We investigated the changes in the size distribution, coating thickness, and mass absorption cross-section (MAC) of black carbon (BC) with aging and estimated the light absorption enhancement (Eabs) in the Asian outflow from airborne in-situ measurements during 2016 KORUS-AQ campaign. The BC number concentration decreased, but mass mean diameter increased with increasing altitude in the West Coast (WC) and Seoul Metropolitan Area (SMA), reflecting the contrast between freshly emitted BC-containing particles at the surface and more aged aerosol associated with aggregation during vertical mixing and transport. Contradistinctively, BC number and mass size distributions were relatively invariant with altitude over the Yellow Sea (YS) because su...
Black carbon (BC) is the dominant aerosol absorber of solar radiation in the atmosphere and is an im...
Black carbon (BC) absorption aerosol optical depth (AAODBC) defines the contribution of BC in light ...
Black carbon (BC) is the most important aerosol light-absorbing component, and its effect on radiati...
The coating of black carbon (BC) with inorganic salts and organic compounds can enhance the magnitu...
The impacts of black carbon (BC) aerosols on air quality, boundary layer dynamics and climate depend...
East Asia is the strongest global source region for anthropogenic black carbon (BC), the most import...
The radiative impact of the mixing state of black carbon (BC) aerosol is investigated in Asian outfl...
Coating enhancement of black carbon (BC) light absorption (Eabs) is a large uncertainty in modelling...
The light absorption enhancement (E-abs) of black carbon (BC) caused by non-BC materials is an impor...
Black carbon (BC) and its mixing state were measured with a ground-based single particle soot photom...
Black carbon (BC) and brown carbon (BrC) aerosols that are released from the combustion of fossil fu...
<div><p>Black carbon (BC) is important for climate forcing, and its effects on the Earth's radiative...
Black carbon (BC) is important for climate forcing, and its effects on the Earth's radiative balance...
Light absorption and radiative forcing of black carbon (BC) is influenced by both BC itself and its ...
Absorbing aerosols can strongly absorb solar radiation and have a profound impact on the global and ...
Black carbon (BC) is the dominant aerosol absorber of solar radiation in the atmosphere and is an im...
Black carbon (BC) absorption aerosol optical depth (AAODBC) defines the contribution of BC in light ...
Black carbon (BC) is the most important aerosol light-absorbing component, and its effect on radiati...
The coating of black carbon (BC) with inorganic salts and organic compounds can enhance the magnitu...
The impacts of black carbon (BC) aerosols on air quality, boundary layer dynamics and climate depend...
East Asia is the strongest global source region for anthropogenic black carbon (BC), the most import...
The radiative impact of the mixing state of black carbon (BC) aerosol is investigated in Asian outfl...
Coating enhancement of black carbon (BC) light absorption (Eabs) is a large uncertainty in modelling...
The light absorption enhancement (E-abs) of black carbon (BC) caused by non-BC materials is an impor...
Black carbon (BC) and its mixing state were measured with a ground-based single particle soot photom...
Black carbon (BC) and brown carbon (BrC) aerosols that are released from the combustion of fossil fu...
<div><p>Black carbon (BC) is important for climate forcing, and its effects on the Earth's radiative...
Black carbon (BC) is important for climate forcing, and its effects on the Earth's radiative balance...
Light absorption and radiative forcing of black carbon (BC) is influenced by both BC itself and its ...
Absorbing aerosols can strongly absorb solar radiation and have a profound impact on the global and ...
Black carbon (BC) is the dominant aerosol absorber of solar radiation in the atmosphere and is an im...
Black carbon (BC) absorption aerosol optical depth (AAODBC) defines the contribution of BC in light ...
Black carbon (BC) is the most important aerosol light-absorbing component, and its effect on radiati...