Aerosols influence the Earth's energy balance directly by modifying the radiation transfer and indirectly by altering the cloud microphysics. Anthropogenic aerosol emissions dropped considerably when the global COVID-19 pandemic resulted in severe restraints on mobility, production, and public life in spring 2020. We assess the effects of these reduced emissions on direct and indirect aerosol radiative forcing over Europe, excluding contributions from contrails. We simulate the atmospheric composition with the ECHAM5/MESSy Atmospheric Chemistry (EMAC) model in a baseline (business-as-usual) and a reduced emission scenario. The model results are compared to aircraft observations from the BLUESKY aircraft campaign performed in May–June 2020 o...
Emissions from the transport sectors (land transport, shipping and aviation) are among the major sou...
International audienceThe radiative forcing of the aerosol-radiation interaction can be decomposed i...
We use the EMAC (ECHAM/MESSy Atmospheric Chemistry) global climate–chemistry model coupled to the ae...
Aerosols influence the Earth’s energy balance through direct radiative effects and indirectly by alt...
Aerosols influence the Earth\u27s energy balance directly by modifying the radiation transfer and in...
Aerosols influence the Earth’s energy balance through direct radiative effects and indirectly by alt...
The abrupt reduction in human activities during the first lockdown of the COVID-19 pandemic created ...
During spring 2020, the COVID-19 pandemic caused massive reductions in emissions from industry and g...
Highlights: • New COVID-19 data to parameterize anthropogenic aerosol properties are released for u...
The COVID‐19 pandemic led to dramatic changes in economic activity in 2020. We use estimates of emis...
The recent COVID-19 pandemic with its countermeasures, e.g. lock-downs, resulted in decreases in emi...
During spring 2020, the COVID-19 pandemic caused massive reductions in emissions from industry, grou...
Across Europe anthropogenic emissions have changed substantially over recent decades, due in part to...
The COVID-19 pandemic led to dramatic changes in economic activity in 2020. We use estimates of emis...
International audienceProjections of aerosol emissions for 2030 have been recently generated and imp...
Emissions from the transport sectors (land transport, shipping and aviation) are among the major sou...
International audienceThe radiative forcing of the aerosol-radiation interaction can be decomposed i...
We use the EMAC (ECHAM/MESSy Atmospheric Chemistry) global climate–chemistry model coupled to the ae...
Aerosols influence the Earth’s energy balance through direct radiative effects and indirectly by alt...
Aerosols influence the Earth\u27s energy balance directly by modifying the radiation transfer and in...
Aerosols influence the Earth’s energy balance through direct radiative effects and indirectly by alt...
The abrupt reduction in human activities during the first lockdown of the COVID-19 pandemic created ...
During spring 2020, the COVID-19 pandemic caused massive reductions in emissions from industry and g...
Highlights: • New COVID-19 data to parameterize anthropogenic aerosol properties are released for u...
The COVID‐19 pandemic led to dramatic changes in economic activity in 2020. We use estimates of emis...
The recent COVID-19 pandemic with its countermeasures, e.g. lock-downs, resulted in decreases in emi...
During spring 2020, the COVID-19 pandemic caused massive reductions in emissions from industry, grou...
Across Europe anthropogenic emissions have changed substantially over recent decades, due in part to...
The COVID-19 pandemic led to dramatic changes in economic activity in 2020. We use estimates of emis...
International audienceProjections of aerosol emissions for 2030 have been recently generated and imp...
Emissions from the transport sectors (land transport, shipping and aviation) are among the major sou...
International audienceThe radiative forcing of the aerosol-radiation interaction can be decomposed i...
We use the EMAC (ECHAM/MESSy Atmospheric Chemistry) global climate–chemistry model coupled to the ae...