Carbonaceous aerosols including organic carbon and black carbon have significant implications for both climate and air quality. In the current global climate or chemical transport models, a fixed hydrophobic-to-hydrophilic conversion lifetime for carbonaceous aerosol (τ) is generally assumed, which is usually around one day. We have implemented a new detailed aging scheme for carbonaceous aerosols in a chemical transport model (GEOS-Chem) to account for both the chemical oxidation and the physical condensation-coagulation effects, where τ is affected by local atmospheric environment including atmospheric concentrations of water vapor, ozone, hydroxyl radical and sulfuric acid. The updated τ exhibits large spatial and temporal variations wit...
The microphysical properties of black carbon-containing particles change due to interaction with oth...
Aerosol particles have the ability to alter our climate by direct and indirect effects. Black carbon...
Our understanding of the global black carbon (BC) cycle is essentially qualitative due to uncertaint...
Carbonaceous aerosols including organic carbon and black carbon have significant implications for bo...
We develop and examine a microphysics-based black carbon (BC) aerosol aging scheme that accounts for...
Aerosol and ozone are important components of the atmosphere, which play essential roles in affectin...
We develop and examine a microphysics-based black carbon (BC) aerosol aging scheme that accounts fo...
International audienceBlack carbon (BC) particles in the atmosphere have important impacts on climat...
Black carbon (BC) aerosol strongly absorbs visible light and therefore has a warming impact on clima...
Accurate representation of black carbon (BC) concentrations in climate models is a key prerequisite ...
International audienceThe effect of black carbon (BC) on air quality and the climate is still unclea...
The effects of aerosols on the climate system are a major source of uncertainty in past and future s...
The global distribution of carbonaceous aerosols is simulated online in the Goddard Institute for Sp...
Mixing state of black carbon (BC) particles has significant impacts on their radiative forcing, visi...
Thesis: Ph. D. in Environmental Chemistry, Massachusetts Institute of Technology, Department of Civi...
The microphysical properties of black carbon-containing particles change due to interaction with oth...
Aerosol particles have the ability to alter our climate by direct and indirect effects. Black carbon...
Our understanding of the global black carbon (BC) cycle is essentially qualitative due to uncertaint...
Carbonaceous aerosols including organic carbon and black carbon have significant implications for bo...
We develop and examine a microphysics-based black carbon (BC) aerosol aging scheme that accounts for...
Aerosol and ozone are important components of the atmosphere, which play essential roles in affectin...
We develop and examine a microphysics-based black carbon (BC) aerosol aging scheme that accounts fo...
International audienceBlack carbon (BC) particles in the atmosphere have important impacts on climat...
Black carbon (BC) aerosol strongly absorbs visible light and therefore has a warming impact on clima...
Accurate representation of black carbon (BC) concentrations in climate models is a key prerequisite ...
International audienceThe effect of black carbon (BC) on air quality and the climate is still unclea...
The effects of aerosols on the climate system are a major source of uncertainty in past and future s...
The global distribution of carbonaceous aerosols is simulated online in the Goddard Institute for Sp...
Mixing state of black carbon (BC) particles has significant impacts on their radiative forcing, visi...
Thesis: Ph. D. in Environmental Chemistry, Massachusetts Institute of Technology, Department of Civi...
The microphysical properties of black carbon-containing particles change due to interaction with oth...
Aerosol particles have the ability to alter our climate by direct and indirect effects. Black carbon...
Our understanding of the global black carbon (BC) cycle is essentially qualitative due to uncertaint...