[1] SHEN G, WANG W, YANG Y, et al. Emission factors and particulate matter size distribution of polycyclic aromatic hydrocarbons from residential coal combustions in rural Northern China[J]. Atmospheric Environment, 2010, 44(39):5237-5243.
[2] LAMMEL G, SEHILI A M, BOND T C, et al. Gas/particle partitioning and global distribution of polycyclic aromatic hydrocarbonsA modelling approach[J]. Chemosphere, 2009, 76(1):98-106.
[3] 麦麦提·斯马义, 帕丽达·牙合甫, 努尔比亚·藿加吾买尔. 乌鲁木齐市周边地区土壤中多环芳烃的含量及来源[J]. 土壤, 2016, 48(6):1166-1171. MAIMAITI·Simayi, PALIDA·Yahefu, NUERBIYA·Houjiawumaier. Contents and sources of polycyclic aromatic hydrocarbons in soils around Urumqi City[J]. Soil, 2016, 48(6):1166-1171(in Chinese).
[4] YIN H, MU S, ZHAO L, et al. Microscopic morphology and elemental composition of size distributed atmospheric particulate matter in Urumqi, China[J]. Environmental Earth Sciences, 2013, 69(7):2139-2150.
[5] 帕丽达·牙合甫, 努尔比亚·藿加吾买尔, 麦麦提·斯马义. 乌鲁木齐采暖期TSP、PM10、PM5、PM2.5中重金属污染水平评价[J]. 中国环境监测, 2016, 32(5):56-59. PALIDA·Yahefu, NUERBIYA·Houjiawumaier, MAIMAITI·Simayi. Evaluation on heavy metal pollution levels in TSP, PM10, PM5, PM2.5 during Heating Period of Urumqi[J]. Environmental Monitoring in China, 2016, 32(5):56-59(in Chinese).
[6] KONG S, LI X, LI L, et al. Variation of polycyclic aromatic hydrocarbons in atmospheric PM2.5 during winter haze period around 2014 Chinese Spring Festival at Nanjing:Insights of source changes, air mass direction and firework particle injection[J]. Science of the Total Environment, 2015, 520:59-72.
[7] LI X, GUO X, LIU X, et al. Distribution and sources of solvent extractable organic compounds in PM2.5 during 2007 Chinese Spring Festival in Beijing[J]. Journal of Environmental Sciences, 2009, 21(2):142-149.
[8] WU Y, YANG L, ZHENG X, et al. Characterization and source apportionment of particulate PAHs in the roadside environment in Beijing[J]. Science of the Total Environment, 2014, 470-471(2):76-83.
[9] KONG S, DING X, BAI Z, et al. A seasonal study of polycyclic aromatic hydrocarbons in PM2.5 and PM2.5-10 in five typical cities of Liaoning Province, China[J]. Journal of Hazardous Materials, 2010, 183(1):70-80.
[10] 周变红, 张承中, 王格慧. 春节期间西安城区碳气溶胶污染特征研究[J]. 环境科学, 2013, 34(2):448-454. ZHOU B H, ZHANG C Z, WANG G H. Study on Pollution characteristics of carbonaceous aerosols in Xi'an City During the Spring Festival[J]. Environmental Sciences, 2013, 34(2):448-454(in Chinese).
[11] 李杏茹, 郭雪清, 刘欣然, 等. 2007年春节期间北京大气颗粒物中多环芳烃的污染特征[J]. 环境科学, 2008, 29(8):2099-2104. LI X R, GUO X Q, LIU X R, et al. Pollution characteristic of PAHs in atmospheric particles during the spring festival of 2007 in Beijing[J]. Environmental Sciences, 2008, 29(8):2099-2104(in Chinese).
[12] 李军, 孙春宝, 刘咸德, 等. 气象因素对北京市大气颗粒物浓度影响的非参数分析[J]. 环境科学研究, 2009, 22(6):663-669. LI J, SUN C B, LIU X D, et al. Non-parameter statistical analysis of impacts of meteorological conditions on PM concentration in Beijing[J]. Research of Envirnnmental Sniences, 2009, 22(6):663-669(in Chinese).
[13] 杨丽莉, 王美飞, 张予燕, 等. 南京市大气颗粒物中多环芳烃变化特征[J]. 中国环境监测, 2016, 32(1):53-57. YANG L L, WANG M F, ZHANG Y Y, et al. Distribution variation characteristics of polycyclic aromatic ydrocarbons (PAHs) in airborne particles of Nanjing[J]. Environmental Monitoring in China, 2016, 32(1):53-57(in Chinese).
