Measurement report: Spatial variability of VOCs, ozone, and carbonaceous aerosols during the 2022 European summer heatwave
Atmospheric Chemistry and Physics (ACP)
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Atmosfære og klima
Kjeller
sso@nilu.no
Atmospheric Chemistry and Physics (ACP)
Atmospheric Chemistry and Physics (ACP)
Elementa: Science of the Anthropocene
Elementa: Science of the Anthropocene
Atmospheric Chemistry and Physics (ACP)
Aerosol and Air Quality Research
Geoscientific Model Development
Geoscientific Model Development
Atmosphere
Current Opinion in Environmental Sustainability
25th EMEP Task Force on Measurement and Modelling Meeting
ACID RAIN 2020. 10th International Conference on Acid Deposition
Handbook of Air Quality and Climate Change
23rd Task Force on Measurement and Modelling Meeting
Living Planet Symposium
22nd Task Force on Measurement and Modelling Meeting
EGU General Assembly 2025
23rd Task Force on Measurement and Modelling Meeting
4th ACTRIS-2 General Meeting 2018
ACTRIS Science Conference 2024
Hovedmålet med prosjektet er å modifisere og forbedre NILUs eksisterende atmosfæriske modeller for simulering av tradisjonelle luftforurensninger (f.eks. NO2, PM2.5, PM10) med svært høy romlig oppløsning i urbane områder.
Atmospheric Chemistry and Physics (ACP)
Atmospheric Chemistry and Physics (ACP)
Elementa: Science of the Anthropocene
Elementa: Science of the Anthropocene
Atmospheric Chemistry and Physics (ACP)
Aerosol and Air Quality Research
Geoscientific Model Development
Geoscientific Model Development
Atmosphere
Current Opinion in Environmental Sustainability
25th EMEP Task Force on Measurement and Modelling Meeting
ACID RAIN 2020. 10th International Conference on Acid Deposition
Handbook of Air Quality and Climate Change
23rd Task Force on Measurement and Modelling Meeting
Living Planet Symposium
22nd Task Force on Measurement and Modelling Meeting
EGU General Assembly 2025
23rd Task Force on Measurement and Modelling Meeting
4th ACTRIS-2 General Meeting 2018
ACTRIS Science Conference 2024
Hovedmålet med prosjektet er å modifisere og forbedre NILUs eksisterende atmosfæriske modeller for simulering av tradisjonelle luftforurensninger (f.eks. NO2, PM2.5, PM10) med svært høy romlig oppløsning i urbane områder.