To demonstrate potential future consequences of land cover and land use changes beyond those for physical climate and the carbon cycle, we present an analysis of large-scale impacts of land cover and land use changes on atmospheric chemistry using the chemistry-climate model EMAC (ECHAM5/MESSy Atmospheric Chemistry) constrained with present-day and 2050 land cover, land use, and anthropogenic emissions scenarios. Future land use and land cover changes are expected to result in an increase in global annual soil NO emissions by ~1.2 TgN yr-1 (9%), whereas isoprene emissions decrease by ~50 TgC yr-1 (-12%). The analysis shows increases in simulated boundary layer ozone mixing ratios up to ~9 ppbv and more than a doubling in hydroxyl radical co...
A regional modeling system was applied with inputs from global climate and chemistry models to quant...
A global chemical transport model of the atmosphere [the Model for Ozone and Related Tracers, versio...
The sensitivity of secondary organic aerosol (SOA) concentration to changes in climate and emissions...
To demonstrate potential future consequences of land cover and land use changes beyond those for phy...
The effects of future land use and land cover change on the chemical composition of the atmosphere a...
Land use and land cover changes impact climate and air quality by altering the exchange of trace gas...
Most socioeconomic pathways compatible with the aims of the Paris Agreement include large changes to...
Land use and land cover changes impact climate and air quality by altering the exchange of trace ga...
Climate change has the potential to increase surface ozone (O-3) concentrations, known as the "ozone...
Isoprene is emitted from vegetation to the atmosphere in significant quantities, and it plays an imp...
International audienceOver the 21st century, changes in CO2 levels, climate and land use are expecte...
Our work explores the impact of two important dimensions of land system changes, land use and land c...
A single-column chemistry and climate model has been used to study the impact of deforestation in th...
A global chemical transport model of the atmosphere [the Model for Ozone and Related Tracers, versio...
Our work explores the impact of two important dimensions of land system changes, land use and land c...
A regional modeling system was applied with inputs from global climate and chemistry models to quant...
A global chemical transport model of the atmosphere [the Model for Ozone and Related Tracers, versio...
The sensitivity of secondary organic aerosol (SOA) concentration to changes in climate and emissions...
To demonstrate potential future consequences of land cover and land use changes beyond those for phy...
The effects of future land use and land cover change on the chemical composition of the atmosphere a...
Land use and land cover changes impact climate and air quality by altering the exchange of trace gas...
Most socioeconomic pathways compatible with the aims of the Paris Agreement include large changes to...
Land use and land cover changes impact climate and air quality by altering the exchange of trace ga...
Climate change has the potential to increase surface ozone (O-3) concentrations, known as the "ozone...
Isoprene is emitted from vegetation to the atmosphere in significant quantities, and it plays an imp...
International audienceOver the 21st century, changes in CO2 levels, climate and land use are expecte...
Our work explores the impact of two important dimensions of land system changes, land use and land c...
A single-column chemistry and climate model has been used to study the impact of deforestation in th...
A global chemical transport model of the atmosphere [the Model for Ozone and Related Tracers, versio...
Our work explores the impact of two important dimensions of land system changes, land use and land c...
A regional modeling system was applied with inputs from global climate and chemistry models to quant...
A global chemical transport model of the atmosphere [the Model for Ozone and Related Tracers, versio...
The sensitivity of secondary organic aerosol (SOA) concentration to changes in climate and emissions...