中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Chemical composition of PM2.5 at a high–altitude regional backgroundsite over Northeast of Tibet Plateau

文献类型:期刊论文

作者Huang,RJ(Huang,Rujin)[5]; Shen,ZX(Shen,Zhenxing)[4]; Zhao,ZZ(Zhao,Zhuzi)[1,2,3]; Liu,SX(Liu,Suixin)[1]; Zhang,T(Zhang,Ting)[1]; Wang,P(Wang,Ping)[1]; Hu,TF(Hu,Tafeng)[1]; Cao,JJ(Cao,Junji)[1,3]
刊名Atmospheric Pollution Research
出版日期2015-09
卷号6期号:5页码:815-823
关键词Carbonaceous Aerosols Pm2.5 Chemical Composition Qinghai Lake Tibet Plateau
DOI10.5094/APR.2015.090
文献子类期刊论文
英文摘要

Aerosol samples were collected from a site near Qinghai Lake (QHL) on the northeastern margin of the Tibetan Plateau (TP) to investigate PM2.5 mass levels and chemical composition, especially their seasonal patterns and sources. The PM2.5 ranged from 5.7 to 149.7 μg m–3, and it was predominately crustal material (-40% on average). The combined mass of eight water–soluble inorganic ions ranged from 1.0 to 41.5 μg m–3, with the largest contributions from SO42– NO3-, and Ca2+. Low abundances of organic carbon (OC, range: 1.0 to 8.2 μg m–3) and elemental carbon (EC, 0.2 to 2.3 μg m–3) were found in QHL. Weak seasonality in the OC/EC ratio (4.5±2.0) indicated simple and stable sources for carbonaceous particles. The water–soluble ions, OC and EC accounted for ~30%, 10% and 2% of the PM2.5, respectively. Water–soluble organic carbon (WSOC, range: 0.5 to 4.3 μg m–3) accounted for 47.8% of the OC. Both OC and WSOC were positively correlated with water–soluble K+(r=0.70 and 0.73 respectively), an indicator of biomass burning. Higher WSOC and stronger correlations between WSOC and EC in spring and winter compared with summer and autumn are evidence for primary biomass burning aerosols. The concentrations of mass and major compositions were 2–10 times higher than those for some TP or continental background sites but much lower than urban areas. Compared with particles produced from burning yak dung (a presumptive source material), PM2.5 had higher SO42–/OC ratios. The higher ratios were presumed as a result of fossil fuel combustion. After excluding data for dust storms events, the relative percentages of OM, EC, K+, NH4+, NO3– and mineral dust showed little difference among seasons despite different monsoons dominated in four seasons; implying that the PM2.5 sources were relatively stable. The results from QHL evidently reflect regional cha racteristics of the aerosol.

语种英语
源URL[http://ir.ieecas.cn/handle/361006/9445]  
专题地球环境研究所_粉尘与环境研究室
作者单位1.SKLLQG, Institute of Earth Environment, Chinese Academy of Sciences ;
2.Key Lab of Aerosol Chemistry & Physics, Institute of Earth Environment, Chinese Academy of Sciences;
3.University of Chinese Academy of Sciences ;
4.Department of Environmental Science and Engineering, Xi’an Jiaotong University, China ;
5.Laboratory of Atmospheric Chemistry, Paul Scherrer Institute, 5232 Villigen, Switzerland
推荐引用方式
GB/T 7714
Huang,RJ,Shen,ZX,Zhao,ZZ,et al. Chemical composition of PM2.5 at a high–altitude regional backgroundsite over Northeast of Tibet Plateau[J]. Atmospheric Pollution Research,2015,6(5):815-823.
APA Huang,RJ.,Shen,ZX.,Zhao,ZZ.,Liu,SX.,Zhang,T.,...&Cao,JJ.(2015).Chemical composition of PM2.5 at a high–altitude regional backgroundsite over Northeast of Tibet Plateau.Atmospheric Pollution Research,6(5),815-823.
MLA Huang,RJ,et al."Chemical composition of PM2.5 at a high–altitude regional backgroundsite over Northeast of Tibet Plateau".Atmospheric Pollution Research 6.5(2015):815-823.

入库方式: OAI收割

来源:地球环境研究所

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