[1] MONKS P S, ARCHIBALD A T, COLETTE A, et al. Tropospheric ozone and its precursors from the urban to the global scale from air quality to short-lived climate forcer[J]. Atmospheric Chemistry and Physics, 2015, 15(15): 8889-8973. doi: 10.5194/acp-15-8889-2015
[2] SU D, CHEN L, WANG J, et al. Long-and short-term health benefits attributable to PM2.5 constituents reductions from 2013 to 2021: A spatiotemporal analysis in China[J]. Science of the Total Environment, 2024, 907: 168184.
[3] ATKINSON R. Atmospheric chemistry of VOCs and NOx[J]. Atmospheric Environment, 2000, 34(12-14): 2063-2101. doi: 10.1016/S1352-2310(99)00460-4
[4] HUANG R J, ZHANG Y, BOZZETTI C, et al. High secondary aerosol contribution to particulate pollution during haze events in China[J]. Nature, 2014, 514(7521): 218-222. doi: 10.1038/nature13774
[5] PUI D Y H, CHEN S C, ZUO Z. PM2.5 in China: Measurements, sources, visibility and health effects, and mitigation[J]. Particuology, 2014, 13: 1-26.
[6] KAN H, CHEN R, TONG S. Ambient air pollution, climate change, and population health in China[J]. Environment International, 2012, 42: 10-19. doi: 10.1016/j.envint.2011.03.003
[7] WANG L, ZHAO B, ZHANG Y, et al. Correlation between surface PM2.5 and O3 in eastern China during 2015–2019: Spatiotemporal variations and meteorological impacts[J]. Atmospheric Environment, 2023, 294: 119520. doi: 10.1016/j.atmosenv.2022.119520
[8] 姜华, 高健, 李红, 等. 我国大气污染协同防控理论框架初探[J]. 环境科学研究, 2022, 35(3): 601-610. JIANG H, GAO J, LI H, et al. A preliminary exploration of the theoretical framework for coordinated air pollution prevention and control in China[J]. Environmental Science Research, 2022, 35(3): 601-610(in Chinese).
[9] CHU B, MA Q, LIU J, et al. Air pollutant correlations in China: secondary air pollutant responses to NOX and SO2 control[J]. Environmental Science & Technology Letters, 2020, 7(10): 695-700.
[10] LOU S, LIAO H, ZHU B. Impacts of aerosols on surface-layer ozone concentrations in China through heterogeneous reactions and changes in photolysis rates[J]. Atmospheric Environment, 2014, 85: 123-138. doi: 10.1016/j.atmosenv.2013.12.004
[11] LIU Q, LIU T, CHEN Y, et al. Effects of aerosols on the surface ozone generation via a study of the interaction of ozone and its precursors during the summer in Shanghai, China[J]. Science of the total environment, 2019, 675: 235-246. doi: 10.1016/j.scitotenv.2019.04.121
[12] GAO J, ZHU B, XIAO H, et al. Effects of black carbon and boundary layer interaction on surface ozone in Nanjing, China[J]. Atmospheric Chemistry and Physics, 2018, 18(10): 7081-7094. doi: 10.5194/acp-18-7081-2018
[13] 杨欣, 杨元琴, 李红, 等. 基于气象条件指数的我国重点区域PM2.5和臭氧复合污染气象影响评估[J]. 环境科学, 2023, 44(12): 6433-6440. YANG X, YANG Y Q, LI H, et al. Meteorological impact assessment of PM2.5 and O3 complex pollution in key regions of China based on meteorological conditions index[J]. Environmental Science, 2023, 44(12): 6433-6440(in Chinese).
