[1] 曹军骥. PM2.5与环境[M]. 北京: 科学出版社, 2014. CAO J J. PM2.5 and environment[M]. Beijing: Science Press, 2014 (in Chinese) .
[2] 周元. 努力建设以人民为中心的海南自贸港[N]. 海南日报, 2021-07-27(A02). ZHOU Y. Strive to build people-centered Hainan Free Trade Port[N]. Hainan Daily, 2021 /7 /27 / A02 edition (in Chinese).
[3] 周家茂, 赵由之, 刘随心, 等. 三亚冬季大气PM2.5及碳气溶胶特征与来源分析 [J]. 地球环境学报, 2012, 3(5): 1060-1065. ZHOU J M, ZHAO Y Z, LIU S X, et al. Characteristic and source identifications of PM2.5 and carbonaceous aerosol at Sanya durning 2011 winter [J]. Journal of Earth Environment, 2012, 3(5): 1060-1065(in Chinese).
[4] ZHOU J M, HO S, CAO J J, et al. Chemical characterization of PM2.5 from a southern coastal city of China: Applications of modeling and chemical tracers in demonstration of regional transport [J]. Environmental Science and Pollution Research International, 2018, 25(21): 20591-20605. doi: 10.1007/s11356-018-2238-1
[5] TIAN J, WANG Q Y, HAN Y M, et al. Contributions of aerosol composition and sources to particulate optical properties in a southern coastal city of China [J]. Atmospheric Research, 2020, 235: 104744. doi: 10.1016/j.atmosres.2019.104744
[6] WANG Q Y, LIU H K, WANG P, et al. Optical source apportionment and radiative effect of light-absorbing carbonaceous aerosols in a tropical marine monsoon climate zone: The importance of ship emissions [J]. Atmospheric Chemistry and Physics, 2020, 20(24): 15537-15549. doi: 10.5194/acp-20-15537-2020
[7] WANG P, HAN C, ZHAO Y Z, et al. Characterization of PM2.5 mass concentration in the onshore of Sanya, China [J]. Journal of Atmospheric Science Research, 2020, 3(2): 32-38.
[8] WANG J Z, HO S, CAO J J, et al. Characteristics and major sources of carbonaceous aerosols in PM2.5 from Sanya, China [J]. The Science of the Total Environment, 2015, 530/531: 110-119. doi: 10.1016/j.scitotenv.2015.05.005
[9] FANG X Z, BI X H, XU H, et al. Source apportionment of ambient PM10 and PM2.5 in Haikou, China [J]. Atmospheric Research, 2017, 190: 1-9. doi: 10.1016/j.atmosres.2017.01.021
[10] LIU B S, ZHANG J Y, WANG L, et al. Characteristics and sources of the fine carbonaceous aerosols in Haikou, China [J]. Atmospheric Research, 2018, 199: 103-112. doi: 10.1016/j.atmosres.2017.08.022
[11] XIAO H W, XIAO H Y, LUO L, et al. Atmospheric aerosol compositions over the South China Sea: Temporal variability and source apportionment [J]. Atmospheric Chemistry and Physics, 2017, 17(4): 3199-3214. doi: 10.5194/acp-17-3199-2017
[12] GENG X F, MO Y Z, LI J, et al. Source apportionment of water-soluble brown carbon in aerosols over the northern South China Sea: Influence from land outflow, SOA formation and marine emission [J]. Atmospheric Environment, 2020, 229: 117484. doi: 10.1016/j.atmosenv.2020.117484
[13] SONG J W, ZHANG Y Y, ZHANG Y L, et al. A case study on the characterization of non-methane hydrocarbons over the South China Sea: Implication of land-sea air exchange [J]. The Science of the Total Environment, 2020, 717: 134754. doi: 10.1016/j.scitotenv.2019.134754
[14] ZHANG Y L, LI J, ZHANG G, et al. Radiocarbon-based source apportionment of carbonaceous aerosols at a regional background site on Hainan Island, South China [J]. Environmental Science & Technology, 2014, 48(5): 2651-2659.
[15] XIAO H W, XIE L H, LONG A M, et al. Use of isotopic compositions of nitrate in TSP to identify sources and chemistry in South China Sea [J]. Atmospheric Environment, 2015, 109: 70-78. doi: 10.1016/j.atmosenv.2015.03.006
[16] 郑玫, 张延君, 闫才青, 等. 中国PM2.5来源解析方法综述 [J]. 北京大学学报(自然科学版), 2014, 50(6): 1141-1154. ZHENG M, ZHANG Y J, YAN C Q, et al. Review of PM2.5 source apportionment methods in China [J]. Acta Scientiarum Naturalium Universitatis Pekinensis, 2014, 50(6): 1141-1154(in Chinese).
