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BAT-AEL Calculation in Waste Incineration Facility

폐기물 소각시설 최적가용기법 연계배출수준 (BAT-AEL) 설정

  • Shin, Sujeong (Integrated Pollution Prevention and Control Task Force, National Institute of Environmental Research) ;
  • Park, Jae-Hong (Integrated Pollution Prevention and Control Task Force, National Institute of Environmental Research) ;
  • Lee, DaeGyun (Integrated Pollution Prevention and Control Task Force, National Institute of Environmental Research) ;
  • Kim, Dai-Gon (Air Pollution Engineering Division, National Institute of Environmental Research) ;
  • Bae, YeonJoung (Seoul National University)
  • 신수정 (국립환경과학원 통합환경관리체계 추진 TF) ;
  • 박재홍 (국립환경과학원 통합환경관리체계 추진 TF) ;
  • 이대균 (국립환경과학원 통합환경관리체계 추진 TF) ;
  • 김대곤 (국립환경과학원 대기공학연구과) ;
  • 배연정 (서울대학교)
  • Received : 2018.01.04
  • Accepted : 2018.02.01
  • Published : 2018.02.28

Abstract

As the public interest in environmental issues increased, the "Act On The Integrated Control Of Pollutant-Discharging Facility" was enacted. Through the integrated environmental pollution prevention act in which 19 industries with large environmental impacts are sequentially applied, pollutants can be managed in a medium-integrated manner and integrated permission of the business unit is possible and BAT can be applied to enable a scientific and proactive environmental management system. In addition, if the facility with BAT works normally, the pollutant emission is offered with the range of lower limit to upper limit. This study analyzed the overview of Best Available Techniques-Associated Emission Levels (BAT-AEL), and its setting procedure and method, and then suggested the BAT-AEL of a waste incineration facility. In comparative analysis on Emission Limit Values (ELVs) of EU, this study tries to propose improvement matters and development directions if the relevant standard is revised.

Keywords

References

  1. Frost, R.C. (2009) EU Practice in setting Wastewater Emission Limit Values, pp. 1-29.
  2. Integrated Pollution Prevention and Control (IPPC) (2003) Reference Document on the General Principles of Monitoring, pp. 1-20.
  3. Integrated Pollution Prevention and Control (IPPC) (2006) Reference Document on Best Available Techniques for the Waste Incineration.
  4. Jeon, B.H., Cheo, H.C. (2012) Examples of setting the reference value and fit range using Grubb's test in the self-management of work environment measurement, Korean Industrial Health Association, 295, 24-34.
  5. Ministry of Environment (MOE) and National Institute of Environmental Research (NIER) (2016a) Reference Document on Best Available Techniques for the Waste Incineration in Korea, pp. 647-651.
  6. Ministry of Environment (MOE) and National Institute of Environmental Research (NIER) (2016b) Reference Document on Best Available Techniques for the electricity and steam production facility in Korea, pp. 571-584.
  7. Ministry of Environment (MOE) and National Institute of Environmental Research (NIER) (2016c) International Seminar 2016 on Integrated Pollution Prevention and Control, pp. 69-89.
  8. Ministry of Environment (MOE) and National Institute of Environmental Research (NIER) (2017a) Reference Document on Best Available Techniques for the Production of Iron and Steel in Korea, pp. 711-723.
  9. Ministry of Environment (MOE) and National Institute of Environmental Research (NIER) (2017b) Reference Document on Best Available Techniques for the Organic Chemical Industry in Korea, pp. 543-555.
  10. National Law Information Center (NLIC) (2016) Clean Air Conservation Act, www.moleg.go.kr
  11. National Law Information Center (NLIC) (2017) Act on The Integrated Control of Pollutant-Discharging Facility, www.moleg.go.kr
  12. Polders, C., Abeele, L.V.D., Derden, A., Huybrechts, D. (2012) Methodology for determining emission levels associated with the best available techniques for industrial waste water, Journal of Cleaner Production 29-30, 113-121.