4.6 Article

Estimation of Source-Based Aerosol Optical Properties for Polydisperse Aerosols from Receptor Models

期刊

APPLIED SCIENCES-BASEL
卷 9, 期 7, 页码 -

出版社

MDPI
DOI: 10.3390/app9071443

关键词

mass extinction efficiency; SMP receptor model; size- and source-resolved aerosol optical properties; polydispersity

资金

  1. National Strategic Project-Fine particle of the National Research Foundation of Korea (NRF) - Ministry of Science and ICT (MSIT)
  2. Ministry of Environment (ME)
  3. Ministry of Health and Welfare (MOHW) [NRF-2017M3D8A1092022]
  4. KOPRI program - National Research Foundation of Korea [PN19081, NRF-2016M1A5A1901786]

向作者/读者索取更多资源

We estimated source-based aerosol optical properties for polydisperse aerosols according to a chemical-species-resolved mass contribution method based on source apportionment. We investigated the sensitivity of aerosol optical properties based on PM2.5 (particulate matter that have a diameter of less than 2.5 micrometers) monitoring results. These aerosols were composed of ions, metals, elemental carbon, and water-soluble organic carbon which includes humic-like carbon substances and water-soluble organic carbon. We calculated aerosols' extinction coefficients based on the PM2.5 composition data and the results of a multivariate receptor model (Solver for Mixture Problem model, SMP). Based on the mass concentration of chemical composition and nine sources calculated with the SMP receptor model, we estimated the size-resolved mass extinction efficiencies for each aerosol source using a multilinear regression model. Consequently, this study quantitatively determined the size resolved sources contributing to the apportionment-based aerosol optical properties and calculated their respective contributions. The results show that source-resolved mass concentrations and extinction coefficients had varying contributions. This discrepancy between the source-based mass concentration and extinction coefficient was mainly due to differences between the source-dependent aerosol size distribution and the aerosol optical properties from different sources.

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