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Abstract AI-Helper 아이콘AI-Helper

The purpose of the study was to initially investigate the concentration patterns of $PM_1$, $PM_{2.5}$ and $PM_{10}$ in the Seoul subway lines, and then to figure out the PM behaviors of internal and external sources inside subway tunnels. The PMs were monitored by a...

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AI-Helper 아이콘 AI-Helper

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제안 방법

  • In this study, PM1, PM2.5, and PM10 concentrations had been measured by a real-time dust monitor to investigate the physical characteristics of PM on 5 lines among the 9 Seoul subway lines during winter and summer periods. The subway lines were initially separated into ground and underground sections and then size-oriented PM mass ratios were calculated to figure out the behaviors of internal and external particle sources.
  • In this study, PM1, PM2.5, and PM10 concentrations were initially measured to investigate the physical characteristics of PM on the Seoul subway Line-1 to Line-9 during winter and summer periods. To figure out the PM behaviors of internal and external sources inside tunnels, we investigated size-oriented PM mass ratios extensively in tunnel air, in passenger cabin air, and in the ambient air.
  • 5, and PM10 concentrations had been measured by a real-time dust monitor to investigate the physical characteristics of PM on 5 lines among the 9 Seoul subway lines during winter and summer periods. The subway lines were initially separated into ground and underground sections and then size-oriented PM mass ratios were calculated to figure out the behaviors of internal and external particle sources. We calculated extensively PM mass ratios in tunnel air, passenger cabin air, and in the ambient air.
  • To investigate the temporal and spatial patterns of airborne PM, we monitored the concentrations of PM1, PM2.5, and PM10 in all the Seoul subway lines. Details of object subway lines are described in Table 1 including operational extension distance, number of stations operated, number of passengers carried, and train operation frequency.

데이터처리

  • The distributions were obtained by integrating total concentration range with respect to the frequency distribution of the PM concentration in a certain section. The cumulative distribution analysis was performed using an Excel program. The respective median concentrations of PM10 on the Line-2, 3, 6, 8 and 9 were 122.
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참고문헌 (20)

  1. Chan, C.Y., Chan, L.Y., Lau, W.L., Lee, S.C. (2002b) Commuter Exposure to Particulate Matter in Public Transportation Modes in Hong Kong. Atmospheric Environment 36(21), 3363-3373. 

  2. Chan, L.Y., Lau, W.L., Zou, S.C., Cao, Z.X., Lai, S.C. (2002a) Exposure Level of Carbon Monoxide and Respirable Suspended Particulate in Public Transportation Modes While Commuting in Urban Area of Guangzhou, China. Atmospheric Environment 36(38), 5831-5840. 

  3. Cheng, Y.H., Lin, Y.L., Liu, C.C. (2008) Levels of $PM_{10}$ and $PM_{2.5}$ in Taipei Rapid Transit System. Atmospheric Environment 42(31), 7242-7249. 

  4. Colls, J.J., Micallef, A. (1999) Measured and Modelled Concentrations and Vertical Profiles of Airborne Particulate Matter within the Boundary Layer of a Street Canyon. Science of the Total Environment 235(1), 221-233. 

  5. EPA (1999) Air Quality Criteria for Particulate Matter, Vol. 1, EPA600/P-99/002a. 

  6. Grimm Aerosol Technik (2010) Aerosol Spectrometer and Dust Monitor series 1.108 and 1.109, http://www.wmo-gaw-wcc-aerosol-physics.org/files/OPC-Grimm-model--1.108-and-1.109.pdf 

  7. Jin, H.A., Lee, J.H., Lee, K.M., Lee, H.K., Kim, B.E., Lee, D.W., Hong, Y.D. (2012) The Estimation of $PM_{2.5}$ Emissions and Their Contribution Analysis by Source Categories in Korea. Journal of Korean Society for Atmospheric Environment 28(2), 211-221. 

  8. Kam, W., Cheung, K., Daher, N., Sioutas, C. (2011) Particulate Matter (PM) Concentrations in Underground and Ground-Level Rail Systems of the Los Angeles Metro. Atmospheric Environment 45(8), 1506-1516. 

  9. Kim, K.H., Kim, J.C., Ho, D.X., Jeon, J.S. (2012) a Noticeable Shift in Particulate Matter Levels after Platform Screen-Door Installation in a Korean Subway Station. Atmospheric Environment 49, 219-223. 

  10. Kim, Y.S., Kim, C.N., Kim, K.Y., Roh, Y.M., Lee, C.M. (2008) Spatial Distribution of Particulate Matter ( $PM_{10}$ and $PM_{2.5}$ ) in Seoul Metropolitan Subway Stations. Journal of Hazardous Materials 154(1), 440-443. 

  11. Lee, T.J., Jeon, J.S., Kim, S.D., Kim, D.S. (2010) A Comparative Study on $PM_{10}$ Source Contributions in a Seoul Metropolitan Subway Station before/after Installing Platform Screen Doors. Journal of Korean Society for Atmospheric Environment 26(5), 543-553. 

  12. Lee, T.J., Lim, H.J., Kim, S.D., Park, D.S., Kim, D.S. (2015) Concentration and Properties of Particulate Matter ( $PM_{10}$ and $PM_{2.5}$ ) in the Seoul Metropolitan. Journal of Korean Society for Atmospheric Environment 31(2), 164-172. 

  13. Ministry of Environment (2014) http://www.me.go.kr 

  14. NIER (2016) National Institute of Environmental Research, Annual Report of Air Quality in Korea 2015. 

  15. Park, S.B.S.N. (2013) Chemical Characteristics of $PM_{10}$ and Identification of its Sources in a Seoul Metropolitan Subway Station, Kyung Hee University Master Thesis. 

  16. Qiao, T., Xiu, G., Zheng, Y., Yang, J., Wang, L. (2015b) Characterization of PM and Microclimate in a Shanghai Subway Tunnel, China. Procedia Engineering 102, 1226-1232. 

  17. Qiao, T., Xiu, G., Zheng, Y., Yang, J., Wang, L., Yang, J., Huang, Z. (2015a) Preliminary Investigation of $PM_1,\;PM_{2.5},\;PM_{10}$ and its Metal Elemental Composition in Tunnels at a Subway Station in Shanghai, China. Transportation Research Part D 41, 136-146. 

  18. Seoul Metropolitan Government (2015) Transportation allotment rate, http://traffic.seoul.go.kr/archives/289 

  19. Seoul Metropolitan Government (2016) Subway statistics, http://traffic.seoul.go.kr/archives/296 

  20. Son, Y.S., Salama, A., Jeong, H.S., Kim, S.H., Jeong, J.H., Lee, J.H., Sunwoo, Y., Kim, J.C. (2013) The Effect of Platform Screen Doors on $PM_{10}$ Levels in a Subway Station and a Trial to Reduce $PM_{10}$ in Tunnels. Asian Journal of Atmospheric Environment 7(1), 38-47. 

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