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Proceedings Paper

Satellite remote sensing of air quality in winter of Lanzhou
Author(s): Dawei Wang; Tao Han; Youyan Jiang; Lili Li; Shuyuan Ren
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Paper Abstract

Fine particulate matter (aerodynamic diameters of less than 2.5 μm, PM2.5) air pollution has become one of the global environmental problem, endangering the existence of residents living, climate, and public health. Estimation Particulate Matter (aerodynamic diameters of less than 10 μm, PM10) concentration and aerosol absorption was the key point in air quality and climate studies. In this study, we retrieve the Aerosol Optical Depth (AOD) from the Earth Observing System (EOS) and the Moderate Resolution Imaging Spectroradiometer (MODIS), and PM2.5, PM10 in winter on 2014 and 2015, using Extended Dense Dark Vegetation Algorithm and 6S radiation model to analysis the correlation. The result showed that at the condition of non-considering the influence of primary pollutants, the correlation of two Polynomials between aerosol optical depth and PM2.5 and PM10 was poor; taking the influence of the primary pollutants into consideration, the aerosol optical depth has a good correlation with PM2.5 and PM10. The version of PM10 by aerosol optical depth is higher than that of PM2.5, so the model can be used to realize the high precision inversion of winter PM10 in Lanzhou.

Paper Details

Date Published: 8 March 2018
PDF: 7 pages
Proc. SPIE 10611, MIPPR 2017: Remote Sensing Image Processing, Geographic Information Systems, and Other Applications, 106110M (8 March 2018); doi: 10.1117/12.2288184
Show Author Affiliations
Dawei Wang, Northwest Regional Climate Ctr. (China)
Tao Han, Northwest Regional Climate Ctr. (China)
Youyan Jiang, Northwest Regional Climate Ctr. (China)
Lili Li, Lanzhou Univ. (China)
Shuyuan Ren, Meteorological Bureau of Lanzhou City (China)


Published in SPIE Proceedings Vol. 10611:
MIPPR 2017: Remote Sensing Image Processing, Geographic Information Systems, and Other Applications
Nong Sang; Jie Ma; Zhong Chen, Editor(s)

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