[14] XUE L K, WANG T, GAO J, et al. Ground-level ozone in four Chinese cities: precursors, regional transport and heterogeneous processes[J]. Atmospheric Chemistry and Physics, 2014, 14(23): 13175-13188. doi: 10.5194/acp-14-13175-2014
[15] ZOU Y, DENG X J, ZHU D, et al. Characteristics of 1 year of observational data of VOCs, NOX and O3 at a suburban site in Guangzhou, China[J]. Atmospheric Chemistry and Physics, 2015, 15(12): 6625-6636. doi: 10.5194/acp-15-6625-2015
[16] XU Y, SHEN A, JIN Y, et al. A quantitative assessment and process analysis of the contribution from meteorological conditions in an O3 pollution episode in Guangzhou, China[J]. Atmospheric Environment, 2023, 303: 119757. doi: 10.1016/j.atmosenv.2023.119757
[17] CHEN Z, CHEN D, ZHAO C, et al. Influence of meteorological conditions on PM2.5 concentrations across China: A review of methodology and mechanism[J]. Environment international, 2020, 139: 105558. doi: 10.1016/j.envint.2020.105558
[18] LI Y, WANG T, LI M, et al. Exploring the role of aerosol-ozone interactions on O3 surge and PM2.5 decline during the clean air action period in Eastern China 2014–2020[J]. Atmospheric Research, 2024: 107294.
[19] WANG L, LIU B, LI R, et al. Prediction of daily PM2.5 and ozone based on high-density weather stations in China: Nonlinear effects of meteorology, human and ecosystem health risks[J]. Atmospheric Research, 2023, 293: 106889. doi: 10.1016/j.atmosres.2023.106889
[20] DAI H, LIAO H, WANG Y, et al. Co-occurrence of ozone and PM2.5 pollution in urban/non-urban areas in eastern China from 2013 to 2020: Roles of meteorology and anthropogenic emissions[J]. Science of The Total Environment, 2024: 171687.
[21] ZHAN J, ZHENG F, XIE R, et al. The role of NOX in Co-occurrence of O3 and PM2.5 pollution driven by wintertime east Asian monsoon in Hainan[J]. Journal of Environmental Management, 2023, 345: 118645. doi: 10.1016/j.jenvman.2023.118645
[22] WANG S, ZHAO Y, HAN Y, et al. Spatiotemporal variation, source and secondary transformation potential of volatile organic compounds (VOCs) during the winter days in Shanghai, China[J]. Atmospheric Environment, 2022, 286: 119203. doi: 10.1016/j.atmosenv.2022.119203
[23] LIANG S, GAO S, WANG S, et al. Characteristics, sources of volatile organic compounds, and their contributions to secondary air pollution during different periods in Beijing, China[J]. Science of The Total Environment, 2023, 858: 159831. doi: 10.1016/j.scitotenv.2022.159831
[24] SILLMAN S. The relation between ozone, NOx and hydrocarbons in urban and polluted rural environments[J]. Atmospheric Environment, 1999, 33(12): 1821-1845. doi: 10.1016/S1352-2310(98)00345-8
[25] CHU W, LI H, JI Y, et al. Research on ozone formation sensitivity based on observational methods: Development history, methodology, and application and prospects in China[J]. Journal of Environmental Sciences, 2024, 138: 543-560. doi: 10.1016/j.jes.2023.02.052
[26] 唐家翔, 符传博, 杨仁勇, 等. 海口市PM2.5演变特征及其与气象因素的关系[J]. 环境污染与防治, 2018, 40(4): 445-449,454. doi: 10.15985/j.cnki.1001-3865.2018.04.016 TANG J, FU C, YANG R, et al. Evolution characteristics of PM2.5 and its relationship with meteorological factors in Haikou[J]. Environmental Pollution and Control, 2018, 40(4): 445-449,454. doi: 10.15985/j.cnki.1001-3865.2018.04.016
[27] 汤驰, 韩静, 李雨珊, 等. 海口市臭氧污染及气象条件特征[J]. 中国环境监测, 2022, 38(6): 125-132. doi: 10.19316/j.issn.1002-6002.2022.06.13 TANG C, HAN J, LI Y, et al. Ozone pollution and meteorological characteristics in Haikou[J]. China Environmental Monitoring, 2022, 38(6): 125-132. doi: 10.19316/j.issn.1002-6002.2022.06.13
[28] 蔡今子, 王韶辉, 胡佳欣. 海口市臭氧污染特征及影响因素分析数据集(2016–2020)[J]. 全球变化数据学报(中英文), 2022, 6(3): 448-458,625-635. CAI J, WANG S, HU J. Ozone pollution characteristics and influencing factors in Haikou: A dataset (2016–2020)[J]. Journal of Global Change Data and Science, 2022, 6(3): 448-458,625-635(in Chinese).
