Development of Greenhouse Gas Emission Factor of B-C Oil Fired Power Plants in Korea

우리나라 B-C유 사용 발전시설의 온실가스 배출계수 개발

  • Kim, Jinsu (Department of Earth and Environmental Sciences, Sejong University) ;
  • Lee, Seehyung (Department of Earth and Environmental Sciences, Sejong University) ;
  • Myeong, Soojeong (Korea Environment Institute) ;
  • Jeong, Jae-Hak (Department of Earth and Environmental Sciences, Sejong University) ;
  • Lee, Seongho (Department of Earth and Environmental Sciences, Sejong University) ;
  • Kim, Ki-Hyun (Department of Earth and Environmental Sciences, Sejong University) ;
  • Bae, Wisup (Department of Earth and Environmental Sciences, Sejong University) ;
  • Jeon, Eui-Chan (Department of Earth and Environmental Sciences, Sejong University)
  • 김진수 (세종대학교 지구환경과학과) ;
  • 이시형 (세종대학교 지구환경과학과) ;
  • 명수정 (한국환경정책.평가연구원) ;
  • 정재학 (세종대학교 지구환경과학과) ;
  • 이성호 (세종대학교 지구환경과학과) ;
  • 김기현 (세종대학교 지구환경과학과) ;
  • 배위섭 (세종대학교 지구환경과학과) ;
  • 전의찬 (세종대학교 지구환경과학과)
  • Received : 2007.09.07
  • Accepted : 2009.04.01
  • Published : 2009.04.30

Abstract

In order to provide fundamental data for developing greenhouse gas emission factor, we investigated power plants in Korea using B-C oil as Energy source. The power plant is a major source of greenhouse gases among the sectors of fossil fuel combustion, thus information of its emission factors is very essential to the establishment of control strategies for the greenhouse gas emissions. The caloric value of fuel was analyzed using calorimeter and the calorific value was 10,419 kcal/kg. The $CO_2$ concentration of flue gas and elemental analysis were conducted using GC-FID and elemental analyzer. The $CO_2$ emission factors from fuel analysis was 75,410 kg/TJ and that from $CO_2$ gas analysis was 94,265 kg/TJ. When compared with IPCC values, the emission factors by the fuel analysis was 2.5% lower, and that by $CO_2$ gas analysis was about 21.85% higher.

Keywords

References

  1. 산업자원부 에너지경제연구원, 2004, 에너지통계연보
  2. 산업자원부 에너지경제연구원, 2007, 기후변화협약과 교토의정서
  3. 에너지관리공단, 2003, 온실가스 저감량 산정방법에 대한 평가분석툴 연구, 최종보고서, 20-25
  4. 에너지관리공단, 2006, 국내 석탄류 시료채취 및 분석실험
  5. 전의찬, 사재환, 이성호, 정재학, 김기현, 배위섭, 2006, 에너지사용시설의 온실가스 배출 특성 연구 - 유연탄 화력발전소의 이산화탄소를 중심으로 - 한국대기환경학회, 한국대기환경학회지 22(1), 107-116
  6. 정재학, 임호수, 김기현, 배위섭, 전의찬, 2006, 온실가스 기기분석의 정도관리를 위한 고려사항 연구, 한국대기환경학회, 한국대기환경학회지, 22(5), 712-718
  7. 전의찬, 명수정, 정재학, 이성호, 사재환, 노기환, 김기현, 배위섭, 2007, 무연탄 화력발전소의 이산화탄소 배출계수 개발, 한국대기환경학회, 한국대기환경학회지, 23(4), 440-448 https://doi.org/10.5572/KOSAE.2007.23.4.440
  8. 한국전력공사, 2005, 한국전력통계
  9. 환경부, 2004, 대기오염공정시험법
  10. AGO, 2001, Technical guidelines(Generator efficiency standards) version 1.2, Australian Greenhouse Office, 14-33
  11. Garcia, I. and Zorraquino, J. V. M., 2002, Energy and environmental opimization in thermoeletrical generating processesapplication of a carbon dioxide capture system, Energy, 27, 607-623 https://doi.org/10.1016/S0360-5442(02)00007-5
  12. Hondo, H., 2005, Life cycle GHG emission analysis of power generation systems: Japanese case, Energy, 30, 2042-2056 https://doi.org/10.1016/j.energy.2004.07.020
  13. IEA/OECD, 2006, $CO_2 $ Emissions from Fuel Combustion, 2006
  14. IPCC, 1996, Revised 1996 IPCC Guidelines for National Greenhouse Gas Inventories
  15. IPCC, 2001, Good Practice Guidance and Uncertainty Management in National Greenhouse Gas Inventories
  16. IPCC, 2006, Guidelines for National Gas Inventories
  17. UK Greenhouse Gas Inventory (1990-2003) SL Baggott et al, September 2005, NETCEN, DEFRA website; http://www.naei.org.uk/emissions/greenhouse_2003.php
  18. US EPA, 2004, UNIT CONVERSIONS, EMISSIONS FACTORS, AND OTHER REFERENCE DATA
  19. US EPA, 2000, Carbon dioxide emissions from the generation of electric power in the united states
  20. Wight G. D., 1994, Fundamentals of air sampling, Lewis Publishers, 135-184