Dust aerosols are abundant in the atmosphere and are very efficient ice nucleating particles at temperatures below -15 degrees C. Depending on temperature, dust particles containing certain minerals (i.e., feldspar and quartz) are the most active as ice nuclei. A mineralogy-sensitive immersion freezing parameterization for ice nucleating particle concentration (INPC) is implemented in Dust Regional Atmospheric Model (DREAM) for the first time. Additionally, four mineralogy-indifferent parameterizations are implemented, two for immersion freezing and two for deposition nucleation. Dust concentration and its feldspar and quartz fractions are forecasted by DREAM for a dust episode in the Mediterranean in April 2016. DREAM results are compared ...
Desert dust is one of the most abundant ice nucleating particle types in the atmosphere. Traditiona...
This study aims at quantifying the ice nucleation properties of desert dust in the Saharan Air Layer...
Ice-nucleating particles (INPs) are known to affect the amount of ice in mixed-phase clouds, thereby...
Dust aerosols are abundant in the atmosphere and are very efficient ice nucleating particles at temp...
Dust aerosols are very efficient ice nuclei, important for heterogeneous cloud glaciation even in r...
A total of 12 natural surface dust samples, which were surface-collected on four continents, most of...
Ice formation largely influences the properties of clouds and hence it has an important impact on we...
Desert dust is one of the most abundant ice nucleating particle types in the atmosphere. Tra ditiona...
Desert dust is one of the most abundant ice nucleating particle types in the atmosphere. Traditional...
Desert dust is one of the most abundant ice nucleating particle types in the atmosphere. Tra ditiona...
Desert dust is one of the most abundant ice nucleating particle types in the atmosphere. Traditional...
Desert dust is one of the most abundant ice nucleating particle types in the atmosphere. Traditional...
Reicher N, Budke C, Eickhoff L, et al. Size-dependent ice nucleation by airborne particles during du...
An ice nucleation parameterization based on classical nucleation theory, with aerosol-specific param...
Heterogeneous ice nucleation in the immersion mode plays a vital, yet poorly understood, role in th...
Desert dust is one of the most abundant ice nucleating particle types in the atmosphere. Traditiona...
This study aims at quantifying the ice nucleation properties of desert dust in the Saharan Air Layer...
Ice-nucleating particles (INPs) are known to affect the amount of ice in mixed-phase clouds, thereby...
Dust aerosols are abundant in the atmosphere and are very efficient ice nucleating particles at temp...
Dust aerosols are very efficient ice nuclei, important for heterogeneous cloud glaciation even in r...
A total of 12 natural surface dust samples, which were surface-collected on four continents, most of...
Ice formation largely influences the properties of clouds and hence it has an important impact on we...
Desert dust is one of the most abundant ice nucleating particle types in the atmosphere. Tra ditiona...
Desert dust is one of the most abundant ice nucleating particle types in the atmosphere. Traditional...
Desert dust is one of the most abundant ice nucleating particle types in the atmosphere. Tra ditiona...
Desert dust is one of the most abundant ice nucleating particle types in the atmosphere. Traditional...
Desert dust is one of the most abundant ice nucleating particle types in the atmosphere. Traditional...
Reicher N, Budke C, Eickhoff L, et al. Size-dependent ice nucleation by airborne particles during du...
An ice nucleation parameterization based on classical nucleation theory, with aerosol-specific param...
Heterogeneous ice nucleation in the immersion mode plays a vital, yet poorly understood, role in th...
Desert dust is one of the most abundant ice nucleating particle types in the atmosphere. Traditiona...
This study aims at quantifying the ice nucleation properties of desert dust in the Saharan Air Layer...
Ice-nucleating particles (INPs) are known to affect the amount of ice in mixed-phase clouds, thereby...