A single-column chemistry and climate model has been used to study the impact of deforestation in the Amazon Basin on atmospheric chemistry. Over deforested areas, daytime ozone deposition generally decreases strongly except when surface wetness decreases through reduced precipitation, whereas nocturnal soil deposition increases. The isoprene and soil nitric oxide emissions decrease although nitrogen oxide release to the atmosphere increases due to reduced canopy deposition. Deforestation also affects vertical transport causing substantial ozone and hydroxyl changes, also depending on soil moisture. The analysis shows that assessment of the impact of land cover and land use changes on atmospheric chemistry requires the development of explic...
International audienceThis study explores our ability to simulate the atmospheric chemistry stemming...
Climate change has the potential to increase surface ozone (O-3) concentrations, known as the "ozone...
One of the least understood aspects in atmospheric chemistry is how urban emissions influence the fo...
A single-column chemistry and climate model has been used to study the impact of deforestation in th...
It is generally expected that the Amazon basin will experience at least two major environmental chan...
The atmospheric composition over the Amazon forest during the wet season is simulated with a onedime...
A simulation of the climate response to Amazon deforestation has been carried out. Precipitation is ...
To demonstrate potential future consequences of land cover and land use changes beyond those for phy...
Abstract Changes in precipitation in the Amazon Basin resulting from regional deforestation, global ...
From April 2014 to January 2015, ozone (O3) dynamics were investigated as part of GoAmazon 2014/5 pr...
The boundary layer chemistry over the Amazon forest during the dry season is simulated with a photoc...
The Amazon rainforest suffers increasing pressure from anthropogenic activities. A key aspect not fu...
An intermediate level model for tropical climatology including atmosphere-land-ocean interaction is ...
Biogenic volatile organic compounds (BVOCs) play important roles at cellular, foliar, ecosystem and ...
One of the least understood aspects in atmospheric chemistry is how urban emissions influence the fo...
International audienceThis study explores our ability to simulate the atmospheric chemistry stemming...
Climate change has the potential to increase surface ozone (O-3) concentrations, known as the "ozone...
One of the least understood aspects in atmospheric chemistry is how urban emissions influence the fo...
A single-column chemistry and climate model has been used to study the impact of deforestation in th...
It is generally expected that the Amazon basin will experience at least two major environmental chan...
The atmospheric composition over the Amazon forest during the wet season is simulated with a onedime...
A simulation of the climate response to Amazon deforestation has been carried out. Precipitation is ...
To demonstrate potential future consequences of land cover and land use changes beyond those for phy...
Abstract Changes in precipitation in the Amazon Basin resulting from regional deforestation, global ...
From April 2014 to January 2015, ozone (O3) dynamics were investigated as part of GoAmazon 2014/5 pr...
The boundary layer chemistry over the Amazon forest during the dry season is simulated with a photoc...
The Amazon rainforest suffers increasing pressure from anthropogenic activities. A key aspect not fu...
An intermediate level model for tropical climatology including atmosphere-land-ocean interaction is ...
Biogenic volatile organic compounds (BVOCs) play important roles at cellular, foliar, ecosystem and ...
One of the least understood aspects in atmospheric chemistry is how urban emissions influence the fo...
International audienceThis study explores our ability to simulate the atmospheric chemistry stemming...
Climate change has the potential to increase surface ozone (O-3) concentrations, known as the "ozone...
One of the least understood aspects in atmospheric chemistry is how urban emissions influence the fo...