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  4. C-Sr-Pb isotopic characteristics of PM2.5 transported on the East-Asian continental outflows
 
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C-Sr-Pb isotopic characteristics of PM2.5 transported on the East-Asian continental outflows

Journal
Atmospheric Research
Journal Volume
223
Pages
88-97
Date Issued
2019
Author(s)
Jung, C.-C.
Chou, C.C.-K.
Lin, C.-Y.
Shen, C.-C.  
Lin, Y.-C.
Huang, Y.-T.
Tsai, C.-Y.
Yao, P.-H.
Huang, C.-R.
Huang, W.-R.
Chen, M.-J.
Huang, S.-H.
Chang, Shuen-Chin
DOI
10.1016/j.atmosres.2019.03.011
URI
https://www.scopus.com/inward/record.url?eid=2-s2.0-85062700205&partnerID=40&md5=a36113e9d403671a8aa0b4340aafbdbe
https://scholars.lib.ntu.edu.tw/handle/123456789/542432
Abstract
This study investigated isotopic signatures of carbon (C), lead (Pb) and strontium (Sr) in PM 2.5 samples collected from two paired sites (urban vs. rural/background) in northern Taiwan during the summer of 2015 and the spring of 2016, respectively. Significant seasonality was revealed in the isotopic signatures of C and Pb, whereas no seasonal difference was observed in 87 Sr/ 86 Sr ratio. The values of δ 13 C, 206 Pb/ 207 Pb, and 208 Pb/ 207 Pb were more diverse and exhibited local features in summer. However, during the episodes of continental pollution outbreaks in springtime, the δ 13 C and Pb isotope ratios of PM 2.5 shifted and converged consistently toward the documented characteristics of particulate matters in northern China. Moreover, the results showed that the differences in the Pb and Sr isotopic characteristics between the paired urban and rural sites were statistically insignificant, whereas marginally lower δ 13 C values were observed at the urban site. It was inferred accordingly that a substantial amount of gaseous hydrocarbons emitted in local urban areas could have been converted to secondary organic aerosols with lower δ 13 C. On the contrary, the consistency in the spatial and temporal variations of mass concentration and isotope ratios of Pb at the two sites suggested that East-Asian continental pollution outbreak was the major source of Pb-containing particles in the northern Taiwan during springtime. It is noteworthy that there was neither seasonal nor spatial differences in the 87 Sr/ 86 Sr ratio observed in this study, which suggested that the Sr-containing particles collected in this study could be originating from a common mixture of sources, including not only natural dust but also the anthropogenic emissions, coal-combustion for instance. This investigation upon the C-Pb-Sr isotopic features evidenced the substantial impacts of the continental pollution outbreaks on the aerosol composition and air quality in the downwind areas of the East-Asian winter monsoons. © 2019
SDGs

[SDGs]SDG11

Other Subjects
Aerosols; Air quality; Coal combustion; Coal dust; Isotopes; Particulate emissions; Rural areas; Anthropogenic emissions; Continental outflow; East Asian winter monsoon; Fine particulate matter; Isotopic characteristics; Isotopic signatures; Secondary organic aerosols; Spatial and temporal variation; Urban growth; aerosol; atmospheric pollution; atmospheric transport; carbon; isotopic analysis; lead isotope; outflow; particulate matter; pollutant source; seasonality; strontium; China; Taiwan
Type
journal article

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