A detailed three-dimensional regional chemical transport model (Particulate Matter Comprehensive Air Quality Model with Extensions, PMCAMx) was applied over Europe, focusing on the formation and chemical transformation of organic matter. Three periods representative of different seasons were simulated, corresponding to intensive field campaigns. An extensive set of AMS measurements was used to evaluate the model and, using factor-analysis results, gain more insight into the sources and transformations of organic aerosol (OA). Overall, the agreement between predictions and measurements for OA concentration is encouraging, with the model reproducing two-thirds of the data (daily average mass concentrations) within a factor of 2. Oxygenated OA...
A new organic aerosol module has been implemented into the EMEP chemical transport model. Four diffe...
Long-term monitoring of the organic aerosol is important for epidemiological studies, validation of ...
Emissions of organic compounds from biomass, biofuel, and fossil fuel combustion strongly influence ...
A detailed three-dimensional regional chemical transport model (Particulate Matter Comprehensive Air...
A detailed three-dimensional regional chemical transport model (Particulate Matter Comprehensive Air...
A detailed three-dimensional regional chemical transport model (Particulate Matter Comprehensive Air...
A detailed three-dimensional regional chemical transport model (Particulate Matter Comprehensive Air...
PMCAMx-2008, a detailed three-dimensional chemical transport model (CTM), was applied to Europe to s...
International audienceSource apportionment of organic aerosols (OAs) is of great importance to bette...
The chemical transport model PMCAMx was extended to investigate the effects of partitioning and phot...
Factor analysis of aerosol mass spectrometer measurements (organic aerosol mass spectra) is often us...
Long-term monitoring of organic aerosol is important for epidemiological studies, validation of atm...
Organic aerosols (OA) represent one of the major constituents of submicron particulate matter (PM1) ...
A new organic aerosol module has been implemented into the EMEP chemical transport model. Four diffe...
A new organic aerosol module has been implemented into the EMEP chemical transport model. Four diffe...
Long-term monitoring of the organic aerosol is important for epidemiological studies, validation of ...
Emissions of organic compounds from biomass, biofuel, and fossil fuel combustion strongly influence ...
A detailed three-dimensional regional chemical transport model (Particulate Matter Comprehensive Air...
A detailed three-dimensional regional chemical transport model (Particulate Matter Comprehensive Air...
A detailed three-dimensional regional chemical transport model (Particulate Matter Comprehensive Air...
A detailed three-dimensional regional chemical transport model (Particulate Matter Comprehensive Air...
PMCAMx-2008, a detailed three-dimensional chemical transport model (CTM), was applied to Europe to s...
International audienceSource apportionment of organic aerosols (OAs) is of great importance to bette...
The chemical transport model PMCAMx was extended to investigate the effects of partitioning and phot...
Factor analysis of aerosol mass spectrometer measurements (organic aerosol mass spectra) is often us...
Long-term monitoring of organic aerosol is important for epidemiological studies, validation of atm...
Organic aerosols (OA) represent one of the major constituents of submicron particulate matter (PM1) ...
A new organic aerosol module has been implemented into the EMEP chemical transport model. Four diffe...
A new organic aerosol module has been implemented into the EMEP chemical transport model. Four diffe...
Long-term monitoring of the organic aerosol is important for epidemiological studies, validation of ...
Emissions of organic compounds from biomass, biofuel, and fossil fuel combustion strongly influence ...