[1] 徐宏辉, 王跃思, 温天雪, 等. 北京大气气溶胶中水溶性离子的粒径分布和垂直分布 [J]. 环境科学, 2007, 28(1): 14-19. doi: 10.3321/j.issn:0250-3301.2007.01.003 XU H H, WANG Y S, WEN T X, et al. Size distributions and vertical distributions of water soluble ions of atmospheric aerosol in Beijing [J]. Environmental Science, 2007, 28(1): 14-19(in Chinese). doi: 10.3321/j.issn:0250-3301.2007.01.003
[2] PAN X, UNO I, HARA Y, et al. Observation of the simultaneous transport of Asian mineral dust aerosols with anthropogenic pollutants using a POPC during a long-lasting dust event in late spring 2014 [J]. Geophysical Research Letters, 2015, 42(5): 1593-1598. doi: 10.1002/2014GL062491
[3] 耿彦红, 刘卫, 单健, 等. 上海市大气颗粒物中水溶性离子的粒径分布特征 [J]. 中国环境科学, 2010, 30(12): 1585-1589. GENG Y H, LIU W, SHAN J, et al. Characterization of major water-soluble ions in size-fractionated particulate matters in Shanghai [J]. China Environmental Science, 2010, 30(12): 1585-1589(in Chinese).
[4] UNO I, EGUCHI K, YUMIMOTO K, et al. Asian dust transported one full circuit around the globe [J]. Nature Geoscience, 2009, 2(8): 557-560. doi: 10.1038/ngeo583
[5] SEINFELD J H, G R CARMICHAEL, R ARIMOTO, et al. ACE-ASIA-Regional climatic and atmospheric chemical effects of Asian dust and pollution [J]. Bull Am Meteorol Soc, 2004, 85(3): 367-380. doi: 10.1175/BAMS-85-3-367
[6] LAWRENCE M G, LELIEVELD J. Atmospheric pollutant outflow from southern Asia: A review [J]. Atmos Chem Phys, 2010, 10: 11017-11096. doi: 10.5194/acp-10-11017-2010
[7] WANG Z, LI J, WANG Z, et al. Modeling study of regional severe hazes over mid-eastern China in January 2013 and its implications on pollution prevention and control [J]. Sci China Earth Sci, 2014, 57: 3-13. doi: 10.1007/s11430-013-4793-0
[8] LI J, DU H, WANG Z, et al. Rapid formation of a severe regional winter haze episode over a mega-city cluster on the North China Plain [J]. Environ Pollut, 2017, 223: 605-615. doi: 10.1016/j.envpol.2017.01.063
[9] ITAHASHI S, UNO I, OSADA K, et al. Nitrate transboundary heavy pollution over East Asia in winter [J]. Atmos Chem Phys, 2017, 17: 3823-3843. doi: 10.5194/acp-17-3823-2017
[10] ZHANG L, JACOB D J, BOERSMA K F, et al. Transpacific transport of ozone pollution and the effect of recent Asian emission increases on air quality in North America: an integrated analysis using satellite, aircraft, ozonesonde, and surface observations [J]. Atmos Chem Phys, 2008, 8: 6117-6136. doi: 10.5194/acp-8-6117-2008
[11] KANEYASU N, YAMAMOTO S, SATO K, et al. Impact of long-range transport of aerosols on the PM2.5 composition at a major metropolitan area in the northern Kyushu area of Japan [J]. Atmos Environ, 2014, 97: 416-425. doi: 10.1016/j.atmosenv.2014.01.029
[12] IKEDA K, YAMAJI K, KANAYA Y, et al. Sensitivity analysis of source regions to PM2.5 concentration at Fukue Island, Japan [J]. Air Waste Manag. Assoc, 2014, 64: 445-452. doi: 10.1080/10962247.2013.845618
[13] ITAHASHI S, UNO I, HAYAMI H, et al. Modeling investigation of controlling factors in the increasing ratio of nitrate to non-seasalt sulfate in precipitation over Japan [J]. Atmos Environ, 2014, 92: 171-177. doi: 10.1016/j.atmosenv.2014.04.022
[14] KUROKAWA J, OHARA T, MORIKAWA T, et al. Emissions of air pollutants and greenhouse gases over Asian regions during 2000-2008: Regional Emission inventory in ASia (REAS) version 2 [J]. Atmos Chem Phys, 2013, 13: 11019-11058. doi: 10.5194/acp-13-11019-2013