[17] 魏青, 陈文怡, 金麟先. 枣庄市大气PM2.5重金属元素健康风险评价及污染来源解析 [J]. 中国粉体技术, 2020, 26(6): 69-78. WEI Q, CHEN W Y, JIN L X. Health risk assessment and source analysis of heavy metal elements in PM2.5 in Zaozhuang City [J]. China Powder Science and Technology, 2020, 26(6): 69-78(in Chinese).
[18] 单慧, 欧阳钏, 柯鸿阳, 等. 西北地区典型城市PM2.5中重金属污染特征及健康风险评价 [J]. 中国公共卫生, 2022, 38(4): 476-480. doi: 10.11847/zgggws1127718 SHAN H, OUYANG C, KE H Y, et al. Heavy metals in PM2.5 in four metropolitan cities in Northwest China: Pollution characteristics and health risk assessment [J]. Chinese Journal of Public Health, 2022, 38(4): 476-480(in Chinese). doi: 10.11847/zgggws1127718
[19] CAO J J, WU F, CHOW J C, et al. Characterization and source apportionment of atmospheric organic and elemental carbon during fall and winter of 2003 in Xi'an, China [J]. Atmospheric Chemistry and Physics, 2005, 5(11): 3127-3137. doi: 10.5194/acp-5-3127-2005
[20] WU F, ZHANG D Z, CAO J J, et al. Soil-derived sulfate in atmospheric dust particles at Taklimakan desert [J]. Geophysical Research Letters, 2012, 39(24): L24803.
[21] ANTONY CHEN L W, CAO J J. PM2.5 source apportionment using a hybrid environmental receptor model [J]. Environmental Science & Technology, 2018, 52(11): 6357-6369.
[22] USA EPA. Integrated risk information system [DB/OL] [2019-02-03]https://www.epa.gov/research-states/integrated-risk-information-system-iris-webinar-archive.
[23] ATSDR. Agency for Toxic Substances and Disease Registry[DB/OL]. [2019-02-03] .
[24] 范逸飞, 陈秀玲, 方滋婧, 等. 漳州市城市公园灰尘重金属来源及健康风险评价 [J]. 地球环境学报, 2021, 12(1): 104-120. FAN Y F, CHEN X L, FANG Z J, et al. Heavy metal sources and health risk assessment of dust in Zhangzhou urban parks [J]. Journal of Earth Environment, 2021, 12(1): 104-120(in Chinese).
[25] 郑乃嘉, 谭吉华, 段菁春, 等. 大气颗粒物水溶性重金属元素研究进展 [J]. 环境化学, 2014, 33(12): 2109-2116. doi: 10.7524/j.issn.0254-6108.2014.12.005 ZHENG N J, TAN J H, DUAN J C, et al. Research progress on water-soluble heavy metal in atmospheric particulate mattters [J]. Environmental Chemistry, 2014, 33(12): 2109-2116(in Chinese). doi: 10.7524/j.issn.0254-6108.2014.12.005
[26] YAO X H, CHAN C K, FANG M, et al. The water-soluble ionic composition of PM2.5 in Shanghai and Beijing, China [J]. Atmospheric Environment, 2002, 36(26): 4223-4234. doi: 10.1016/S1352-2310(02)00342-4
[27] LEE Y N, WEBER R, MA Y, et al. Airborne measurement of inorganic ionic components of fine aerosol particles using the particle-into-liquid sampler coupled to ion chromatography technique during ACE-Asia and TRACE-P [J]. Journal of Geophysical Research:Atmospheres, 2003, 108(D23): 8646. doi: 10.1029/2002JD003265
[28] MA Y, WEBER R J, LEE Y N, et al. Characteristics and influence of biosmoke on the fine-particle ionic composition measured in Asian outflow during the Transport and Chemical Evolution Over the Pacific (TRACE-P) experiment[J]. Journal of Geophysical Research: Atmospheres, 2003, 108(D21),doi:10.1029/2002JD003128.
[29] 海南日报. 2020 年海南省生态环境状况公报[N]. 2021 年/6 月/5 日/第A06 版. Hainan Daily. Ecological and Environmental Status Report of Hainan Province in 2020 [N] . 2021/26/25/A06 edition (in Chinese).
[30] TSENG Y L, WU C H, YUAN C S, et al. Inter-comparison of chemical characteristics and source apportionment of PM2.5 at two harbors in the Philippines and Taiwan [J]. Science of the Total Environment, 2021, 793: 148574. doi: 10.1016/j.scitotenv.2021.148574
[31] HASSAN H, LATIF M T, JUNENG L, et al. Chemical characterization and sources identification of PM2.5 in a tropical urban city during non-hazy conditions [J]. Urban Climate, 2021, 39: 100953. doi: 10.1016/j.uclim.2021.100953
[32] ROVIRA J, ROIG N, NADAL M, et al. Human health risks of formaldehyde indoor levels: An issue of concern [J]. Journal of Environmental Science and Health. Part A, Toxic/Hazardous Substances & Environmental Engineering, 2016, 51(4): 357-363.