We present a comparison of chemistry-transport models (TransCom-N2O) to examine the importance of atmospheric transport and surface fluxes on the variability of N2O mixing ratios in the troposphere. Six different models and two model variants participated in the inter-comparison and simulations were made for the period 2006 to 2009. In addition to N2O, simulations of CFC-12 and SF6 were made by a subset of four of the models to provide information on the models' proficiency in stratosphere–troposphere exchange (STE) and meridional transport, respectively. The same prior emissions were used by all models to restrict differences among models to transport and chemistry alone. Four different N2O flux scenarios totalling between 14 and 17 TgN yr...
International audienceIn this paper we study the impact of the modelling of N2O on the simulation of...
Nitrous oxide (N2O) is an important greenhouse gas and the major source of stratospheric reactive ni...
Nitrous oxide (N 2 O) is an important greenhouse gas and it can also generate nitric oxide, which de...
We present a comparison of chemistry-transport models (TransCom-N2O) to examine the importance of at...
International audienceWe present a comparison of chemistry-transport models (TransCom-N2O) to examin...
International audienceWe present a comparison of chemistry-transport models (TransCom-N2O) to examin...
This study examines N2O emission estimates from 5 different atmospheric inversion frameworks. The 5 ...
This study examines N2O emission estimates from five different atmospheric inversion frameworks base...
This study examines N2O emission estimates from five different atmospheric inversion frameworks base...
International audienceThis study examines N 2 O emission estimates from five different atmospheric i...
This study examines N2O emission estimates from 5 different atmospheric inversion frameworks. The 5 ...
peer reviewedThe Brewer-Dobson Circulation (BDC) determines the distribution of long-lived tracers i...
International audienceIn this paper we study the impact of the modelling of N2O on the simulation of...
Nitrous oxide (N2O) is an important greenhouse gas and the major source of stratospheric reactive ni...
Nitrous oxide (N 2 O) is an important greenhouse gas and it can also generate nitric oxide, which de...
We present a comparison of chemistry-transport models (TransCom-N2O) to examine the importance of at...
International audienceWe present a comparison of chemistry-transport models (TransCom-N2O) to examin...
International audienceWe present a comparison of chemistry-transport models (TransCom-N2O) to examin...
This study examines N2O emission estimates from 5 different atmospheric inversion frameworks. The 5 ...
This study examines N2O emission estimates from five different atmospheric inversion frameworks base...
This study examines N2O emission estimates from five different atmospheric inversion frameworks base...
International audienceThis study examines N 2 O emission estimates from five different atmospheric i...
This study examines N2O emission estimates from 5 different atmospheric inversion frameworks. The 5 ...
peer reviewedThe Brewer-Dobson Circulation (BDC) determines the distribution of long-lived tracers i...
International audienceIn this paper we study the impact of the modelling of N2O on the simulation of...
Nitrous oxide (N2O) is an important greenhouse gas and the major source of stratospheric reactive ni...
Nitrous oxide (N 2 O) is an important greenhouse gas and it can also generate nitric oxide, which de...