[15] HE H, WANG Y, MA Q, et al. Mineral dust and NOx promote the conversion of SO2 to sulfate in heavy pollution days [J]. Sci Rep, 2014, 4: 4172. doi: 10.1038/srep04172
[16] ITAHASHI S, HAYAMI H, UNO I, et al. Importance of coarsemode nitrate produced via sea salt as atmospheric input to East Asian oceans [J]. Geophys Res Lett, 2016, 43: 5483-5491. doi: 10.1002/2016GL068722
[17] SHIMIZU A, N SUGIMOTO, I MATSUI, et al. Continuous observations of Asian dust and other aerosols by polarization lidars in China and Japan during ACE-Asia [J]. J Geophys Res, 2004, 109: D19S17. doi: 10.1029/2002JD003253
[18] WINKER D M, VAYGHAN M A, OMAR A, et al. Overview of the CALIPSO mission and CALIOP data processing algorithms [J]. J Atmos Oceanic Tech, 2009, 26(11): 2310-2323. doi: 10.1175/2009JTECHA1281.1
[19] SUGIMOTO N, HARA Y, SHIMIZU A, et al. Analysis of dust events in 2008 and 2009 using the lidar network, surface observations and the CFORS model, Asia-Pac [J]. J Atmos Sci, 2014, 49(1): 27-39.
[20] KOBAYASHI H, HAYASHI M, SHIRAISHI K, et al. Development of a polarization optical particle counter capable of aerosol type classification [J]. Atmospheric Environment, 2014, 97: 486-492. doi: 10.1016/j.atmosenv.2014.05.006
[21] KIMOTO H, UEDA A, TSUJINOTO K, et al. Development of a continuous dichotomous aerosol chemical speciation analyzer [J]. Clean Technol, 2013, 23: 49-52.
[22] PAN X, UNOI, HARA Y, et al. Polarization properties of aerosol particles over western Japan: classification, seasonal variation, and implications for air quality. Atmos Chem [J]. Phys, 2016, 16(15): 9863-9873.
[23] UNO I, OSADA K, YUMIMOTO K, et al. Importance of long-range nitrate transport based on long-term observation and modeling of dust and pollutants over East Asia [J]. Aero Air Qual, Res, 2017, 17: 3052-3064. doi: 10.4209/aaqr.2016.11.0494
[24] PAN X, UNO I, WANG Z, et al. Seasonal variabilities in chemical compounds and acidity of aerosol particles at urban site in the west Pacific [J]. Environmental Pollution, 2018, 237: 868-877. doi: 10.1016/j.envpol.2017.11.089
[25] WANG Z, PAN X, UNO I, et al. Importance of mineral dust and anthropogenic pollutants mixing during a long-lasting high PM event over East Asia [J]. Environmental Pollution, 2018, 234: 368-378. doi: 10.1016/j.envpol.2017.11.068
[26] TIAN Y, PAN X, TOMOAKI N, et al. Variability of depolarization of aerosol particles in the megacity of Beijing: Implications for the interaction between anthropogenic pollutants and mineral dust particles [J]. Atmos Chem Phys, 2018, 18: 18203-18217. doi: 10.5194/acp-18-18203-2018
[27] CHAN C, XU X, LI Y, et al. Characteristics of vertical profiles and sources of PM2.5, PM10 and carbonaceous species in Beijing [J]. Atmospheric Environment, 2005, 39(28): 5113-5124. doi: 10.1016/j.atmosenv.2005.05.009
[28] PÉREZ J, PEY X, QUEROL,. et al Partitioning of major and trace components in PM10–PM2.5–PM1 at an urban site in Southern Europe [J]. Atmospheric Environment, 2008, 42(8): 1677-1691. doi: 10.1016/j.atmosenv.2007.11.034
[29] CHAN C, YAO X. Air pollution in mega cities in China [J]. Atmospheric Environment, 2008, 42(1): 1-42. doi: 10.1016/j.atmosenv.2007.09.003
[30] AKYUZ, M, AND CABUK H. Meteorological variations of PM2.5 / PM10 concentrations and particle-associated polycyclic aromatic hydrocarbons in the atmospheric environment of Zonguldak, Turkey [J]. Journal of Hazardous Materials, 2009, 170(1): 13-21.