Abstract
Nocturnal reactive nitrogen compounds play an important role in regional air pollution. Here we present the measurements of dinitrogen pentoxide (N2O5) associated with nitryl chloride (ClNO2) and particulate nitrate ( p NO3ĝ') at a suburban site of Beijing in the summer of 2016. High levels of N2O5 and ClNO2 were observed in the outflow of the urban Beijing air masses, with 1ĝ€min average maxima of 937 and 2900ĝ€pptv, respectively. The N2O5 uptake coefficients, 3, and ClNO2 yield, f, were experimentally determined from the observed parameters. The N2O5 uptake coefficient ranged from 0.012 to 0.055, with an average of 0.034ĝ€±ĝ€0.018, which is in the upper range of previous field studies reported in North America and Europe but is a moderate value in the North China Plain (NCP), which reflects efficient N2O5 heterogeneous processes in Beijing. The ClNO2 yield exhibited high variability, with a range of 0.50 to unity and an average of 0.73ĝ€±ĝ€0.25. The concentration of the nitrate radical (NO3) was calculated assuming that the thermal equilibrium between NO3 and N2O5 was maintained. In NO x -rich air masses, the oxidation of nocturnal biogenic volatile organic compounds (BVOCs) was dominated by NO3 rather than O3. The production rate of organic nitrate (ON) via NO3ĝ€+ĝ€BVOCs was significant, with an average of 0.10ĝ€±ĝ€0.07ĝ€ppbvĝ€†hĝ'1. We highlight the importance of NO3 oxidation of VOCs in the formation of ON and subsequent secondary organic aerosols in summer in Beijing..
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CITATION STYLE
Wang, H., Lu, K., Guo, S., Wu, Z., Shang, D., Tan, Z., … Zhang, Y. (2018). Efficient N2O5 uptake and NO3 oxidation in the outflow of urban Beijing. Atmospheric Chemistry and Physics, 18(13), 9705–9721. https://doi.org/10.5194/acp-18-9705-2018
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