Spatio-temporal evolution and the influencing factors of PM2.5 in China between 2000 and 2015

High concentrations of PM 2.5 are universally considered as a main cause for haze formation. Therefore, it is important to identify the spatial heterogeneity and influencing factors of PM 2.5 concentrations for regional air quality control and management. In this study, PM 2.5 data from 2000 to 2015...

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Veröffentlicht in:Journal of geographical sciences 2019-02, Vol.29 (2), p.253-270
Hauptverfasser: Zhou, Liang, Zhou, Chenghu, Yang, Fan, Che, Lei, Wang, Bo, Sun, Dongqi
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Sprache:eng
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Zusammenfassung:High concentrations of PM 2.5 are universally considered as a main cause for haze formation. Therefore, it is important to identify the spatial heterogeneity and influencing factors of PM 2.5 concentrations for regional air quality control and management. In this study, PM 2.5 data from 2000 to 2015 was determined from an inversion of NASA atmospheric remote sensing images. Using geo-statistics, geographic detectors, and geo-spatial analysis methods, the spatio-temporal evolution patterns and driving factors of PM 2.5 concentration in China were evaluated. The main results are as follows. (1) In general, the average concentration of PM 2.5 in China increased quickly and reached its peak value in 2006; subsequently, concentrations remained between 21.84 and 35.08 μg/m 3 . (2) PM 2.5 is strikingly heterogeneous in China, with higher concentrations in the north and east than in the south and west. In particular, areas with relatively high PM 2.5 concentrations are primarily in four regions, the Huang-Huai-Hai Plain, Lower Yangtze River Delta Plain, Sichuan Basin, and Taklimakan Desert. Among them, Beijing-Tianjin-Hebei Region has the highest concentration of PM 2.5 . (3) The center of gravity of PM 2.5 has generally moved northeastward, which indicates an increasingly serious haze in eastern China. High-value PM 2.5 concentrations have moved eastward, while low-value PM 2.5 has moved westward. (4) Spatial autocorrelation analysis indicates a significantly positive spatial correlation. The “High-High” PM 2.5 agglomeration areas are distributed in the Huang-Huai-Hai Plain, Fenhe-Weihe River Basin, Sichuan Basin, and Jianghan Plain regions. The “Low-Low” PM 2.5 agglomeration areas include Inner Mongolia and Heilongjiang, north of the Great Wall, Qinghai-Tibet Plateau, and Taiwan, Hainan, and Fujian and other southeast coastal cities and islands. (5) Geographic detection analysis indicates that both natural and anthropogenic factors account for spatial variations in PM 2.5 concentration. Geographical location, population density, automobile quantity, industrial discharge, and straw burning are the main driving forces of PM 2.5 concentration in China.
ISSN:1009-637X
1861-9568
DOI:10.1007/s11442-019-1595-0