Chemical characteristics of size-resolved aerosols in winter in Beijing

被引:0
|
作者
Kang Sun [1 ,2 ]
Yu Qu [3 ]
Qiong Wu [1 ]
Tingting Han [1 ]
Jianwei Gu [4 ]
Jingjing Zhao [5 ]
Yele Sun [3 ]
Qi Jiang [3 ]
Ziqi Gao [6 ]
Min Hu [2 ]
Yuanhang Zhang [2 ]
Keding Lu [2 ]
Stephan Nordmann [7 ]
Yafang Cheng [2 ]
Li Hou [8 ]
Hui Ge [8 ]
Masami Furuuchi [8 ]
Mitsuhiko Hata [8 ]
Xingang Liu [1 ]
机构
[1] State Key Laboratory of Water Environment Simulation,School of Environment,Beijing Normal University
[2] College of Environmental Sciences and Engineering,Peking University
[3] State Key Laboratory of Atmospheric Boundary Layer Physics and Atmospheric Chemistry,Institute of Atmospheric Physics,Chinese Academy of Sciences
[4] Environmental Science Center,University of Augsburg
[5] School of Foreign Languages,China University of Political Science and Law
[6] School of Chemistry,Beijing Normal University
[7] Multiphase Chemistry Department,Max Planck Institute for Chemistry
[8] Laboratory of Atmospheric Environment and Pollution Control Engineering,Graduate School of Natural Science & Technology,Kanazawa University
基金
中国国家自然科学基金;
关键词
Aerosol; Size distribution; Chemical characteristics; Beijing;
D O I
暂无
中图分类号
X513 [粒状污染物];
学科分类号
摘要
Size-resolved aerosols were continuously collected by a Nano Sampler for 13 days at an urban site in Beijing during winter 2012 to measure the chemical composition of ambient aerosol particles. Data collected by the Nano Sampler and an ACSM(Aerodyne Aerosol Chemical Speciation Monitor) were compared. Between the data sets,similar trends and strong correlations were observed,demonstrating the validity of the Nano Sampler. PM10 and PM2.5concentrations during the measurement were 150.5 ± 96.0 μg/m3(mean ± standard variation)and 106.9 ± 71.6 μg/m3,respectively. The PM2.5/PM10 ratio was 0.70 ± 0.10,indicating that PM2.5dominated PM10. The aerosol size distributions showed that three size bins of 0.5–1,1–2.5 and 2.5–10 μm contributed 21.8%,23.3% and 26.0% to the total mass concentration(TMC),respectively. OM(organic matter) and SIA(secondary ionic aerosol,mainly SO42-,NO3-and NH4+) were major components of PM2.5. Secondary compounds(SIA and secondary organic carbon) accounted for half of TMC(about 49.8%) in PM2.5,and suggested that secondary aerosols significantly contributed to the serious particulate matter pollution observed in winter. Coal burning,biomass combustion,vehicle emissions and SIA were found to be the main sources of PM2.5. Mass concentrations of water-soluble ions and undetected materials,as well as their fractions in TMC,strikingly increased with deteriorating particle pollution conditions,while OM and EC(elemental carbon) exhibited different variations,with mass concentrations slightly increasing but fractions in TMC decreasing.
引用
收藏
页码:1641 / 1650
页数:10
相关论文
共 50 条
  • [1] Chemical characteristics of size-resolved aerosols in winter in Beijing
    Sun, Kang
    Qu, Yu
    Wu, Qiong
    Han, Tingting
    Gu, Jianwei
    Zhao, Jingjing
    Sun, Yele
    Jiang, Qi
    Gao, Ziqi
    Hu, Min
    Zhang, Yuanhang
    Lu, Keding
    Nordmann, Stephan
    Cheng, Yafang
    Hou, Li
    Ge, Hui
    Furuuchi, Masami
    Hata, Mitsuhiko
    Liu, Xingang
    JOURNAL OF ENVIRONMENTAL SCIENCES, 2014, 26 (08) : 1641 - 1650
  • [2] Chemical composition of size-resolved atmospheric aerosols in the eastern Mediterranean during summer and winter
    Bardouki, H
    Liakakou, H
    Economou, C
    Sciare, J
    Smolík, J
    Zdímal, V
    Eleftheriadis, K
    Lazaridis, M
    Dye, C
    Mihalopoulos, N
    ATMOSPHERIC ENVIRONMENT, 2003, 37 (02) : 195 - 208
  • [3] Chemical characterization of size-resolved aerosols in four seasons and hazy days in the megacity Beijing of China
    Sun, Kang
    Liu, Xingang
    Gu, Jianwei
    Li, Yunpeng
    Qu, Yu
    An, Junling
    Wang, Jingli
    Zhang, Yuanhang
    Hu, Min
    Zhang, Fang
    JOURNAL OF ENVIRONMENTAL SCIENCES, 2015, 32 : 155 - 167
  • [4] Chemical characterization of size-resolved aerosols in four seasons and hazy days in the megacity Beijing of China
    Kang Sun
    Xingang Liu
    Jianwei Gu
    Yunpeng Li
    Yu Qu
    Junling An
    Jingli Wang
    Yuanhang Zhang
    Min Hu
    Fang Zhang
    Journal of Environmental Sciences, 2015, 32 (06) : 155 - 167
  • [5] Chemical characteristics of size-resolved PM2.5 at a roadside environment in Beijing, China
    Song, Shaojie
    Wu, Ye
    Jiang, Jingkun
    Yang, Liu
    Cheng, Yuan
    Hao, Jiming
    ENVIRONMENTAL POLLUTION, 2012, 161 : 215 - 221
  • [6] Size-resolved refractive index of scattering aerosols in urban Beijing: A seasonal comparison
    Wu, Yunfei
    Li, Jiwei
    Xia, Yunjie
    Deng, Zhaoze
    Tao, Jun
    Tian, Ping
    Gao, Zongting
    Xia, Xiangao
    Zhang, Renjian
    AEROSOL SCIENCE AND TECHNOLOGY, 2021, 55 (09) : 1070 - 1083
  • [7] Aerosol hygroscopicity based on size-resolved chemical compositions in Beijing
    Zhao, Pusheng
    Du, Xiang
    Su, Jie
    Ding, Jing
    Dong, Qun
    SCIENCE OF THE TOTAL ENVIRONMENT, 2020, 716
  • [8] Time-Dependent Size-Resolved Bacterial and Fungal Aerosols in Beijing Subway
    Fan, Hanqing
    Li, Xinyue
    Deng, Jiahao
    Da, Guillaume
    Gehin, Evelyne
    Yao, Maosheng
    AEROSOL AND AIR QUALITY RESEARCH, 2017, 17 (03) : 799 - 809
  • [9] Size-resolved mixing state of ambient refractory black carbon aerosols in Beijing during the XXIV Olympic winter games
    Zhang, Yuting
    Liu, Hang
    Lei, Shandong
    Du, Aodong
    Yao, Weijie
    Tian, Yu
    Sun, Yele
    Xin, Jinyuan
    Li, Jie
    Cao, Junji
    Wang, Zifa
    Pan, Xiaole
    ATMOSPHERIC ENVIRONMENT, 2023, 301
  • [10] Collection of ultrafine aerosols by electrostatic classification for size-resolved chemical analysis
    Phares, Denis J.
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2007, 233 : 587 - 587