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题名: Variations of Particle Size Distribution, Black Carbon, and Brown Carbon duringa Severe Winter Pollution Event over Xi’an, China
作者: Zhang,Q(Zhang,Qian)1, 2;  Shen,ZX(Shen,Zhenxing)1, 2;  Lei,YL(Lei,Yali)1;  Wang,YS(Wang,Yueshe)4;  Zeng,YL(Zeng,Yaling)1;  Wang, QY(Wang,Qiyuan)2;  Ning,Z(Ning,Zhi)3;  Cao,JJ(Cao,Junji)1;  Wang,LQ(Wang,Linqing)1;  Xu,HM(Xu,Hongmei)1
通讯作者: Shen,Zhenxing
关键词: Severe pollution periods ;  Particle size distribution ;  Black carbon ;  Brown carbon
刊名: Aerosol and Air Quality Research
发表日期: 2018-09-28
DOI: 10.4209/aaqr.2018.01.0007
卷: 18, 期:6, 页:1419-1430
收录类别: SCI
文章类型: 期刊论文
英文摘要: Real-time particulate matter (PM) size distributions, 4-hour time resolution, PM2.5, carbonaceous materials, and their optical properties were measured during a severe pollution event in Xi’an, China. High PM2.5/PM10 ratios were observed on both pollution (0.83) and non-pollution (0.73) days, emphasizing the abundance of fine particles during sampling days. The particle number (PN) first peaked with a wide size range (30–100 nm) before morning rush hours (approximately 01:00–05:00) on pollution and non-pollution days, demonstrating that PN was governed by the accumulation of freshly emitted diesel particles and characterized by distinct aerosol condensation growth. By contrast, the second peak time and size range differed between pollution and non-pollution days because of different formation mechanisms. The light-absorbing coefficients of both black carbon (BC, babs-880nm, BC) and brown carbon (BrC, babs-370nm, BrC) were high on pollution days and decreased to approximately half of those values on non-pollution days, indicating that the degree of light absorption is reduced by rain. The diurnal variation in babs-880nm, BC pollution peaked with traffic on January 1 and 2. By contrast, it remained in relatively stable and high ranges (120–160 Mm–1) in the second period (January 3–5) without traffic peaks, illustrating that the dominant sources changed even during the same pollution period. High values of both babs-370nm, BrC and babs-880nm, BC coincided in the afternoon and evening due to emissions from primary sources, and abundant aqueous secondary organic carbon, respectively. A highly variable mass absorption coefficient of BrC also indicated the variety of fuel combustion sources of primary BrC in Xi’an.
语种: 英语
所属项目编号: 41573101 ;  2017YFC0212205 ;  SKLLQG1616 ;  xkjc2015002
项目资助者: National NaturalScience Foundation of China ;  NationalKey Research and Development Plan of China ;  a grant from the SKLLQG at theChinese Academy of Sciences ;  Fundamental Research Funding for Central Universities inChina
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内容类型: 期刊论文
URI标识: http://ir.ieecas.cn/handle/361006/5370
Appears in Collections:粉尘与环境研究室_期刊论文

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作者单位: 1.Department of Environmental Science and Engineering, Xi’an Jiaotong University, Xi’an 710049, China
2.Key Lab of Aerosol Chemistry & Physics, SKLLQG, Institute of Earth Environment, Chinese Academy of Sciences, Xi'an710061, China
3.School of Energy and Environment, City University of Hong Kong, Hong Kong, China
4.State Key Laboratory of Multiphase Flow in Power Engineering, Xi’an Jiaotong University, Xi’an 710049, China

Recommended Citation:
Zhang,Q,Shen,ZX,Lei,YL,et al. Variations of Particle Size Distribution, Black Carbon, and Brown Carbon duringa Severe Winter Pollution Event over Xi’an, China[J]. Aerosol and Air Quality Research,2018,18(6):1419-1430.
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