Nature Environment and Pollution Technology (Sep 2021)

Spatial and Temporal Characteristics of PM2.5 Sources and Pollution Events in a Low Industrialized City

  • R. Xu, Q. Tian, H. Wan, J. Wen, Q. Zhang and Y. Zhang

DOI
https://doi.org/10.46488/NEPT.2021.v20i03.016
Journal volume & issue
Vol. 20, no. 3
pp. 1087 – 1096

Abstract

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In recent years, cities in southern China have experienced severe air pollution, despite having few sources of pollutants. To study the pollution characteristics of PM2.5 in these “low industrialized” cities, a numerical method based on the HYSPLIT4 Model and Kriging Spatial Interpolation Technology was established. Simulation results showed that the PM2.5 pollution in Guilin was affected by both internal and external sources. The backward air mass trajectory from July 2017 to June 2018 was simulated using the HYSPLIT model. The cluster analysis results indicated that the direction of trajectory  accounted for 63.09% of the air pollution in the city. The average concentration of PM2.5 pollution was 45.94 μg.m-3. The pollutant originated from the “Xiang-Gui Corridor.” The location of the sources was collocated with high industry regions. The spatial characteristics of the four pollution processes in the winter of 2017 were analyzed using a spatial interpolation method. The results showed that the transport of air masses in the direction of trajectory  was obstructed by a mountain system in the northeast. Therefore, two air pollution accumulation centers and a topographic weakening zone dominated by internal and external sources were formed. It can be inferred that the air pollution in Guilin is affected by both internal and external factors. These results provide important theoretical and technical support for regional air pollution control and environmental protection.

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