Over the Mediterranean region, elevated tropospheric ozone (O3) values are recorded, especially in summer. We use the thermal Infrared Atmospheric Sounding Interferometer (IASI) and the Weather Research and Forecasting Model with Chemistry (WRF-Chem) to understand and interpret the factors and emission sources responsible for the high O3 concentrations observed in the Mediterranean troposphere. Six years (2008.2013) of IASI data have been analyzed and results show consistent maxima during summer, with an increase of up to 22% in the [0-8] km O3 column in the eastern part of the basin compared to the middle of the basin. We focus on summer 2010 to investigate the processes that contribute to these summer maxima. Using two modeled O3 tracers ...
An analysis of the 22-yr ozone (O3) series (1988– 2009) at the subtropical high mountain Izaña stat...
[1] We use the GEOS-Chem chemical transport model to interpret observations of tropospheric ozone fr...
The Mediterranean basin represents a hot spot area for short-term O3 distribution and anthropogenic ...
Over the Mediterranean region, elevated tropospheric ozone (O3) values are recorded, especially in s...
International audienceOver the Mediterranean region, elevated and alarming tropospheric ozone (O3) v...
Observations show that the Mediterranean troposphere is characterized by a marked enhancement in sum...
International audienceVertical ozone profiles measured in the period 1996–2002 in the framework of t...
In the summer of 2018, Europe experienced an intense heat wave which coincided with several persiste...
Tropospheric ozone (O3) is an important atmospheric pollutant and climate forcer. The Mediterranean ...
In order to evaluate the observed high rural ozone levels in the eastern Mediterranean area during s...
International audienceA coupled tropospheric chemistry ? climate model is used to reproduce and anal...
A coupled tropospheric chemistry-climate model is used to analyze tropospheric ozone distributions ...
The Mediterranean basin is one of the most sensitive regions of the world regarding climate change a...
The GEOS-CHEM global 3-D model of tropospheric chemistry predicts a summertime O3 maximum over the M...
An analysis of the 22-yr ozone (O3) series (1988– 2009) at the subtropical high mountain Izaña stat...
[1] We use the GEOS-Chem chemical transport model to interpret observations of tropospheric ozone fr...
The Mediterranean basin represents a hot spot area for short-term O3 distribution and anthropogenic ...
Over the Mediterranean region, elevated tropospheric ozone (O3) values are recorded, especially in s...
International audienceOver the Mediterranean region, elevated and alarming tropospheric ozone (O3) v...
Observations show that the Mediterranean troposphere is characterized by a marked enhancement in sum...
International audienceVertical ozone profiles measured in the period 1996–2002 in the framework of t...
In the summer of 2018, Europe experienced an intense heat wave which coincided with several persiste...
Tropospheric ozone (O3) is an important atmospheric pollutant and climate forcer. The Mediterranean ...
In order to evaluate the observed high rural ozone levels in the eastern Mediterranean area during s...
International audienceA coupled tropospheric chemistry ? climate model is used to reproduce and anal...
A coupled tropospheric chemistry-climate model is used to analyze tropospheric ozone distributions ...
The Mediterranean basin is one of the most sensitive regions of the world regarding climate change a...
The GEOS-CHEM global 3-D model of tropospheric chemistry predicts a summertime O3 maximum over the M...
An analysis of the 22-yr ozone (O3) series (1988– 2009) at the subtropical high mountain Izaña stat...
[1] We use the GEOS-Chem chemical transport model to interpret observations of tropospheric ozone fr...
The Mediterranean basin represents a hot spot area for short-term O3 distribution and anthropogenic ...