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Chemical Characterization of Outdoor and Subway Fine (PM2.5-1.0) and Coarse (PM10-2.5) Particulate Matter in Seoul (Korea) by Computer-Controlled Scanning Electron Microscopy (CCSEM)

Authors
Byeon, Sang-HoonWillis, RobertPeters, Thomas M.
Issue Date
2월-2015
Publisher
MDPI
Keywords
CCSEM; Indoor; Particulate matter; Passive sampling; Subway
Citation
INTERNATIONAL JOURNAL OF ENVIRONMENTAL RESEARCH AND PUBLIC HEALTH, v.12, no.2, pp.2090 - 2104
Indexed
SCIE
SCOPUS
Journal Title
INTERNATIONAL JOURNAL OF ENVIRONMENTAL RESEARCH AND PUBLIC HEALTH
Volume
12
Number
2
Start Page
2090
End Page
2104
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/94503
DOI
10.3390/ijerph120202090
ISSN
1661-7827
Abstract
Outdoor and indoor (subway) samples were collected by passive sampling in urban Seoul (Korea) and analyzed with computer-controlled scanning electron microscopy coupled with energy dispersive x-ray spectroscopy (CCSEM-EDX). Soil/road dust particles accounted for 42%-60% (by weight) of fine particulate matter larger than 1 mu m (PM2.5-1.0) in outdoor samples and 18% of PM2.5-1.0 in subway samples. Iron-containing particles accounted for only 3%-6% in outdoor samples but 69% in subway samples. Qualitatively similar results were found for coarse particulate matter (PM10-2.5) with soil/road dust particles dominating outdoor samples (66%-83%) and iron-containing particles contributing most to subway PM10-2.5 (44%). As expected, soil/road dust particles comprised a greater mass fraction of PM10-2.5 than PM2.5-1.0. Also as expected, the mass fraction of iron-containing particles was substantially less in PM10-2.5 than in PM2.5-1.0. Results of this study are consistent with known emission sources in the area and with previous studies, which showed high concentrations of iron-containing particles in the subway compared to outdoor sites. Thus, passive sampling with CCSEM-EDX offers an inexpensive means to assess PM2.5-1.0 and PM10-2.5 simultaneously and by composition at multiple locations.
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Byeon, Sang Hoon
보건과학대학 (보건환경융합과학부)
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