Results from the Intergovernmental Panel on Climatic Change (IPCC) tropospheric photochemical model intercomparison (PhotoComp) are presented with a brief discussion of the factors that may contribute to differences in the modeled behaviors of HOx cycling and the accompanying O-3 tendencies. PhotoComp was a tightly controlled model experiment in which the IPCC 1994 assessment sought to determine the consistency among models that are used to predict changes in tropospheric ozone, an important greenhouse gas, Calculated tropospheric photodissociation rates displayed significant differences, with a root-mean-square (rms) error of the reported model results ranging from about +/-6-9% of the mean (for O-3 and NO2) to up to +/-15% (H2O2 and CH2O)...
The hydroxyl radical (OH) plays critical roles within the troposphere, such as determining the lifet...
Results from a global three-dimensional model for tropospheric O3-NOx-hydrocarbon chemistry are pres...
The Tropospheric Chemistry General Circulation model ECHAM5-MOZ was developed between 2001 and 2005 ...
Results from the Intergovernmental Panel on Climatic Change (IPCC) tropospheric photochemical model ...
Nitric oxide (NO) and nitrogen dioxide (NO2) were monitored at the University of New Hampshire Atmos...
This is the second part of a rigorous model evaluation study involving five global Chemistry-Transpo...
We present a first description and evaluation of GEOS-CHEM, a global threedimensional (3-D) model of...
An intercomparison has been set up to study the representation of the atmospheric chemistry of the p...
We present the chemistry-climate model UMCAM in which a relatively detailed tropospheric chemical mo...
We examine the relative importance of chemical precursor emissions affecting ozone (O3) and hydroxy...
The hydroxyl radical (OH) is the primary daytime oxidant in the troposphere and provides the main lo...
We investigate the impact of new laboratory studies of N2O5 hydrolysis in aerosols on global model s...
International audienceThe hydroxyl radical (OH) is the primary daytime oxidant in the troposphere an...
Two recent papers have quantified long-term ozone (O3) changes observed at northernmidlatitude sites...
Regional and global chemical transport models underpredict NOx (NO + NO2) in the upper troposphere w...
The hydroxyl radical (OH) plays critical roles within the troposphere, such as determining the lifet...
Results from a global three-dimensional model for tropospheric O3-NOx-hydrocarbon chemistry are pres...
The Tropospheric Chemistry General Circulation model ECHAM5-MOZ was developed between 2001 and 2005 ...
Results from the Intergovernmental Panel on Climatic Change (IPCC) tropospheric photochemical model ...
Nitric oxide (NO) and nitrogen dioxide (NO2) were monitored at the University of New Hampshire Atmos...
This is the second part of a rigorous model evaluation study involving five global Chemistry-Transpo...
We present a first description and evaluation of GEOS-CHEM, a global threedimensional (3-D) model of...
An intercomparison has been set up to study the representation of the atmospheric chemistry of the p...
We present the chemistry-climate model UMCAM in which a relatively detailed tropospheric chemical mo...
We examine the relative importance of chemical precursor emissions affecting ozone (O3) and hydroxy...
The hydroxyl radical (OH) is the primary daytime oxidant in the troposphere and provides the main lo...
We investigate the impact of new laboratory studies of N2O5 hydrolysis in aerosols on global model s...
International audienceThe hydroxyl radical (OH) is the primary daytime oxidant in the troposphere an...
Two recent papers have quantified long-term ozone (O3) changes observed at northernmidlatitude sites...
Regional and global chemical transport models underpredict NOx (NO + NO2) in the upper troposphere w...
The hydroxyl radical (OH) plays critical roles within the troposphere, such as determining the lifet...
Results from a global three-dimensional model for tropospheric O3-NOx-hydrocarbon chemistry are pres...
The Tropospheric Chemistry General Circulation model ECHAM5-MOZ was developed between 2001 and 2005 ...