14   Artículos

 
en línea
Laura Felgitsch, Magdalena Bichler, Julia Burkart, Bianca Fiala, Thomas Häusler, Regina Hitzenberger and Hinrich Grothe    
Heterogeneous ice nucleation in the atmosphere is not fully understood. In particular, our knowledge of biological materials and their atmospheric ice nucleation properties remains scarce. Here, we present the results from systematic investigations of th... ver más
Revista: Atmosphere    Formato: Electrónico

 
en línea
Bruce F. Moffett, Tom C. J. Hill and Paul J. DeMott    
Ice nucleating particles (INPs) are rare among atmospheric aerosols. However, through their ability to induce freezing of cloud droplets in cold clouds, they affect cloud lifetime, cloud albedo, and the efficiency and distribution of precipitation. While... ver más
Revista: Atmosphere    Formato: Electrónico

 
en línea
Gourihar Kulkarni    
This laboratory study evaluates an experimental set-up to study the immersion freezing properties of ice residuals (IRs) at a temperature ranging from -26 to -34 °C using two continuous-flow diffusion chamber-style ice nucleation chambers coupled with a ... ver más
Revista: Atmosphere    Formato: Electrónico

 
en línea
Larissa Lacher, Martin Steinbacher, Nicolas Bukowiecki, Erik Herrmann, Assaf Zipori and Zamin A. Kanji    
Ice nucleation is the source of primary ice crystals in mixed-phase clouds. Only a small fraction of aerosols called ice nucleating particles (INPs) catalyze ice formation, with their nature and origin remaining unclear. In this study, we investigate pot... ver más
Revista: Atmosphere    Formato: Electrónico

 
en línea
Glwadys Pouzet, Elodie Peghaire, Maxime Aguès, Jean-Luc Baray, Franz Conen and Pierre Amato    
Atmospheric ice nucleating particles (INPs) contribute to initiate precipitation. In particular, biological INPs act at warmer temperatures than other types of particles (>-10 °C) therefore potentially defining precipitation distribution. Here, in ord... ver más
Revista: Atmosphere    Formato: Electrónico

 
en línea
Franz Conen, Mikhail V. Yakutin, Karl Espen Yttri and Christoph Hüglin    
Ice nucleating particles active at -8 °C or warmer (INP-8) are produced by plants and by microorganisms living from and on them. Laboratory studies have shown that large numbers of INP-8 are produced by decaying leaves. At three widely dispersed location... ver más
Revista: Atmosphere    Formato: Electrónico

 
en línea
Ivan Coluzza, Jessie Creamean, Michel J. Rossi, Heike Wex, Peter Aaron Alpert, Valentino Bianco, Yvonne Boose, Christoph Dellago, Laura Felgitsch, Janine Fröhlich-Nowoisky, Hartmut Herrmann, Swetlana Jungblut, Zamin A. Kanji, Georg Menzl, Bruce Moffett, Clemens Moritz, Anke Mutzel, Ulrich Pöschl, Michael Schauperl, Jan Scheel, Emiliano Stopelli, Frank Stratmann, Hinrich Grothe and David G. Schmale    
There has been increasing interest in ice nucleation research in the last decade. To identify important gaps in our knowledge of ice nucleation processes and their impacts, two international workshops on ice nucleation were held in Vienna, Austria in 201... ver más
Revista: Atmosphere    Formato: Electrónico

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