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Scanning vertical distributions of typical aerosols along the Yangtze River using elastic lidar.

Authors :
Fan, Shidong
Liu, Cheng
Xie, Zhouqing
Dong, Yunsheng
Hu, Qihou
Fan, Guangqiang
Chen, Zhengyi
Zhang, Tianshu
Duan, Jingbo
Zhang, Pengfei
Liu, Jianguo
Source :
Science of the Total Environment. Jul2018, Vol. 628, p631-641. 11p.
Publication Year :
2018

Abstract

In recent years, China has experienced heavy air pollution, especially haze caused by particulate matter (PM). The compositions, horizontal distributions, transport, and chemical formation mechanisms of PM and its precursors have been widely investigated in China based on near-ground measurements. However, the understanding of the distributions and physical and chemical processes of PM in the vertical direction remains limited. In this study, an elastic lidar was employed to investigate the vertical profiles of aerosols along the Yangtze River during the Yangtze River Campaign of winter 2015. Some typical aerosols were identified and some events were analyzed in three cases. Dust aerosols can be transported from the Gobi Desert to the Yangtze River basin across a long distance at both low and high altitudes in early December. The transport route was perpendicular to the ship track, suggesting that the dust aerosols may have affected a large area. Moreover, during transport, some dust was also affected by the areas below its transport route since some anthropogenic pollutants were mixed with the dust and changed some of its optical properties. Biomass-burning aerosols covering a distant range along the Yangtze River were identified. This result directly shows the impact areas of biomass-burning aerosols in some agricultural fields. Some directly emitted aerosol plumes were observed, and direct effects of such plumes were limited both temporally and spatially. In addition, an aerosol plume with very low linear depolarization ratios, probably formed through secondary processes, was also observed. These results can help us better understand aerosols in large spatial scales in China and can be useful to regional haze studies. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00489697
Volume :
628
Database :
Academic Search Index
Journal :
Science of the Total Environment
Publication Type :
Academic Journal
Accession number :
128648593
Full Text :
https://doi.org/10.1016/j.scitotenv.2018.02.099