[1]Zhang Chengchang, Zhou Wenxian. Atmospheric Aerosol Tutorial [M]. Beijing: China Meteorological Press, 1995: 299-323(in Chinese).
章澄昌, 周文贤. 大气气溶胶教程 [M].气象出版社, 1995: 299-323.
[2] Biggar S F, Gellman D I, Slater P N. Improved evaluation of optical depth components from Langley plot data [J]. Remote Sens. Environ., 1990, 32: 91-101.
[3] Rosenfeld D. Aerosols, clouds, and climate [J].Science, 2006, 312(5778): 1323-1324.
[4] Qiu Jinhuan, Lv Daren, Chen Hongbin, et al. Modern research progress in atmospheric physics [J]. Chinese Journal of Atmospheric Science, 2003, 27(4): 628-652(in Chinese).
邱金桓, 吕达仁, 陈洪滨, 等. 现代大气物理学研究进展 [J]. 大气科学, 2003, 27(4): 628-652.
[5] Holben B N, Eck T F, Slutsker I, et al. AERONET-A federated instrument network and data achieve for aerosol characterization [J]. Rem. Sens. Environ., 1998, 66(1): 1-16.
[6] Che H Z, Shi G, Uchiyama A, et al. Intercomparison between aerosol optical properties by a PREDE skyradiometer and CIMEL sunphotometer over Beijing, China [J]. Atmos. Chim. Phys., 2008, 8: 3199-3214.
[7] Zhao H, Che H, Zhang X, et al. Aerosol optical properties over urban and industrial region of Northeast China by using ground-based sun-photometer measurement [J]. Atmos. Environ., 2013, 75: 270-278.
[8] Pan L, Che H Z, Geng F H, et al. Aerosol optical properties based on ground measurements over the Chinese Yangtze Delta Region [J]. Atmos. Environ., 2010, 44: 2587-2596.
[9] Fan X H, Chen H B, Goloub P, et al. Analysis of column-integrated aerosol optical thickness in Beijing from AERONET observation [J]. China Particuology, 2006, 4(6): 300-335.
[10] Wang P, Che H Z, Zhang X Y, et al. Aerosol optical properties of regional background atmosphere in Northeast China [J]. Atmos. Environ., 2010, 44: 4404-4412.
[11] Che H Z, Yang Z F, Zhang X, et al. Study on the aerosol optical properties and their relationship with aerosol chemical compositions over three regional background stations in China [J]. Atmos. Environ., 2009, 43(5): 1093-1099.
[12] Ren Yiyong, Li Xia, Lv Ming. Application prospect of measurement by sun photometer CE318 and retrieval methodology [J]. Meteorological Science and Technology, 2006, 34(3): 349-352(in Chinese)
任宜勇, 李霞, 吕鸣, 等. CE318太阳光度计观测资料应用前景及其解读 [J]. 气象科技, 2006, 34(3): 349-352.
[13] Che H, Zhang X, Alfraro S, et al. Aerosol optical properties and its radiative forcing over Yulin, China in 2001 and 2002 [J].Adv. Atmos. Sci., 2009, 26(3): 564-576.
[14] Xia X A, Chen H B, Wang P C, et al. Aerosol properties and their spatial and temporal variations over north China in spring 2001 [J]. Tellus B, 2005, 57(1): 28-39.
[15] Cheng Nianliang, Li Yunting, Zhang Dawei. Analysis about the characteristics and formation mechanisms of serious pollution events in October 2014, in Beijing [J]. Research of Environmental Sciences, 2015, 28(2): 163-170(in Chinese).
程念亮, 李云婷, 张大伟. 2014 年 10 月北京市4次典型空气重污染过程成因分析 [J]. 环境科学研究, 2015, 28(2): 163-170.
[16] Li Bengang, Ran Yang, Tao Peng. Season variation and spatial distribution of atmospheric aerosols in Beijing [J]. Acta Scientiae Circumstantiae, 2008, 28(7): 1425-1429(in Chinese).
李本纲, 冉阳, 陶澍. 北京市气溶胶的时间变化与空间分布特征 [J]. 环境科学学报, 2008, 28(7): 1425-1429.
[17] Gobbi G P, Kaufman Y J, Koren I, et al. Classification of aerosol properties derived from AERONET direct sun data [J]. Atmos. Chem. Phys., 2007, 7(2): 453-458.
[18] Liu Ruiting, Han Zhiwei, Li Jiawei. Analysis of meteorological characteristics during winter haze events in Beijing [J]. Climatic and Environmental Research, 2014, 19(2): 164-172(in Chinese). 刘瑞婷, 韩志伟, 李嘉伟. 北京冬季雾霾事件的气象特征分析 [J]. 气候与环境研究, 2014, 19(2): 164-172.
[19] Brimelow J C, Reuter G W. Transport of atmospheric moisture during three extreme rainfall events over the Mackenzie River basin [J]. J. Hydrometeorol., 2005, 6(4): 423-440.
[20] Zhang R, Fu C, Han Z, et al. Characteristics of elemental composition of PM2.5 in the spring period at Tongyu in the semi-arid region of Northeast China [J]. Adv. Atmos. Sci., 2008, 25(6): 922-931. |