Journal of Atmospheric and Environmental Optics, Volume. 19, Issue 3, 342(2024)

Analysis of a synergistic pollution process of PM2.5 and ozone in Beijing-Tianjin-Hebei Region

FANG Wensheng, CAO Nianwen*, and SHI Xinchi
Author Affiliations
  • Collaborative Innovation Center on Forecast and Evaluation of Meteorological Disasters,Nanjing University of Information Science and Technology, Nanjing 210044
  • show less
    References(41)

    [1] H Wang, J Y Xu, M Zhang et al. A study of the meteorological causes of a prolonged and severe haze episode in January 2013 over central-eastern China. Atmospheric Environment, 98, 146-157(2014).

    [2] F Lu, D Q Xu, Y B Cheng et al. Systematic review and meta-analysis of the adverse health effects of ambient PM2.5 and PM10 pollution in the Chinese population. Environmental Research, 136, 196-204(2015).

    [3] H Desqueyroux, J C Pujet, M Prosper et al. Short-term effects of low-level air pollution on respiratory health of adults suffering from moderate to severe asthma. Environmental Research, 89, 29-37(2002).

    [4] E Oksanen, T Holopainen. Responses of two birch(Betula pendula Roth) clones to different ozone profiles with similar AOT40 exposure. Atmospheric Environment, 35, 5245-5254(2001).

    [5] S X Huang. Air pollution and control: Past, present and future. Chinese Science Bulletin, 63, 895-919(2018).

    [6] H Li, L Peng, F Bi et al. Strategy of coordinated control of PM2.5 and ozone in China. Research of Environmental Sciences, 32, 1763-1778(2019).

    [7] S C Chang, C T Lee. Secondary aerosol formation through photochemical reactions estimated by using air quality monitoring data in Taipei City from 1994 to 2003. Atmospheric Environment, 41, 4002-4017(2007).

    [8] J Zhu, L Chen, H Liao et al. Correlations between PM2.5 and ozone over China and associated underlying reasons. Atmosphere, 10, 352(2019).

    [9] M W Jia, T L Zhao, X H Cheng et al. Inverse relations of PM2.5 and O3 in air compound pollution between cold and hot seasons over an urban area of East China. Atmosphere, 8, 59(2017).

    [10] K Li, D J Jacob, H Liao et al. A two-pollutant strategy for improving ozone and particulate air quality in China. Nature Geoscience, 12, 906-910(2019).

    [11] Y Mao, H D Zhang, B Zhu. Analysis of the continuous heavy pollution process in the winter of 2016 in Beijing, Tianjin, and Hebei. Environmental Science, 42, 3615-3621(2021).

    [12] H Y Lian, X Yang, P Zhang et al. Analysis of characteristics and causes of a typical haze pollution in Beijing in the winter of 2019. Environmental Science, 42, 2121-2132(2021).

    [13] Y T Wang, Q C Li, Z F Zheng et al. Research on the pollution characteristics and causality of haze-sand air pollution in Beijing in spring. Environmental Science, 40, 2582-2594(2019).

    [14] W Tang, S Wang, Y J He et al. Modeling of ozone pollution episode in Jing-Jin-Ji Area. Environmental Impact Assessment, 39, 7-12(2017).

    [15] X Q Wang, T S Zhang, C L Pei et al. Monitoring of vertical distribution of ozone using differential absorption lidar in Guangzhou. Chinese Journal of Lasers, 46, 279-287(2019).

    [16] C L Pei, Y T Xie, X Chen et al. Analysis of a typical ozone pollution process in Guangzhou in winter. Environmental Science, 43, 4305-4315(2022).

    [17] H Chen, Q Li, Y Li et al. Monitoring and analysis of the spatio-temporal change characteristics of the PM2.5 concentration over Beijing-Tianjin-Hebei and its surrounding regions based on remote sensing. Environmental Science, 40, 33-43(2019).

    [18] Y Z Li. Study on the Characteristics of Haze and the Controlling Meteorological Factors in Four Polluted Regions of China(2020).

    [19] Y Y Zhu, B Liu, H L Gui et al. Characteristics of ozone pollution, meteorological impact, and evaluation of forecasting results based on a neural network model in Beijing-Tianjin-Hebei region. Environmental Science, 43, 3966-3976(2022).

    [20] Z Meng, D Dabdub, J H Seinfeld. Chemical coupling between atmospheric ozone and particulate matter. Science, 277, 116-119(1997).

    [21] H L Li. Study on the Synergistic Patterns and Drivers of PM2.5 and Ozone Pollution in Eastern China(2021).

    [22] Y H Luo, T L Zhao, K Meng et al. Comparative analysis of the relationship between PM2.5and O3 in plain and mountainous cities in North China. China Environmental Science, 41, 3981-3989(2021).

