Transport Characteristics of PAN and O 3 in the Lower Atmosphere of the Boundary Layer in Tianjin in Summer

被引:6
作者
Yao Q. [1 ,2 ,3 ]
Ma Z.-Q. [4 ]
Lin W.-L. [5 ]
Liu J.-L. [1 ]
Wang X.-J. [3 ]
Cai Z.-Y. [3 ]
Han S.-Q. [1 ]
机构
[1] Tianjin Institute of Meteorological Science, Tianjin
[2] Key Laboratory of Atmospheric Chemistry, China Meteorological Administration, Beijing
[3] Tianjin Environmental Meteorology Center, Tianjin
[4] Environmental Meteorology Forecast Center of Beijing-Tianjin-Hebei, Beijing
[5] College of Life and Environmental Sciences, Minzu University of China, Beijing
来源
Huanjing Kexue/Environmental Science | 2019年 / 40卷 / 01期
关键词
Boundary layer; O [!sub]3[!/sub; Peroxyacetyl nitrate(PAN); Tianjin; Transport characteristics;
D O I
10.13227/j.hjkx.201805070
中图分类号
学科分类号
摘要
The volume concentration of peroxyacetyl nitrate (PAN) and O 3 in the atmosphere were measured at the Tianjin Meteorological Tower in summer 2017 by using the online instrument with meteorological parameters and back trajectory analysis to analyze the delivery characteristics of PAN and O 3 . The average volume concentrations of PAN and O 3 during the observational period are (0.73±0.56)×10 -9 and (53±25)×10 -9 , respectively. The hourly maximum concentrations of PAN and O 3 are 3.49×10 -9 and 137×10 -9 . The volume concentrations of PAN and O 3 show pronounced diurnal profiles, which are both characterized by much higher values at daytime than at nighttime. In addition, the correlation coefficient between PAN and O 3 at daytime (R 2 =0.52) is notably higher than that at nighttime (R 2 =0.21). The air masses originating from the south show the highest volume concentration of PAN and O 3 , with the lowest volume concentration originating from the east. The wind rose plot and cluster analysis of the back trajectories show that the highest concentration of pollutants mainly originates in the southwest. The air massess originating from the east and circulating through the Bohai Sea and coastal areas of the Hebei and Liaoning provinces show the lowest volume concentrations of PAN and O 3 . The transportation within the boundary layer plays an important role in the concentration distribution of PAN and O 3 . © 2019, Science Press. All right reserved.
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页码:67 / 75
页数:8
相关论文
共 33 条
[1]  
Stephens E.R., Hanst P.L., Doerr R.C., Et al., Reactions of nitrogen dioxide and organic compounds in air, Industrial & Engineering Chemistry, 48, 9, pp. 1498-1504, (1956)
[2]  
Liu Z., Wang Y.H., Gu D.S., Et al., Evidence of reactive aromatics as a major source of peroxy acetyl nitrate over China, Environmental Science & Technology, 44, 18, pp. 7017-7022, (2010)
[3]  
Honrath R.E., Hamlin A.J., Merrill J.T., Transport of ozone precursors from the Arctic troposphere to the North Atlantic region, Journal of Geophysical Research: Atmospheres, 101, D22, pp. 29335-29351, (1996)
[4]  
Kondo Y., Koike M., Kawakami S., Et al., Profiles and partitioning of reactive nitrogen over the Pacific Ocean in winter and early spring, Journal of Geophysical Research: Atmospheres, 102, D23, pp. 28405-28424, (1997)
[5]  
Singh H.B., Herlth D., Kolyer R., Et al., Reactive nitrogen and ozone over the western Pacific: distribution, partitioning, and sources, Journal of Geophysical Research: Atmospheres, 101, D1, pp. 1793-1808, (1996)
[6]  
Hudman R.C., Jacob D.J., Cooper O.R., Et al., Ozone production in transpacific Asian pollution plumes and implications for ozone air quality in California, Journal of Geophysical Research: Atmospheres, 109, D23, (2004)
[7]  
McFadyen G.G., Cape J.N., Peroxyacetyl nitrate in eastern Scotland, Science of the Total Environment, 337, 1-3, pp. 213-222, (2005)
[8]  
Kleindienst T.E., Recent developments in the chemistry and biology of peroxyacetyl nitrate, Research on Chemical Intermediates, 20, 3-5, pp. 335-384, (1994)
[9]  
Grosjean D., Woodhouse L.F., Peroxyacetyl nitrate and peroxypropionyl nitrate during SCOS 97-NARSTO, Environmental Science & Technology, 35, 20, pp. 4007-4014, (2001)
[10]  
Jiang Z., Worden J.R., Payne V.H., Et al., Ozone export from East Asia: the role of PAN, Journal of Geophysical Research: Atmospheres, 121, 11, pp. 6555-6563, (2016)