are strong indications that particles containing secondary organic aerosol (SOA) exhibit amorp...
There are strong indications that particles containing secondary organic aerosol (SOA) exhibit amorp...
There are strong indications that particles containing secondary organic aerosol (SOA) exhibit amorp...
There are strong indications that particles containing secondary organic aerosol (SOA) exhibit amorp...
The abundance of aerosol particles and their ability to catalyze ice nucleation are key parameters t...
Ice nucleating particles are a minor fraction of tropospheric aerosol, yet they play a key role for ...
There are strong indications that particles containing secondary organic aerosol (SOA) exhibit amor...
Anthropogenic and biogenic gas emissions contribute to the formation of secondary organic aerosol (S...
Anthropogenic and biogenic gas emissions contribute to the formation of secondary organic aerosol (S...
Atmospheric ice nucleating particles (INPs) influence global climate by altering cloud formation, li...
International audienceAtmospheric ice nucleating particles (INPs) influence global climate by alteri...
International audienceAtmospheric ice nucleating particles (INPs) influence global climate by alteri...
International audienceAtmospheric ice nucleating particles (INPs) influence global climate by alteri...
Cirrus clouds, composed of water ice, cover 30% of the global surface and affect climate by scatteri...
We investigate the effect of water content and oxidative age on ice nucleation using 100 nm monodisp...
There are strong indications that particles containing secondary organic aerosol (SOA) exhibit amorp...
There are strong indications that particles containing secondary organic aerosol (SOA) exhibit amorp...
There are strong indications that particles containing secondary organic aerosol (SOA) exhibit amorp...
There are strong indications that particles containing secondary organic aerosol (SOA) exhibit amorp...
The abundance of aerosol particles and their ability to catalyze ice nucleation are key parameters t...
Ice nucleating particles are a minor fraction of tropospheric aerosol, yet they play a key role for ...
There are strong indications that particles containing secondary organic aerosol (SOA) exhibit amor...
Anthropogenic and biogenic gas emissions contribute to the formation of secondary organic aerosol (S...
Anthropogenic and biogenic gas emissions contribute to the formation of secondary organic aerosol (S...
Atmospheric ice nucleating particles (INPs) influence global climate by altering cloud formation, li...
International audienceAtmospheric ice nucleating particles (INPs) influence global climate by alteri...
International audienceAtmospheric ice nucleating particles (INPs) influence global climate by alteri...
International audienceAtmospheric ice nucleating particles (INPs) influence global climate by alteri...
Cirrus clouds, composed of water ice, cover 30% of the global surface and affect climate by scatteri...
We investigate the effect of water content and oxidative age on ice nucleation using 100 nm monodisp...