    [23] Y J Yu, X Y Meng, Z Wang et al. Driving factors of the significant increase in surface ozone in the Beijing-Tianjin-Hebei Region, China, during 2013―2018. Environmental Science, 41, 106-114(2020).

    [24] J J Sun, L Huang, K J Gong et al. Correlation between surface PM2.5 and ozone during 2014―2019 in Beijing and Nanjing. Journal of Nanjing University of Information Science & Technology (Natural Science Edition), 12, 656-664(2020).

    [25] Z C Mao, J M Xu, D D Yang et al. Analysis of characteristics and meteorological causes of PM2.5-O3 compound pollution in Shanghai. China Environmental Science, 39, 2730-2738(2019).

    [26] Y J Zhang, T L Zhao, C Z Yin et al. Seasonal variation of the relationship between surface PM2.5 and O3 concentrations in Xuzhou. China Environmental Science, 39, 2267-2272(2019).

    [27] M R Cui. Analysis of the Characteristics and Influencing Factors of Ozone Temporal and Spatial Distribution in Beijing-Tianjin-Hebei(2020).

    [28] Y Qiu, L J Li, L Jiang et al. Analysis of a pollution process in the Beijing-Tianjin-Hebei Region based on satellite and surface observations. Environmental Science, 40, 1111-1119(2019).

    [31] H H Li, K Zhang, C Niu et al. PM2.5 and O3 pollution characteristics in Baoding City. Research of Environmental Sciences, 35, 683-690(2022).

    [32] S S Li, N L Cheng, T Pan et al. Analysis of a Heavy Air Pollution Event in Beijing-Tianjin-Hebei Region in October 2014. Environmental Science & Technology, 39, 162-169(2016).

    [33] X Q Xu, S J Miao, L Zhang et al. A case study of ozone pollution in surface layer and upper boundary layer in Zhuhai based on lidar observations. Acta Scientiae Circumstantiae, 42, 331-338(2022).

    [34] Z Liu, D Liu, J Huang et al. Airborne dust distributions over the Tibetan Plateau and surrounding areas derived from the first year of CALIPSO lidar observations. Atmospheric Chemistry and Physics, 8, 5045-5060(2008).

    [35] X X Gao, Y Chen, L Zhang et al. Study on temporal and spatial distribution of global PBL height based on CALIPSO satellite data. Journal of Lanzhou University (Natural Sciences), 54, 646-653(2018).

    [36] Q Sun, X H Fan, X A Xia. Observation and analysis of aerosol vertical distribution characteristics in North China Plain. Meteorological and Environmental Sciences, 39, 26-33(2016).

    [37] X H Yin, S Y Shi, M Y Zhang et al. Change characteristic of Beijing dust weather and its sand-dust source areas. Plateau Meteorology, 26, 1039-1044(2007).

    [38] H B Dai, J Zhu, H Liao et al. Co-occurrence of ozone and PM2.5 pollution in the Yangtze River Delta over 2013―2019: Spatiotemporal distribution and meteorological conditions. Atmospheric Research, 249, 105363(2021).

    [39] M R Cui, L Y Bai, J Z Feng et al. Analysis of temporal and spatial variations of ozone coupling with dynamics of meteorological factors in the Beijing-Tianjin-Tangshan Region. Acta Scientiae Circumstantiae, 41, 373-385(2021).

    [40] H Li, S L Wang, W J Zhang et al. Characteristics and influencing factors of urban air quality in Beijing-Tianjin-Hebei and its surrounding areas ('2+26' cities). Research of Environmental Sciences, 34, 172-184(2021).

    [41] Y Li, Y B Lu, Y Bai et al. Study of meteorological conditions and weather types based on ozone pollution characteristics in Tianjin. Environmental Monitoring in China, 38, 56-64(2022).

    [42] M Shao, W J Wang, B Yuan et al. Quantifying the role of PM2.5 dropping in variations of ground-level ozone: Inter-comparison between Beijing and Los Angeles. Science of the Total Environment, 788, 147712(2021).

    [43] B W Chu, Q X Ma, J Liu et al. Air pollutant correlations in China: secondary air pollutant responses to NOx and SO2 control. Environmental Science & Technology Letters, 7, 695-700(2020).

    Tools

    Get Citation

    Copy Citation Text

    Wensheng FANG, Nianwen CAO, Xinchi SHI. Analysis of a synergistic pollution process of PM2.5 and ozone in Beijing-Tianjin-Hebei Region[J]. Journal of Atmospheric and Environmental Optics, 2024, 19(3): 342

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category:

    Received: Oct. 9, 2022

    Accepted: --

    Published Online: Jul. 17, 2024

    The Author Email: CAO Nianwen (nwcao@nuist.edu.cn)

    DOI:10.3969/j.issn.1673-6141.2024.03.007

    Topics