DOI QR코드

DOI QR Code

Simple priority setting method for Screening in public health assessment of waste incineration facilities

폐기물 소각시설 주변 환경보건평가 중 스크리닝 단계에서의 우선순위 선정기법에 관한 연구

  • Kim, Gi Young (Department of Occupational Health & Safety Engineering, Inje University) ;
  • Hong, Seung Cheol (Department of Occupational Health & Safety Engineering, Inje University)
  • 김기영 (인제대학교 보건안전공학과) ;
  • 홍승철 (인제대학교 보건안전공학과)
  • Received : 2012.06.07
  • Accepted : 2012.08.08
  • Published : 2012.10.31

Abstract

Environmental and public health concern for the emission of air pollutants from burn-up process in waste incineration plants located in the vicinity of living environment was increased during the past decade. The purpose of this study was to suggest of the simple and rapid method of priority setting model for the decision of full-scale public health assessment. This method was consists of total 5-step. Step 1 was "secure the satellite map" and we can use the satellite map which serves from the website such as NAVER Co. Step 2 was "drawing mesh on the map" for catch the point of occupation of environmental sensitivity facilities, and step 3 was "identification and sorting of the facilities", Step 4 was "setting of weight" using the "weighted linear combination (WLC) method". Finally, all facility was sorted by score. As a result, we can set a priority of 145 facilities based on 177 facilities which managed in local government. Facilities in Seoul metropolitan area was high rank in priority list. On the other side, Facilities located at the country or rural area was low rank because of low occupation of the house and the environmental sensitivity facilities such as kindergarten, elementary school, and hospital. In this study, we suggested simple and rapid method that using for screening procedure of public health assessment.

Keywords

References

  1. 김중기, 박창희, 정재춘, 이성택, 허석, 1996, 소각장에 대한 시민의식 조사분석, 폐기물자원화, 4(2), 87-95.
  2. 배성정, 이화운, 원경미, 1999, 대기확산모델을 사용한 공단주변지역의 대기오염물질농도 예측 및 평가 - ISCST3, FDM, AERMOD를 중심으로 -, 한국환경과학회지, 8(4), 485-490.
  3. 이희연, 2000, 공공시설물 입지선정에 있어서 다기준평가기법의 활용에 관한 연구 -쓰레기 소각장을 사례로 하여-, 대한지리학회지, 35(3), 437-454.
  4. 정상진, 2003, ISC모델의 적용성 평가 - 소각장 주변지역의 단기농도예측, 한국환경과학회지, 12(7), 809-819.
  5. 정종현, 최석규, 김영오, 임정훈, 이강우, 2003, 경주 천군지역 매립시설 주변 영향권역 조사, 환경관리학회지, 9(1), 57-67.
  6. 환경부, 2007, 제3차 폐기물 통계조사, 환경부.
  7. 환경부, 2009, 2008 전국 폐기물 발생 및 처리현황, 환경부.
  8. Aykut Akgun, Serhat Dag, Fikri Bulut 2008, Landslide susceptibility mapping for a landslide-prone area(Findikli, NE of Turkey) by likelihood-frequency ratio and weighted linear combination models, Environmental Geology, 54(6), 1127-1143. https://doi.org/10.1007/s00254-007-0882-8
  9. A. Salman Mahini and M. Gholamalifard, 2006, Siting MSW landfills with a weighted linear combination methodology in a GIS environment, International Journal of Enviornmental Science and Technology, 3(4), 435-445. https://doi.org/10.1007/BF03325953
  10. Charles F. Hester and David Casasent, 1980, Multivariant technique for multiclass pattern recognition, Applied Optics, 19(11), 1758-1761. https://doi.org/10.1364/AO.19.001758
  11. Eastman R, 1999, Multi-criteria evaluation and GIS. In: Longley PA, Goodchild MF, Maguire DJ, Rhind DW (eds) Geographical information systems, 35.
  12. Jiang H, Eastman JR, 2000, Application of fuzzy measures in multicriteria evaluation in GIS, Int J Geog Inform Sci, 14, 173-184. https://doi.org/10.1080/136588100240903
  13. Luseged Ayalew, Hiromitsu Yamagishi, Norimitsu Ugawa, Landslide susceptibility mapping using GIS-based weighted linear combination, the case in Tsugawa area of Agano River, Niigata Prefecture, Japan, Landslides, 1, 73-81.
  14. Sener B, Suzen M. L. Doyuran V, 2006, Landfill site selection by using geographic information systems. Environmental Geology, 49(3), 376-388. https://doi.org/10.1007/s00254-005-0075-2
  15. U. S. Environmental Protection Agency, 1995, User's Guide for the fugitive dust model, EPA.