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Environmental Process and Convergence Belt of Atmospheric NO2 Pollution in North China
Affiliation:College of Environmental & Energy Engineering, Beijing University of Technology, Beijing 100022;Chinese Research Academy of Environmental Sciences, Beijing 100012;Chinese Research Academy of Environmental Sciences, Beijing 100012;College of Environmental & Energy Engineering, Beijing University of Technology, Beijing 100022;National Satellite Meteorological Center, China Meteorological Administration, Beijing 100081;Chinese Research Academy of Environmental Sciences, Beijing 100012
Abstract:Both surface environmental monitoring and satellite remote sensing show that North China is one ofthe regions that are heavily polluted by NO2. Using the NO2monitoring data from 18 major cities inthe region, the tropospheric NO2 column density data from the Ozone Monitoring Instrument (OMI) onthe Aura satellite, and the observations from the China Meteorological Administration network, this paperanalyzes a regional NO2 pollution event in February 2007 over North China, examines the convergence of thepollutant, and identifies its correlation with the atmospheric background conditions. The results show thatdaily mean NO2 concentrations derived from surface observations are consistent with the mean values of theOMI measurements, with their correlation coefficient reaching 0.81. The correlations of NO2 concentrationwith general weather patterns and sequential changes of temperature structure from 925 hPa down to thesurface indicate that the weather fronts, high pressure and low pressure systems in the atmosphere play arole in changing the temporal and spatial evolutions of NO2 through removing, accumulating or convergingof the pollutant, respectively. It is also found that the eastern Taihang Mountains is most heavily pollutedby NO2 in North China. Based on a model that correlates NO2 column density with surface wind vector,the relation of the NO2 concentrations in six major cities in North China to the surrounding wind fieldis analyzed. The results show that the maximum wind field is associated with the highest frequency ofpollution events, and under certain large-scale atmospheric conditions together with the topographic effect,small- and meso-scale wind fields often act to transport and converge pollutants, and become a major factorin forming the heaviest NO2 pollution event in North China. Analysis of the causes for the severe NO2pollution event in this study may shed light on understanding, forecasting, and mitigating occurrences ofheavy NO2 pollution.
Keywords:atmospheric pollution   environmental process   convergence belt   satellite remote sensing
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