The Sahara Desert is the largest dust source on Earth. Its dust is frequently emitted into the Mediterranean atmosphere and transported by the winds sometimes as far north as Central Europe. The accumulated particles contribute to soil forming processes, while the atmospheric mineral dust has an impact on the radiation budget, cloud forming processes, the pH of precipitation and biogeochemical cycles of marine ecosystems. The PM (particulate matter) in ambient air does not contain only primary particles but secondary particles formed in the atmosphere from precursor gases as well. Especially these latter ones have significant negative impacts to human health. There are in average four-five Saharan dust episodes annually in Hungary, sometim...
Transport of Saharan (northern Africa) dust above the Mediterranean Sea and Europe is widely studied...
We provide an atmospheric aerosol characterization for North Africa, Northeastern Atlantic, Mediterr...
International audienceThe spread of mineral particles over southwestern, western, and central Europe...
[1] Aerosols are known to be important in determining Earth’s radiative balance. Dust aerosols are o...
This paper reviews recent work on the role of Saharan dust in environmental change, the location and...
Saharan dust outbreaks transport appreciable amounts of mineral particles into the atmosphere of the...
Atmospheric mineral dust has recently become an important research field in Earth system science bec...
[1] The spread of mineral particles over southwestern, western, and central Europe resulting from a ...
In the framework of the FENNEC experiment (6 to 30 June 2011) an effort has been dedicated to charac...
The Fennec climate programme aims to improve understanding of the Saharan climate system through a s...
An analysis of chemical composition data of particulate matter samples (TSP, PM10 and PM2.5) collect...
International audienceThis study presents in situ aircraft measurements of Saharan mineral dust tran...
Transport of Saharan (northern Africa) dust above the Mediterranean Sea and Europe is widely studied...
We provide an atmospheric aerosol characterization for North Africa, Northeastern Atlantic, Mediterr...
International audienceThe spread of mineral particles over southwestern, western, and central Europe...
[1] Aerosols are known to be important in determining Earth’s radiative balance. Dust aerosols are o...
This paper reviews recent work on the role of Saharan dust in environmental change, the location and...
Saharan dust outbreaks transport appreciable amounts of mineral particles into the atmosphere of the...
Atmospheric mineral dust has recently become an important research field in Earth system science bec...
[1] The spread of mineral particles over southwestern, western, and central Europe resulting from a ...
In the framework of the FENNEC experiment (6 to 30 June 2011) an effort has been dedicated to charac...
The Fennec climate programme aims to improve understanding of the Saharan climate system through a s...
An analysis of chemical composition data of particulate matter samples (TSP, PM10 and PM2.5) collect...
International audienceThis study presents in situ aircraft measurements of Saharan mineral dust tran...
Transport of Saharan (northern Africa) dust above the Mediterranean Sea and Europe is widely studied...
We provide an atmospheric aerosol characterization for North Africa, Northeastern Atlantic, Mediterr...
International audienceThe spread of mineral particles over southwestern, western, and central Europe...