The mixture of mineral dust with biomass burning or urban-industrial aerosols presents significant differences in optical properties when compared to those of the individual constituents, leading to different impacts on solar radiation levels. This effect is assessed by estimating the direct radiative forcing (ΔF) of these aerosols from solar flux models using the radiative parameters derived from the Aerosol Robotic Network (AERONET). These data reveal that, in oceanic and vegetative covers (surface albedo (SA) 0.30 are not present in East Asia region. At the bottom of atmosphere (BOA) the maximum ΔF values are associated with the highest AOD levels obtained for the mixture of mineral dust and biomass burning aerosols (−130 ± 44 Wm−2 with...
We use Aerosol Robotic Network (AERONET) observation data to empirically determine how natural and a...
We report on measurements of atmospheric transmission (ATT) and aerosol optical depth (AODT) made at...
We report on measurements of atmospheric transmission (ATT) and aerosol optical depth (AODT) made at...
The mixture of mineral dust with biomass burning or urban-industrial aerosols presents significant d...
The mixture of mineral dust with biomass burning or urban-industrial aerosols presents significant d...
The mixture of mineral dust with biomass burning or urban-industrial aerosols presents significant d...
The shortwave radiative forcing (1F) and the radiative forcing efficiency (1Feff) of natural and an...
The shortwave radiative forcing (&Delta;<i>F</i>) and the radiative forcing efficien...
The shortwave radiative forcing (1F) and the radiative forcing efficiency (1Feff) of natural and an...
The shortwave radiative forcing (1F) and the radiative forcing efficiency (1Feff) of natural and an...
The shortwave radiative forcing (1F) and the radiative forcing efficiency (1Feff) of natural and an...
The influence of mineral dust on ultraviolet energy transfer is studied for two different mineralogi...
The influence of mineral dust on ultraviolet energy transfer is studied for two different mineralogi...
The influence of mineral dust on ultraviolet energy transfer is studied for two different mineralogi...
The influence of mineral dust on ultraviolet energy transfer is studied for two different mineralogi...
We use Aerosol Robotic Network (AERONET) observation data to empirically determine how natural and a...
We report on measurements of atmospheric transmission (ATT) and aerosol optical depth (AODT) made at...
We report on measurements of atmospheric transmission (ATT) and aerosol optical depth (AODT) made at...
The mixture of mineral dust with biomass burning or urban-industrial aerosols presents significant d...
The mixture of mineral dust with biomass burning or urban-industrial aerosols presents significant d...
The mixture of mineral dust with biomass burning or urban-industrial aerosols presents significant d...
The shortwave radiative forcing (1F) and the radiative forcing efficiency (1Feff) of natural and an...
The shortwave radiative forcing (&Delta;<i>F</i>) and the radiative forcing efficien...
The shortwave radiative forcing (1F) and the radiative forcing efficiency (1Feff) of natural and an...
The shortwave radiative forcing (1F) and the radiative forcing efficiency (1Feff) of natural and an...
The shortwave radiative forcing (1F) and the radiative forcing efficiency (1Feff) of natural and an...
The influence of mineral dust on ultraviolet energy transfer is studied for two different mineralogi...
The influence of mineral dust on ultraviolet energy transfer is studied for two different mineralogi...
The influence of mineral dust on ultraviolet energy transfer is studied for two different mineralogi...
The influence of mineral dust on ultraviolet energy transfer is studied for two different mineralogi...
We use Aerosol Robotic Network (AERONET) observation data to empirically determine how natural and a...
We report on measurements of atmospheric transmission (ATT) and aerosol optical depth (AODT) made at...
We report on measurements of atmospheric transmission (ATT) and aerosol optical depth (AODT) made at...