We present a sensitivity study on transatlantic dust transport, a process which has many implications for the atmosphere, the ocean and the climate. We investigate the impact of key processes that control the dust outflow, i.e., the emission flux, convection schemes and the chemical aging of mineral dust, by using the EMAC model following Abdelkader et al. (2015). To characterize the dust outflow over the Atlantic Ocean, we distinguish two geographic zones: (i) dust interactions within the Intertropical Convergence Zone (ITCZ), or the dust–ITCZ interaction zone (DIZ), and (ii) the adjacent dust transport over the Atlantic Ocean (DTA) zone. In the latter zone, the dust loading shows a steep and linear gradient westward over the Atlantic Ocea...
Mineral dust has a large impact on regional and global climate, depending on its particle size. Espe...
This study examines the modifications of air-sea coupling processes by dust-radiation-cloud interact...
This study examines how dust-cloud-radiation interactions modulate large-scale circulations and redu...
We present a sensitivity study on transatlantic dust transport, a process which has many implication...
Transatlantic dust transport has many implications for the atmosphere, ocean and climate. We present...
Interactions of desert dust and air pollution over the eastern Mediterranean (EM) have been studied,...
Interactions of desert dust and air pollution over the eastern Mediterranean (EM) have been studied,...
At present one of the largest uncertainties in our understanding of global climate concerns the inte...
Over the past decade, technological improvements in the chemical and physical characterization of du...
Airborne desert dust influences radiative transfer, atmospheric chemistry and dynamics, as well as n...
Saharan dust affects the climate by altering the radiation balance and by depositing minerals to the...
This dissertation presents results relevant to aerosol radiative forcing. The focus of this disserta...
Atmospheric inputs to the ocean of dust originating from Africa are compared with downward dust fl...
Saharan dust is transported in great quantities across the Atlantic Ocean, and a large part is depos...
Mineral dust has a large impact on regional and global climate, depending on its particle size. Espe...
This study examines the modifications of air-sea coupling processes by dust-radiation-cloud interact...
This study examines how dust-cloud-radiation interactions modulate large-scale circulations and redu...
We present a sensitivity study on transatlantic dust transport, a process which has many implication...
Transatlantic dust transport has many implications for the atmosphere, ocean and climate. We present...
Interactions of desert dust and air pollution over the eastern Mediterranean (EM) have been studied,...
Interactions of desert dust and air pollution over the eastern Mediterranean (EM) have been studied,...
At present one of the largest uncertainties in our understanding of global climate concerns the inte...
Over the past decade, technological improvements in the chemical and physical characterization of du...
Airborne desert dust influences radiative transfer, atmospheric chemistry and dynamics, as well as n...
Saharan dust affects the climate by altering the radiation balance and by depositing minerals to the...
This dissertation presents results relevant to aerosol radiative forcing. The focus of this disserta...
Atmospheric inputs to the ocean of dust originating from Africa are compared with downward dust fl...
Saharan dust is transported in great quantities across the Atlantic Ocean, and a large part is depos...
Mineral dust has a large impact on regional and global climate, depending on its particle size. Espe...
This study examines the modifications of air-sea coupling processes by dust-radiation-cloud interact...
This study examines how dust-cloud-radiation interactions modulate large-scale circulations and redu...