The first global model of meteoric iron in the atmosphere (WACCM-Fe) has been developed by combining three components: the Whole Atmosphere Community Climate Model (WACCM), a description of the neutral and ion-molecule chemistry of iron in the mesosphere and lower thermosphere (MLT), and a treatment of the injection of meteoric constituents into the atmosphere. The iron chemistry treats seven neutral and four ionized iron containing species with 30 neutral and ion-molecule reactions. The meteoric input function (MIF), which describes the injection of Fe as a function of height, latitude, and day, is precalculated from an astronomical model coupled to a chemical meteoric ablation model (CABMOD). This newly developed WACCM-Fe model has been e...
International audienceResonant lidar detection of iron atoms have been performed at the Observatoire...
International audience[1] Since iron is an important micronutrient, deposition of iron in mineral ae...
Nutrification of the open ocean originates mainly from deposited aerosol in which the bio-avaliable ...
The first global model of meteoric iron in the atmosphere (WACCM-Fe) has been developed by combining...
International audienceHere we report a global model of meteoric metals including Mg, Fe and Na in th...
A numerical model has been developed which is capable of simulating all phases of the life cycle of...
The NCAR Whole Atmosphere Community Climate Model with thermosphere and ionosphere eXtension (WACCM-...
The NCAR Whole Atmosphere Community Climate Model with thermosphere and ionosphere eXtension (WACCM-...
Abstract. This work reports on the current status of the global modeling of iron (Fe) deposition flu...
Iron is the most abundant transition metal in the atmosphere and can play a significant role in clou...
Atmospheric processing of iron in dust and combustion aerosols is simulated using an intermediate-co...
The global atmospheric iron (Fe) cycle is parameterized in the global 3-D chemical transport model T...
none8Iron is the most abundant transition metal in the atmosphere and can play a significant role i...
By blocking extreme hazards from space and regulating radio wave propagation, the space-atmosphere i...
International audienceResonant lidar detection of iron atoms have been performed at the Observatoire...
International audience[1] Since iron is an important micronutrient, deposition of iron in mineral ae...
Nutrification of the open ocean originates mainly from deposited aerosol in which the bio-avaliable ...
The first global model of meteoric iron in the atmosphere (WACCM-Fe) has been developed by combining...
International audienceHere we report a global model of meteoric metals including Mg, Fe and Na in th...
A numerical model has been developed which is capable of simulating all phases of the life cycle of...
The NCAR Whole Atmosphere Community Climate Model with thermosphere and ionosphere eXtension (WACCM-...
The NCAR Whole Atmosphere Community Climate Model with thermosphere and ionosphere eXtension (WACCM-...
Abstract. This work reports on the current status of the global modeling of iron (Fe) deposition flu...
Iron is the most abundant transition metal in the atmosphere and can play a significant role in clou...
Atmospheric processing of iron in dust and combustion aerosols is simulated using an intermediate-co...
The global atmospheric iron (Fe) cycle is parameterized in the global 3-D chemical transport model T...
none8Iron is the most abundant transition metal in the atmosphere and can play a significant role i...
By blocking extreme hazards from space and regulating radio wave propagation, the space-atmosphere i...
International audienceResonant lidar detection of iron atoms have been performed at the Observatoire...
International audience[1] Since iron is an important micronutrient, deposition of iron in mineral ae...
Nutrification of the open ocean originates mainly from deposited aerosol in which the bio-avaliable ...