This paper documents the tropospheric chemical mechanism scheme used in the TOMCAT 3-D chemical transport model. The current scheme includes a more detailed representation of hydrocarbon chemistry than previously included in the model, with the inclusion of the emission and oxidation of ethene, propene, butane, toluene and monoterpenes. The model is evaluated against a range of surface, balloon, aircraft and satellite measurements. The model is generally able to capture the main spatial and seasonal features of high and low concentrations of carbon monoxide (CO), ozone (O3), volatile organic compounds (VOCs) and reactive nitrogen. However, model biases are found in some species, some of which are common to chemistry models and some that are...
This paper presents a comprehensive description and benchmark evaluation of the tropospheric gas-pha...
International audienceThe hydroxyl radical (OH) is the primary daytime oxidant in the troposphere an...
The three-dimensional global distribution of OH over a year is calculated as a function of temperatu...
We present a comprehensive description and benchmark evaluation of the tropospheric chemistry versio...
We present a comprehensive description and benchmark evaluation of the tropospheric chemistry versio...
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...
The TOMCAT 3-D chemical transport model (CTM) has been used to investigate the cause of recent varia...
This is the second part of a rigorous model evaluation study involving five global Chemistry-Transpo...
A rigorous evaluation of five global Chemistry-Transport and two Chemistry-Climate Models operated b...
The Cambridge 3D chemical and transport model (TOMCAT) has been developed and used to separate the t...
Results from a global three-dimensional model for tropospheric O3-NOx-hydrocarbon chemistry are pres...
Ozone is a significant air quality pollutant and the third largest anthropogenic source of climate f...
This paper presents a comprehensive description and benchmark evaluation of the tropospheric gas-pha...
International audienceThe hydroxyl radical (OH) is the primary daytime oxidant in the troposphere an...
The three-dimensional global distribution of OH over a year is calculated as a function of temperatu...
We present a comprehensive description and benchmark evaluation of the tropospheric chemistry versio...
We present a comprehensive description and benchmark evaluation of the tropospheric chemistry versio...
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...
The TOMCAT 3-D chemical transport model (CTM) has been used to investigate the cause of recent varia...
This is the second part of a rigorous model evaluation study involving five global Chemistry-Transpo...
A rigorous evaluation of five global Chemistry-Transport and two Chemistry-Climate Models operated b...
The Cambridge 3D chemical and transport model (TOMCAT) has been developed and used to separate the t...
Results from a global three-dimensional model for tropospheric O3-NOx-hydrocarbon chemistry are pres...
Ozone is a significant air quality pollutant and the third largest anthropogenic source of climate f...
This paper presents a comprehensive description and benchmark evaluation of the tropospheric gas-pha...
International audienceThe hydroxyl radical (OH) is the primary daytime oxidant in the troposphere an...
The three-dimensional global distribution of OH over a year is calculated as a function of temperatu...