Articles | Volume 26, issue 15
https://doi.org/10.5194/acp-26-11135-2026
© Author(s) 2026. This work is distributed under
the Creative Commons Attribution 4.0 License.
the Creative Commons Attribution 4.0 License.
https://doi.org/10.5194/acp-26-11135-2026
© Author(s) 2026. This work is distributed under
the Creative Commons Attribution 4.0 License.
the Creative Commons Attribution 4.0 License.
First Continuous Aerosol Measurements at Testa Grigia at 3480 m a.s.l.: Aerosol Populations and Dust Transport Dynamics in the Southern European Alps
Stefania Gilardoni
CORRESPONDING AUTHOR
Institute of Polar Sciences, National Research Council, Milan, Italy
Annachiara Bellini
Regional Environmental Protection Agency (ARPA) of the Aosta Valley, Saint-Christophe, Italy
Paolo Bonasoni
Institute of Atmospheric Sciences and Climate, National Research Council, Bologna, Italy
Henri Diémoz
Regional Environmental Protection Agency (ARPA) of the Aosta Valley, Saint-Christophe, Italy
Christian Gencarelli
Institute of Institute of Environmental Geology and Geoengineering, National Research Council, Milan, Italy
Angela Marinoni
Institute of Atmospheric Sciences and Climate, National Research Council, Bologna, Italy
Eros Mariani
Research Area Milano 1, National Research Council, Milan, Italy
Luigi Mazari Villanova
Department of Earth System Science and Environmental Technologies, National Research Council, Rome, Italy
Bruno Neininger
MetAir AG, Menzingen, Switzerland
Mattia Perilli
Institute of Atmospheric Pollution, National Research Council, Rome, Italy
Michael Sprenger
Institute for Atmospheric and Climate Science, ETH Zurich, Zurich, Switzerland
Francesco Petracchini
Department of Earth System Science and Environmental Technologies, National Research Council, Rome, Italy
Data sets
egusphere-2026-1299-dataset Gilardoni et al. https://bo.isp.cnr.it/erddap/info/36301cd5-8094-4a44-87d0-f5f7321cbe4b/index.html
Short summary
This study presents the first high-time-resolution aerosol data collected from the Testa Grigia Observatory (3,480 m) in the Italian Alps, from 2021 to 2023. We identified three transport pathways: Saharan Dust Events (SDE), which occurred with a frequency of 6 %, regional and long-range transported pollution (28 %), and clean air from the free troposphere. The timing of SDE, observed mainly in spring, and the mixing of dust particles with black carbon, enhance SDE impact on snow melting.
This study presents the first high-time-resolution aerosol data collected from the Testa Grigia...
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