The aerosol particle number concentration is a key parameter when estimating impacts of aerosol particles on climate and human health. We use a three-dimensional chemical transport model with detailed microphysics, PMCAMx-UF, to simulate particle number concentrations over Europe in the year 2030, by applying emission scenarios for trace gases and primary aerosols. The scenarios are based on expected changes in anthropogenic emissions of sulfur dioxide, ammonia, nitrogen oxides, and primary aerosol particles with a diameter less than 2.5 μm (PM2.5) focusing on a photochemically active period, and the implications for other seasons are discussed. For the baseline scenario, which represents a best estimate of the evolution of anthropogenic e...
The particle formation scheme within PMCAMx-UF, a three-dimensional chemical transport model, was up...
PMCAMx-2008, a three dimensional chemical transport model (CTM), was applied in Europe to quantify t...
Atmospheric aerosol particles play an important role in global climate change, via direct and indire...
The aerosol particle number concentration is a key parameter when estimating impacts of aerosol part...
<p>The aerosol particle number concentration is a key parameter when estimating impacts of aerosol p...
Although they are currently unregulated, atmospheric ultrafine particles (<100 nm) pose health risks...
A three-dimensional regional chemical transport model (CTM) with detailed aerosol microphysics, PMCA...
A three-dimensional regional chemical transport model (CTM) with detailed aerosol microphysics, PMCA...
<p>A three-dimensional regional chemical transport model (CTM) with detailed aerosol microphysics, P...
A three-dimensional regional chemical transport model (CTM) with detailed aerosol microphysics, PMCA...
A three-dimensional regional chemical transport model (CTM) with detailed aerosol microphysics, PMCA...
PMCAMx-UF, a three-dimensional chemical transport model focusing on the simulation of the ultrafine ...
A three-dimensional regional chemical transport model (CTM) with detailed aerosol microphysics, PMCA...
<p>PMCAMx-2008, a three dimensional chemical transport model (CTM), was applied in Europe to quantif...
PMCAMx-2008, a three dimensional chemical transport model (CTM), was applied in Europe to quantify t...
The particle formation scheme within PMCAMx-UF, a three-dimensional chemical transport model, was up...
PMCAMx-2008, a three dimensional chemical transport model (CTM), was applied in Europe to quantify t...
Atmospheric aerosol particles play an important role in global climate change, via direct and indire...
The aerosol particle number concentration is a key parameter when estimating impacts of aerosol part...
<p>The aerosol particle number concentration is a key parameter when estimating impacts of aerosol p...
Although they are currently unregulated, atmospheric ultrafine particles (<100 nm) pose health risks...
A three-dimensional regional chemical transport model (CTM) with detailed aerosol microphysics, PMCA...
A three-dimensional regional chemical transport model (CTM) with detailed aerosol microphysics, PMCA...
<p>A three-dimensional regional chemical transport model (CTM) with detailed aerosol microphysics, P...
A three-dimensional regional chemical transport model (CTM) with detailed aerosol microphysics, PMCA...
A three-dimensional regional chemical transport model (CTM) with detailed aerosol microphysics, PMCA...
PMCAMx-UF, a three-dimensional chemical transport model focusing on the simulation of the ultrafine ...
A three-dimensional regional chemical transport model (CTM) with detailed aerosol microphysics, PMCA...
<p>PMCAMx-2008, a three dimensional chemical transport model (CTM), was applied in Europe to quantif...
PMCAMx-2008, a three dimensional chemical transport model (CTM), was applied in Europe to quantify t...
The particle formation scheme within PMCAMx-UF, a three-dimensional chemical transport model, was up...
PMCAMx-2008, a three dimensional chemical transport model (CTM), was applied in Europe to quantify t...
Atmospheric aerosol particles play an important role in global climate change, via direct and indire...