[14] 张蕾, 姬亚芹, 赵静波, 等. 鞍山市冬季大气PM2.5中多环芳烃的来源解析及毒性评价[J]. 环境化学, 2017, 36(12):2668-2675. ZHANG L, JI Y Q, ZHAO J B, et al. Sources apportionment and toxicity assessment of polycyclic aromatic hydrocarbons in PM2.5 of Anshan City in winter[J]. Environmental Chemistry, 2017, 36(12):2668-2675(in Chinese).
[15] 焦海涛, 孙湛, 刘仲, 等. 济南市社区大气PM2.5中多环芳烃的污染特征及健康风险评价[J]. 环境与健康杂志, 2016, 33(5):425-428. JIAO H T, SUN Z, LIU Z, et al. Pollution characterization and health risk assessment of PAHs in PM2.5 in Ji'nan[J]. J Environ Health, 2016, 33(5):425-428(in Chinese).
[16] 李英红, 饶志国, 谭吉华, 等. 兰州大气细颗粒物中多环芳烃污染特征及来源分析[J]. 环境科学, 2016, 37(7):2428-2435. LI Y H, RAO Z G, TAN J H, et al. Pollutional characteristics and sources analysis of polycyclic aromatic hydrocarbons in atmospheric fine particulate matter in Lanzhou City[J]. Environmental Sciences, 2016, 37(7):2428-2435(in Chinese).
[17] 段二红, 张微微, 李璇, 等. 石家庄市采暖期大气细颗粒物中PAHs污染特征[J]. 环境科学研究, 2017, 30(2):193-201. DUAN E H, ZHANG W W, LI X, et al. Characteristics of PAHs in fine atmospheric particulate matter in Shijiazhuang City in heating season[J]. Research of Envirnnmental Sniences,2017, 30(2):193-201(in Chinese).
[18] 陈刚, 周潇雨, 吴建会, 等. 成都市冬季PM2.5中多环芳烃的源解析与毒性源解析[J]. 中国环境科学, 2015, 35(10):3150-3156. CHEN G, ZHOU X Y, WU J H, et al. Source apportionment and toxicity quantitation of PM2.5-associated polycyclic aromatic hydrocarbons obtained from Chengdu, China[J]. China Environmental Science, 2015, 35(10):3150-3156(in Chinese).
[19] 周海军, 杜远江, 都达古拉, 等. 呼和浩特市冬季PM10中多环芳烃的污染特征及来源解析[J]. 环境化学, 2016, 35(8):1707-1714. ZHOU H J, DU YJ, DUDAGULA, et al. Characterization and source apportionment of Polycyclic aromatic hydrocarbons bound to PM2.5 during winter in Hohhot[J]. Environmental Chemistry, 2016, 35(8):1707-1714(in Chinese).
[20] MA W L, SUN D Z, SHEN W G, et al. Atmospheric concentrations, sources and gas-particle partitioning of PAHs in Beijing after the 29th Olympic Games[J]. Environmental Pollution, 2011, 159(7):1794-1801.
[21] 董群, 赵普生, 陈一娜. 降雨对不同粒径气溶胶粒子碰撞清除能力[J]. 环境科学, 2016, 37(10):3686-3692. DONG Q, ZHAO P S, CHEN Y N. Impact of collision removal of rainfall on aerosol particles of different sizes[J]. Environmental Sciences, 2016, 37(10):3686-3692(in Chinese).
[22] SOSA B S, PORTA A, LERNER J E C, et al. Human health risk due to variations in PM10-PM2.5 and associated PAHs levels[J]. Atmospheric Environment, 2017, 160:27-35.
[23] 谢鸣捷, 王格慧, 胡淑圆, 等. 南京夏秋季大气颗粒物和PAHs组成的粒径分布特征[J]. 中国环境科学, 2008, 28(10):867-871. XIE M J, WANG G H, HU S Y, et al. Size distributions of particulate matter and PAHs from Naming in summer and autumn[J]. China Environmental Science, 2008, 28(10):867-871(in Chinese).
