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Particle and Aerosol Research
Vol. 16, No. 1, March 2020, Pages 19-30
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ISSN : 1738-8716 (Print)
ISSN : 2287-8130 (Online)
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Validation for SOC Estimation from OC and EC concentration in PM2.5 measured at Seoul
Ha Young Yoo1), Ki Ae Kim1), Yong Pyo Kim2),Chang Hoon Jung3), Hye Jung Shin4),Kwang Ju Moon4),Seung Myung Park4),Ji Yi Lee1),2) *
1)Department of Environmental Science & Engineering, Ewha Womans University
2)Department of Chemical Engineering & Materials Science, Ewha Womans University
3)Department of Health Management, Kyungin Women¡¯s University
4)Department of Air Quality Research, Climate and Air Quality Research Division, National Institute of Environmental Research
*Corresponding author.
Tel.: +82-2-3277-5945, E-mail: yijiyi@ewha.ac.kr
Received 24 February 2020, Revised 30 March 2020, Accepted 30 March 2020, Available online 31 March 2020
http://dx.doi.org/10.11629/jpaar.2020.16.1.019
Abstracts
The organic carbon in the ambient particulate matter (PM) is divided into primary organic carbon (POC) and secondary organic carbon (SOC) by their formation way. To regulate PM effectively, the estimation of the amount of POC and SOC separately is one of important consideration. Since SOC cannot be measured directly, previous studies have evaluated determination of SOC by the EC tracer method. The EC tracer method is a method of estimating the SOC value from calculating the POC by determining (OC/EC)pri which is the ratio of the measured values of OC and EC from the primary combustion source. In this study, three different ways were applied to OC and EC concentrations in PM2.5 measured at Seoul for determining (OC/EC)pri: 1) the minimum value of OC/EC ratio during the measurement period; 2) regression analysis of OC vs. EC to select the lower 5-20% OC/EC ratio; 3) determining the OC/EC ratio which has lowest correlation coefficient value (R2) between EC and SOC which is reported as minimum R squared method (MRS). Each (OC/EC)pri ratio of three ways are 0.35, 1.22, and 1.77, respectively from the 1 hourly data. We compared the (OC/EC)pri ratio from 1hourly data with 24 hourly data and revealed that (OC/EC)pri estimated from 24 hourly data had twice larger than 1hourly data due to the low time resolution of sampling. We finally confirmed that the most appropriate value of (OC/EC)pri is that calculated by a regression analysis of 1 hourly data and estimated SOC amounts at PM2.5 of the Seoul atmosphere.
Keywords
PM2.5, OC/EC ratio of primary emission, Primary organic carbon (POC), Secondary organic carbon (SOC), EC tracer method
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