Paper
12 May 2005 Observations of Asian dust and air-pollution aerosols using a network of ground-based Mie-scattering lidars (Invited Paper)
Nobuo Sugimoto, Atsushi Shimizu, Ichiro Matsui, Xuhui Dong, Shuli Zhao, Jun Zhou, Choo-Hie Lee, Itsushi Uno
Author Affiliations +
Proceedings Volume 5832, Optical Technologies for Atmospheric, Ocean, and Environmental Studies; (2005) https://doi.org/10.1117/12.619520
Event: Optical Technologies for Atmospheric, Ocean, and Environmental Studies, 2004, Beijing, China
Abstract
We conduct network observations using ground-based Mie-scattering lidars in Asian region in cooperation with various research organizations and Universities. Primary purpose of the network is for studying generation and transport of Asian dust, observing air pollution and biomass burning aerosols for atmospheric environment studies, observing aerosol vertical distribution and temporal variation for atmospheric radiation studies and climatology, and for validation of chemical transport models and satellite remote sensors. At present, lidars are operated continuously at twelve locations in Japan, China, Korea, and Thailand. The lidars used in the network are two-wavelength (532 nm and 1064 nm) Mie-scattering lidars having depolarization measurement function at 532nm. Flashlamp-pumped compact Nd:YAG lasers are used as the light source. We developed a method for estimating the extinction coefficient of non-spherical air-pollution aerosols separately using the depolarization ratio. This method is based on a simple assumption that observed aerosols are external mixture of two types of aerosols, but it is practically very useful especially for inter-comparison with chemical transport models. We also studied a method for characterizing aerosols using the depolarization ratio and the wavelength dependence of the backscatter coefficient. Asian dust phenomena were observed with the network since spring of 2001. The frequency of the occurrence of dust events and the vertical distribution characteristics were analyzed. Also, seasonal and year-to-year variations were analyzed. At the same time, transport of dust and air-pollution aerosols were studied by comparing the temporal variation of lidar profiles with chemical transport model results.
© (2005) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Nobuo Sugimoto, Atsushi Shimizu, Ichiro Matsui, Xuhui Dong, Shuli Zhao, Jun Zhou, Choo-Hie Lee, and Itsushi Uno "Observations of Asian dust and air-pollution aerosols using a network of ground-based Mie-scattering lidars (Invited Paper)", Proc. SPIE 5832, Optical Technologies for Atmospheric, Ocean, and Environmental Studies, (12 May 2005); https://doi.org/10.1117/12.619520
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Cited by 2 scholarly publications.
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KEYWORDS
Aerosols

LIDAR

Mass attenuation coefficient

Atmospheric modeling

Chemical analysis

Atmospheric particles

Backscatter

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