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Characteristics of Hazardous Air Pollutant Emissions from Waste Incinerators

폐기물소각시설의 유해대기오염물질 배출특성 연구

  • Park, J.M. (Emission Sources Research Division, Environmental Cap. System Research Department, NIER) ;
  • Lee, S.B. (Emission Sources Research Division, Environmental Cap. System Research Department, NIER) ;
  • Kang, J.G. (Emission Sources Research Division, Environmental Cap. System Research Department, NIER) ;
  • Kim, J.P. (Emission Sources Research Division, Environmental Cap. System Research Department, NIER) ;
  • Choi, E.S. (Emission Sources Research Division, Environmental Cap. System Research Department, NIER) ;
  • Hwang, W.G. (Emission Sources Research Division, Environmental Cap. System Research Department, NIER) ;
  • Kwon, O.S. (Emission Sources Research Division, Environmental Cap. System Research Department, NIER)
  • 박정민 (국립 환경과학원 배출시설연구과) ;
  • 이상보 (국립 환경과학원 배출시설연구과) ;
  • 강준구 (국립 환경과학원 배출시설연구과) ;
  • 김진필 (국립 환경과학원 배출시설연구과) ;
  • 최은선 (국립 환경과학원 배출시설연구과) ;
  • 황원구 (국립 환경과학원 배출시설연구과) ;
  • 권오상 (국립 환경과학원 배출시설연구과)
  • Published : 2007.04.30

Abstract

In this study, we have investigated waste incinerators which are one of the major HAPs emission sources. In order to obtain more reliable HAPs emission data from waste incinerators, direct sampling for the possible pollutants from the stack was carried out and the analysis was performed. The purpose of study was to understand the emission status from waste incinerators and recognize the problems and finally to set up a strategy to reduce the HAPs emissions from waste incinerators. The emission concentrations of 8 species of heavy metals and 16 species of PAHs have been analyzed for the first time in Korea. Not only the emission characteristics of HAPs from waste incinerators were identified, but also the analysis of reduction efficiencies for control devices such as BF and wet scrubbing systems was carried out.

Keywords

References

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  1. Experimental Study on Thermal NOx and CO Emission in a Laboratory-Scale Incinerator with Reversed Secondary Air Jet Injection vol.40, pp.8, 2016, https://doi.org/10.3795/KSME-B.2016.40.8.503