HR: 14:55h
AN: A13G-06 [Abstracts]
TI: Spectral Signature of Radiative Forcing by East Asian Dust-Soot Mixture
AU: * Zhu, A
EM: azhu@ucsd.edu
AF: Center for Clouds, Chemistry and Climate (C4), Scripps Institution of Oceanography,
University of California, San Diego, 9500 Gilman Drive, La Jolla, CA 92093, United States
AU: Ramanathan, V
EM: vramanathan@ucsd.edu
AF: Center for Clouds, Chemistry and Climate (C4), Scripps Institution of Oceanography,
University of California, San Diego, 9500 Gilman Drive, La Jolla, CA 92093, United States
AB:
The Pacific Dust Experiment (PACDEX) provides the first detailed sampling of dust-soot mixtures from the
western Pacific to the eastern Pacific Ocean. The data includes down and up spectral irradiance, mixing state of
dust and soot, and other aerosol properties. This study attempts to simulate the radiative forcing by dust-soot
mixtures during the experimental period. The MODTRAN band model was employed to investigate the spectral
signatures of solar irradiance change induced by aerosols at moderate spectral resolutions. For the short wave
band (300-1100nm) used in this study, the reduction of downward irradiance at surface by aerosols greatly
enhances with increasing wavelength in the UV band (300-400nm), reaches a maximum in the blue band, then
gradually decreases toward the red band. In the near-IR band (700-1100nm), irradiance reduction by aerosols
shows great fluctuations in the band with center wavelength at around 940nm, 820nm, 720nm, 760nm, 690nm,
where the aerosol effect is overwhelmed by the water vapor and O2 absorptions. The spectral pattern of
irradiance reduction varies for different aerosol species. The maximum reduction lies at around 450nm for soot,
and shifting to about 490nm for East Asian mineral dust. It's worth noting that although soot aerosols reduce
more irradiance than East Asian dust in the UV and blue band, the impact of dust to the irradiance exceeds that by
soot at the longer wavelength band (i.e. around 550nm). The reduction of irradiance by East Asian dust (soot) in
the UV band, visible band, and near-IR accounts for about 6% (10%), 56% (64%), and 38% (26%) of total
irradiance reduction. As large amount of soot aerosols are involved during the long range transport of East Asian
dust, the optical properties of dust aerosols are modified with different mixing state with soot, the spectral pattern
of the irradiance reduction will be changed. The study of aerosol forcing at moderate spectral resolutions has the
potential application for research on aerosol mixing state and its climate impacts.
DE: 3359 Radiative processes
SC: Atmospheric Sciences [A]
MN: 2007 Fall Meeting