Black carbon (BC) aerosol strongly absorbs solar radiation, which warms climate. However, accurate estimation of BC's climate effect is limited by the uncertainties of its spatiotemporal distribution, especially over remote oceanic areas. The HIAPER Pole-to-Pole Observation (HIPPO) program from 2009 to 2011 intercepted multiple snapshots of BC profiles over Pacific in various seasons, and revealed a 2 to 5 times overestimate of BC by current global models. In this study, we compared the measurements from aircraft campaigns and satellites, and found a robust association between BC concentrations and satellite-retrieved CO, tropospheric NO2, and aerosol optical depth (AOD) (R-2 > 0.8). This establishes a basis to construct a satellite...
International audienceBlack carbon (BC) contributes to global warming by absorbing sunlight. However...
Accurate estimates of the emissions and distribution of black carbon (BC) in the region referred to ...
Black carbon (BC) aerosols are significant contributors to anthropogenic climate change and are cons...
Black carbon (BC) aerosol strongly absorbs solar radiation, which warms climate. However, accurate e...
International audienceAtmospheric black carbon (BC) absorbs solar radiation , and exacerbates global...
Refractory black carbon (rBC) aerosol loadings and mass size distributions have been quantified duri...
International audienceBlack carbon (BC) aerosol loadings were measured during the High‐performance I...
Black carbon (BC) contributes to global warming by absorbing sunlight. However, the size of this con...
East Asia is the strongest global source region for anthropogenic black carbon (BC), the most import...
From July to September 2012, during the fifth Chinese National Arctic Research Expedition (CHINARE),...
Improving the ability of global models to predict concentrations of black carbon (BC) over the Pacif...
International audienceBlack carbon (BC) contributes to global warming by absorbing sunlight. However...
Accurate estimates of the emissions and distribution of black carbon (BC) in the region referred to ...
Black carbon (BC) aerosols are significant contributors to anthropogenic climate change and are cons...
Black carbon (BC) aerosol strongly absorbs solar radiation, which warms climate. However, accurate e...
International audienceAtmospheric black carbon (BC) absorbs solar radiation , and exacerbates global...
Refractory black carbon (rBC) aerosol loadings and mass size distributions have been quantified duri...
International audienceBlack carbon (BC) aerosol loadings were measured during the High‐performance I...
Black carbon (BC) contributes to global warming by absorbing sunlight. However, the size of this con...
East Asia is the strongest global source region for anthropogenic black carbon (BC), the most import...
From July to September 2012, during the fifth Chinese National Arctic Research Expedition (CHINARE),...
Improving the ability of global models to predict concentrations of black carbon (BC) over the Pacif...
International audienceBlack carbon (BC) contributes to global warming by absorbing sunlight. However...
Accurate estimates of the emissions and distribution of black carbon (BC) in the region referred to ...
Black carbon (BC) aerosols are significant contributors to anthropogenic climate change and are cons...