IASI observations of tropospheric ozone over the Beijing, Shanghai and Hong Kong areas during one year (2008) have been analysed, demonstrating the capability of space-borne infrared nadir measurements to probe seasonal and even day-to-day variations of lower tropospheric ozone (0–6 km partial columns) on the regional scale of highly populated areas. The monthly variations of lower tropospheric ozone retrieved from IASI clearly show the influence of the Asian summer monsoon that brings clean air masses from the Pacific during summer. They exhibit indeed a sharp ozone maximum in late spring and early summer (May–June) followed by a summer minimum. The time periods and the intensities of the maxima and of the decreases are latitude-dependent:...
During the Pacific Exploration of Asian Continental Emission ( PEACE) phase A mission in January 200...
Tropospheric ozone (O3) columns in urban and rural regions as seen by the infrared sounder IASI are ...
International audienceWe characterise a transboundary ozone pollution outbreak transported across Ea...
IASI observations of tropospheric ozone over the Beijing, Shanghai and Hong Kong areas during one ye...
We use satellite observations from IASI (Infrared Atmospheric Sounding Interferometer) on board the ...
Abstract-Ozonesondes have been launched at Hong Kong (22.2”N, 114.3”E) since 1993. The results of da...
Satellite measurements from the thermal Infrared Atmospheric Sounding Interferometer (IASI), the Mea...
International audienceOzone (O3) profiles recorded over Beijing from 1995 to 2005 by the Measurement...
During the Transport and Chemical Evolution Over the Pacific (TRACE-P) period in the spring of 2001 ...
Ozone (O3) concentrations in the lower troposphere (LT) over Beijing have significantly increased ov...
Concerns have been raised about the possible connections between the local and regional photochemica...
International audienceSatellite measurements from the thermal Infrared Atmospheric Sounding Interfer...
During the Pacific Exploration of Asian Continental Emission (PEACE) phase A mission in January 2002...
In the atmosphere above Hong Kong, the peak value in the seasonally averaged vertical profile of ozo...
China is experiencing severe tropospheric ozone pollution, especially during the summer period in ci...
During the Pacific Exploration of Asian Continental Emission ( PEACE) phase A mission in January 200...
Tropospheric ozone (O3) columns in urban and rural regions as seen by the infrared sounder IASI are ...
International audienceWe characterise a transboundary ozone pollution outbreak transported across Ea...
IASI observations of tropospheric ozone over the Beijing, Shanghai and Hong Kong areas during one ye...
We use satellite observations from IASI (Infrared Atmospheric Sounding Interferometer) on board the ...
Abstract-Ozonesondes have been launched at Hong Kong (22.2”N, 114.3”E) since 1993. The results of da...
Satellite measurements from the thermal Infrared Atmospheric Sounding Interferometer (IASI), the Mea...
International audienceOzone (O3) profiles recorded over Beijing from 1995 to 2005 by the Measurement...
During the Transport and Chemical Evolution Over the Pacific (TRACE-P) period in the spring of 2001 ...
Ozone (O3) concentrations in the lower troposphere (LT) over Beijing have significantly increased ov...
Concerns have been raised about the possible connections between the local and regional photochemica...
International audienceSatellite measurements from the thermal Infrared Atmospheric Sounding Interfer...
During the Pacific Exploration of Asian Continental Emission (PEACE) phase A mission in January 2002...
In the atmosphere above Hong Kong, the peak value in the seasonally averaged vertical profile of ozo...
China is experiencing severe tropospheric ozone pollution, especially during the summer period in ci...
During the Pacific Exploration of Asian Continental Emission ( PEACE) phase A mission in January 200...
Tropospheric ozone (O3) columns in urban and rural regions as seen by the infrared sounder IASI are ...
International audienceWe characterise a transboundary ozone pollution outbreak transported across Ea...