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Measurement of VOCs Concentrations at Jeonju Industrial Area and Emission Characteristics

전주공단지역의 주요VOCs 배출농도 측정 및 배출원별 특성 분석

  • Kim, Deug-Soo (Department of Environmental engineering, Kunsan National University) ;
  • Yang, Go-Soo (Department of Environmental engineering, Jeonbuk National University) ;
  • Park, Bi-O (Department of Environmental engineering, Jeonbuk National University)
  • 김득수 (군산대학교 토목환경공학부 환경공학) ;
  • 양고수 (전북대학교 화공환경공학부 환경공학) ;
  • 박비오 (전북대학교 화공환경공학부 환경공학)
  • Published : 2007.03.28

Abstract

It will be necessary to make proper management plans to preserve the air quality in good level for the public. In order to make these plans, source information and detail emission inventories of the city and near industrial areas should be given. However, lack of the source measurements data makes us more difficult to complete the source inventory. VOC source Inventory could be utilized for the feasibility study to estimate the contribution of VOC sources presenting to the receptor such as residential area. It may give policy maker an idea how to control the air quality, and improve their social environment in the area. This study shows data that measured VOCs concentrations from the local industrial areas in Jeonju during from May 2005 to January 2006. The samples were collected from the near sources in 7 major factories in the industrial park as well as 5 general sources in near city Jeonju area to elucidate the abundances of speciated VOCs and their spacial and temporal distributions depending on source bases. Industrial sources are as follows; chemical, food, paper, wood, metal, non-metal (glass), and painting (coating) industries. The 5 general sources are sampled from tunnel, gasoline gas station, dry cleaning shop, printing (copy) shop, and road pavement working place in urban area. To understand the near source effect at receptor, samples from the 2 receptor sites (one is at center of the industrial complex and the other site is at distance residential area downwind from the center) were collected and analyzed for the comparison to source concentration. The mass contributions of the speciated VOC to total mass of VOCs measured from the different sources and ambient (2 receptors) were presented and discussed.

Keywords

References

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