[29] CARTER W P L. Development of ozone reactivity scales for volatile organic compounds[J]. Air & Waste, 1994, 44(7): 881-899.
[30] CARDELINO C A, CHAMEIDES W L. An observation-based model for analyzing ozone precursor relationships in the urban atmosphere[J]. Journal of the Air & Waste Management Association, 1995, 45(3): 161-180.
[31] KHODER M I. Atmospheric conversion of sulfur dioxide to particulate sulfate and nitrogen dioxide to particulate nitrate and gaseous nitric acid in an urban area[J]. Chemosphere, 2002, 49(6): 675-684. doi: 10.1016/S0045-6535(02)00391-0
[32] 罗笠, 高树基, 肖化云, 等. 台湾彭佳屿岛春季 TSP 中水溶性离子源解析[J]. 中国环境科学, 2017, 37(12): 4452-4459. doi: 10.3969/j.issn.1000-6923.2017.12.006 LUO L, GAO S J, XIAO H Y, et al. Analysis of water-soluble ion sources in spring TSP on Pengjiayu Island, Taiwan[J]. China Environmental Science, 2017, 37(12): 4452-4459(in Chinese). doi: 10.3969/j.issn.1000-6923.2017.12.006
[33] 符传博, 丹利, 徐文帅, 等. 2019年9月海南省持续臭氧污染天气的气象条件分析[J]. 环境化学, 2022, 41(11): 3726-3737. doi: 10.7524/j.issn.0254-6108.2021072701 FU C B, DAN L, XU W S, et al. Analysis of meteorological conditions for persistent ozone-polluted weather in Hainan Province in September 2019[J]. Environmental Chemistry, 2022, 41(11): 3726-3737. doi: 10.7524/j.issn.0254-6108.2021072701
[34] WANG T, XUE L, Brimblecombe P, et al. Ozone pollution in China: A review of concentrations, meteorological influences, chemical precursors, and effects[J]. Science of the Total Environment, 2017, 575: 1582-1596. doi: 10.1016/j.scitotenv.2016.10.081
[35] ZHANG X, XIAO X, WANG F, et al. Observed sensitivities of PM2.5 and O3 extremes to meteorological conditions in China and implications for the future[J]. Environment International, 2022, 168: 107428. doi: 10.1016/j.envint.2022.107428
[36] LI M, YU S, CHEN X, et al. Large scale control of surface ozone by relative humidity observed during warm seasons in China[J]. Environmental Chemistry Letters, 2021, 19: 3981-3989. doi: 10.1007/s10311-021-01265-0
[37] ZEREN Y, ZHOU B, ZHENG Y, et al. Does Ozone Pollution Share the Same Formation Mechanisms in the Bay Areas of China?[J]. Environmental Science & Technology, 2022, 56(20): 14326-14337.
[38] HUANG X F, WANG C, ZHU B, et al. Exploration of sources of OVOCs in various atmospheres in southern China[J]. Environmental Pollution, 2019, 249: 831-842. doi: 10.1016/j.envpol.2019.03.106
[39] LOUIE P K K, HO J W K, TSANG R C W, et al. VOCs and OVOCs distribution and control policy implications in Pearl River Delta region, China[J]. Atmospheric environment, 2013, 76: 125-135. doi: 10.1016/j.atmosenv.2012.08.058
[40] WANG Z, TIAN X, LI J, et al. Quantitative evidence from VOCs source apportionment reveals O3 control strategies in northern and southern China[J]. Environment International, 2023, 172: 107786. doi: 10.1016/j.envint.2023.107786
[41] 符传博, 丹利, 佟金鹤, 等. 海口市区臭氧污染变化特征及潜在源区分析[J]. 生态环境学报, 2023, 32(02): 331-340. FU C B, DAN L, TONG J H, et al. Characteristics of ozone pollution changes and analysis of potential source areas in Haikou[J]. Journal of Ecology and Environment, 2023, 32(02): 331-340(in Chinese).
