Mineral dust plays an important role in the atmospheric radiation budget as well as in the ocean carbon cycle through fertilization and by ballasting of settling organic matter. However, observational records of open-ocean dust deposition are sparse. Here, we present the spatial and temporal evolution of Saharan dust deposition over 2 years from marine sediment traps across the North Atlantic, directly below the core of the Saharan dust plume, with highest dust fluxes observed in summer. We combined the observed deposition fluxes with model simulations and satellite observations and argue that dust deposition in the Atlantic is predominantly controlled by summer rains. The dominant depositional pathway changes from wet deposition in summer ...
Marine sediment records reveal an abrupt and strong increase in dust deposition in the North Atlanti...
Marine sediment records reveal an abrupt and strong increase in dust deposition in the North Atlanti...
International audienceBy bringing new nutrients and particles to the surface ocean, atmospheric depo...
Saharan dust is transported in great quantities from the North African continent every year, most of...
Mineral dust has a large impact on regional and global climate, depending on its particle size. Espe...
Massive amounts of Saharan dust are blown from the coast of northern Africa across the Atlantic Ocea...
Mineral dust has a large impact on regional and global climate, depending on its particle size. Esp...
The particle sizes of Saharan dust in marine sediment core records have been used frequently as a pr...
Saharan dust is transported in great quantities across the Atlantic Ocean, and a large part is depos...
AbstractThe particle sizes of Saharan dust in marine sediment core records have been used frequently...
We present a study of Saharan dust export towards the tropical North Atlantic using the regional dus...
The Saharan desert is the largest dust emitting region worldwide. Apart from its effect on albedo, S...
Dataset includes sediment-trap data of Saharan dust deposition along a trans-Atlantic transect at 12...
Enhanced atmospheric input of dust-borne nutrients and minerals to the remote surface ocean can pote...
We present a study of Saharan dust export towards the tropical North Atlantic using the regional dus...
Marine sediment records reveal an abrupt and strong increase in dust deposition in the North Atlanti...
Marine sediment records reveal an abrupt and strong increase in dust deposition in the North Atlanti...
International audienceBy bringing new nutrients and particles to the surface ocean, atmospheric depo...
Saharan dust is transported in great quantities from the North African continent every year, most of...
Mineral dust has a large impact on regional and global climate, depending on its particle size. Espe...
Massive amounts of Saharan dust are blown from the coast of northern Africa across the Atlantic Ocea...
Mineral dust has a large impact on regional and global climate, depending on its particle size. Esp...
The particle sizes of Saharan dust in marine sediment core records have been used frequently as a pr...
Saharan dust is transported in great quantities across the Atlantic Ocean, and a large part is depos...
AbstractThe particle sizes of Saharan dust in marine sediment core records have been used frequently...
We present a study of Saharan dust export towards the tropical North Atlantic using the regional dus...
The Saharan desert is the largest dust emitting region worldwide. Apart from its effect on albedo, S...
Dataset includes sediment-trap data of Saharan dust deposition along a trans-Atlantic transect at 12...
Enhanced atmospheric input of dust-borne nutrients and minerals to the remote surface ocean can pote...
We present a study of Saharan dust export towards the tropical North Atlantic using the regional dus...
Marine sediment records reveal an abrupt and strong increase in dust deposition in the North Atlanti...
Marine sediment records reveal an abrupt and strong increase in dust deposition in the North Atlanti...
International audienceBy bringing new nutrients and particles to the surface ocean, atmospheric depo...