PM2.5 source apportionment in Seoul, Korea: a comparison of PMF and SMP receptor modeling results

Authors
Kim S. -W.Heo J.Bae M. -S.KIM, JIN YOUNG
Issue Date
2023-03
Publisher
Islamic Azad University of Research and Technology
Citation
International Journal of Environmental Science and Technology, v.20, pp.2417 - 2426
Abstract
Source apportionment results of particulate matter with an aerodynamic diameter smaller than 2.5 mu m (PM2.5) from two multivariate receptor models (positive matrix factorization, PMF; solver for mixture problem, SMP) were compared to assess the comparability of the results in view of model performance, source identification and source quantification. Two receptor models applied the same filter samples of PM2.5 collected between October 2012 and September 2013 in Seoul, Korea, not only reproduced well the measured PM2.5 mass concentrations, especially the SMP model (R-2 = 0.99, bias = - 0.02 mu g m(-3)), but also identified the four major PM2.5 contributors: biomass burning (PMF: 12.0%, SMP: 13.2%), vehicles (PMF: 18.9%, SMP: 10.2%), road dust (PMF: 5.0%, SMP: 11.2%) and secondary aerosol sources (PMF: 51%, SMP: 42.5%). The large sulfate fraction in the source profile is thought to be the high vehicle fraction in PMF. The major species constituting the secondary aerosols are OC (PMF: 11.7%, SMP: 16.2%), sulfate (PMF: 21.2%, SMP: 15.3%), nitrate (PMF: 29.4%, SMP: 44.1%), and ammonium (PMF: 16.7%, SMP: 16.9%). The difference in the contribution of nitrate and sulfate between the two models underscores that multiple receptor models may need to be applied to the same dataset to better understand their sources in polluted areas, particularly reducing secondary aerosols.
Keywords
POSITIVE MATRIX FACTORIZATION; ORGANIC-COMPOUNDS; MASS; CHINA; SECONDARY; AEROSOL; CARBON; IONS; Particulate matter; PMF; Receptor model; SMP; Source apportionment
ISSN
1735-1472
URI
https://pubs.kist.re.kr/handle/201004/75793
DOI
10.1007/s13762-022-04183-y
Appears in Collections:
KIST Article > 2023
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