[42] FISCHER E V, JAOB D J, YANTOSCA R M, et al. Atmospheric peroxyacetyl nitrate (PAN): a global budget and source attribution[J]. Atmospheric Chemistry and Physics, 2014, 14(5): 2679-2698. doi: 10.5194/acp-14-2679-2014
[43] 颜敏, 黄晓波, 张文忠, 等. 深圳大气挥发性有机物污染特征及臭氧生成潜势[J]. 环境科学与技术, 2021, 44(02): 57-65. doi: 10.19672/j.cnki.1003-6504.2021.02.008 YAN M, HUANG X B, ZHANG W Z, et al. Characteristics of VOC pollution and ozone formation potential in Shenzhen[J]. Environmental Science & Technology, 2021, 44(02): 57-65. doi: 10.19672/j.cnki.1003-6504.2021.02.008
[44] 云龙, 李成柳, 张明棣, 等. 珠江三角洲海岸背景区大气VOCs污染特征与来源[J]. 环境科学, 2021, 42(9): 4191-4201. doi: 10.13227/j.hjkx.202101155 YUN L, LI C L, ZHANG M D, et al. Characteristics and sources of atmospheric VOCs in the coastal background area of the Pearl River Delta[J]. Environmental Science, 2021, 42(9): 4191-4201. doi: 10.13227/j.hjkx.202101155
[45] 武高峰, 王丽丽, 董洁, 等. 国庆前后北京城区PM2.5组分污染及来源特征分析[J]. 环境化学, 2021, 40(12): 3721-3732. doi: 10.7524/j.issn.0254-6108.2020072702 WU G F, WANG L L, DONG J, et al. Pollution and source characteristics of PM2.5 components in Beijing urban area around National Day[J]. Environmental Chemistry, 2021, 40(12): 3721-3732(in Chinese). doi: 10.7524/j.issn.0254-6108.2020072702
[46] XU L, DUAN F, HE K, et al. Characteristics of the secondary water-soluble ions in a typical autumn haze in Beijing[J]. Environmental Pollution, 2017, 227: 296-305. doi: 10.1016/j.envpol.2017.04.076
[47] 严梦园, 程燕, 田杰, 等. 西安城区冬季污染天单颗粒气溶胶的化学组分特征及混合状态[J]. 环境化学, 2022, 41(3): 823-833. doi: 10.7524/j.issn.0254-6108.2020110906 YAN M Y, CHENG Y, TIAN J, et al. Characteristics of chemical components and mixing state of single-particle aerosols on winter polluted days in Xi'an city[J]. Environmental Chemistry, 2022, 41(3): 823-833(in Chinese). doi: 10.7524/j.issn.0254-6108.2020110906
[48] LELIEVELD J, BUTLER T M, CROWLEY J N, et al. Atmospheric oxidation capacity sustained by a tropical forest[J]. Nature, 2008, 452(7188): 737-740. doi: 10.1038/nature06870
[49] 符传博, 徐文帅, 丹利, 等. 2015—2020年海南岛大气PM2.5和PM10的时空分布特征[J]. 环境化学, 2023, 42(2): 522-531. doi: 10.7524/j.issn.0254-6108.2021101901 FU C B, XU W S, DAN L, et al. Characteristics of temporal and spatial distribution of atmospheric PM2.5 and PM10 in Hainan island, Hainan Province from 2015 to 2020[J]. Environmental Chemistry, 2023, 42(2): 522-531(in Chinese). doi: 10.7524/j.issn.0254-6108.2021101901