[24] WU D, WANG Z, CHEN J, et al. Polycyclic aromatic hydrocarbons (PAHs) in atmospheric PM2.5 and PM10 at a coal-based industrial city:Implication for PAH control at industrial agglomeration regions, China[J]. Atmospheric Research, 2014, 149(1):217-229.
[25] WANG G, KAWAMURA K, XIE M, et al. Size-distributions of n-hydrocarbons, PAHs and hopanes and their sources in the urban, mountain and marine atmospheres over East Asia[J]. Atmospheric Chemistry & Physics Discussions, 2009, 9(3):8869-8882.
[26] BOUROTTE C, FORTI M C, TANIGUCHI S, et al. A wintertime study of PAHs in fine and coarse aerosols in São Paulo city, Brazil[J]. Atmospheric Environment, 2005, 39(21):3799-3811.
[27] KATSOYIANNIS A, BREIVIK K. Model-based evaluation of the use of polycyclic aromatic hydrocarbons molecular diagnostic ratios as a source identification tool[J]. Environmental Pollution, 2014, 184(1):488-494.
[28] DVORSKA A, LAMMEL G, KLANOVA J. Use of diagnostic ratios for studying source apportionment and reactivity of ambient polycyclic aromatic hydrocarbons over Central Europe[J]. Atmospheric Environment, 2011, 45(2):420-427.
[29] YUNKER M B, MACDONALD R W, VINGARZAN R, et al. PAHs in the Fraser River basin:A critical appraisal of PAH ratios as indicators of PAH source and composition[J]. Organic Geochemistry, 2002, 33(4):489-515.
[30] PARK S U, KIM J G, JEONG M J, et al. Source identification of atmospheric polycyclic aromatic hydrocarbons in industrial complex using diagnostic ratios and multivariate factor analysis[J]. Archives of environmental contamination and toxicology, 2011, 60(4):576-589.
[31] MANTIS J, CHALOULAKOU A, SAMARA C. PM10-bound polycyclic aromatic hydrocarbons (PAHs) in the Greater Area of Athens, Greece[J]. Chemosphere, 2005, 59(5):593-604.
[32] SHI J, PENG Y, LI W, et al. Characterization and source identification of PM10-bound polycyclic aromatic hydrocarbons in urban Air of Tianjin, China[J]. Aerosol & Air Quality Research, 2010, 10(5):507-518.
[33] WANG G, HUANG L, ZHAO X, et al. Aliphatic and polycyclic aromatic hydrocarbons of atmospheric aerosols in five locations of Nanjing urban area, China[J]. Atmospheric Research, 2006, 81(1):54-66.
[34] HOU X, ZHUANG G, SUN Y, et al. Characteristics and sources of polycyclic aromatic hydrocarbons and fatty acids in PM2.5 aerosols in dust season in China[J]. Atmospheric Environment, 2006, 40(18):3251-3262.
[35] 张承中, 陈静, 刘立忠, 等. 西安市大气中多环芳烃的季节变化及健康风险评价[J]. 环境工程学报, 2012, 6(12):4579-4584. ZHANG C Z, CHEN J, LIU L Z, et al. Seasonal variation and health risk assessment of polycyclic aromatic hydrocarbons in air of Xi'an[J]. Chinese Journal of Environmental Engineering. 2012, 6(12):4579-4584(in Chinese).
[36] 中国环境科学研究院. 环境空气质量标准[M].北京:中国环境科学出版社, 2012. Chinese Research Academy of Environmental Sciences. Ambient air quality standards[M]. Beijing:China Environmental Science Press, 2012(in Chinese).
[37] PETRY T, SCHMID P, SCHLATTER C. The use of toxic equivalency factors in assessing occupational and environmental health risk associated with exposure to airborne mixtures of polycyclic aromatic hydrocarbons (PAHs)[J]. Chemosphere, 1996, 32(4):639-648.
[38] NISBET I C T, LAGOY P K. Toxic equivalency factors (TEFs) for polycyclic aromatic hydrocarbons (PAHs)[J]. Regulatory Toxicology and Pharmacology, 1992, 16(3):290-300.
[39] YANG H H, CHEN C M. Emission inventory and sources of polycyclic aromatic hydrocarbons in the atmosphere at a suburban area in Taiwan[J]. Chemosphere, 2004, 56(10):879-887.
[40] ZHANG Y, TAO S. Seasonal variation of polycyclic aromatic hydrocarbons (PAHs) emissions in China[J]. Environmental Pollution, 2008, 156(3):657-663.