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2012~2013년 국내 석유계 에너지원의 열량 및 탄소배출계수 개발

Development of Calorific Values and Carbon Emission Factors for Petroleum Energy in Korea from 2012 to 2013

  • 임완규 (한국석유관리원 석유기술연구소) ;
  • 도진우 (한국석유관리원 석유기술연구소) ;
  • 강형규 (한국석유관리원 석유기술연구소) ;
  • 하종한 (한국석유관리원 석유기술연구소) ;
  • 이상섭 (충북대학교 환경공학과)
  • Lim, Wan-Gyu (Research Institute of Petroleum Technology, Korea Petroleum Quality & Distribution Authority) ;
  • Doe, Jin-Woo (Research Institute of Petroleum Technology, Korea Petroleum Quality & Distribution Authority) ;
  • Kang, Hyung-Kyu (Research Institute of Petroleum Technology, Korea Petroleum Quality & Distribution Authority) ;
  • Ha, Jong-Han (Research Institute of Petroleum Technology, Korea Petroleum Quality & Distribution Authority) ;
  • Lee, Sang-Sup (Department of Environmental Engineering, Chungbuk National University)
  • 투고 : 2014.03.28
  • 심사 : 2014.06.17
  • 발행 : 2014.08.31

초록

Country-specific data for net calorific values and carbon emission factors requires for a higher tier estimate of greenhouse gas emissions in the energy sector. The objective of this study is to develop country-specific net calorific values and carbon emission factors for petroleum energy produced in Korea. Calorific values and carbon contents of the fuels were measured using the oxygen bomb calorimeter method and the CHN elemental analysis method, respectively. Sulfur and hydrogen contents, which were used to calculate the net calorific value, were also measured and then net calorific values and carbon emission factors were determined based on the measurement results. The net calorific values and carbon emission factors determined for the petroleum produced in Korea 2012 and 2013 were compared to those in the 2006 IPCC Guidelines. Most of the values were different compared with the default values of the 2006 IPCC Guidelines although those were placed within their upper and lower limits. Time series analysis results showed inconsistent seasonal variation for the net calorific values and carbon emission factors.

키워드

참고문헌

  1. American Society for Testing and Materials (2009) Standard Test Method for Heat of Combustion of Liquid Hydrocarbon Fuels by Bomb Calorimeter, ASTM D240.
  2. American Society for Testing and Materials (2010) Standard Test Methods for Instrumental Determination of Carbon, Hydrogen, and Nitrogen in Petroleum Products and Lubricants, ASTM D5291.
  3. Edwards, R., J.F. Larive, D. Rickeard, and W. Weindorf (2013) Well-to-wheels analysis of future automotive fuels and powertrains in the european context, Appendix 1, European Commission.
  4. Eggleston, H.S., L. Buendia, K. Miwa, T. Ngara, and K. Tanabe (2006) 2006 IPCC Guidelines for National Greenhouse Gas Inventories, Volume 1-2, IGES, Japan.
  5. Greenhouse Gas Inventory & Research Center of Korea (2011) National Greenhouse Gas Inventory Report of Korea.
  6. International Organization for Standardization (2003) Petroleum products - Determination of sulfur content - Energy-dispersive X-ray fluorescence spectrometry, ISO8754.
  7. Jeon, E.C., S.J. Myeong, J.H. Jeong, S.H. Lee, J.W. Sa, G.H. Roh, K.H. Kim, and W.S. Bae (2007) Development of Emission Factors for Greenhouse Gas ($CO_2$) from Anthracite Fired Power Plants in Korea, J. Korean Soc. Atmos. Environ., 23(4), 440-448. (in Korean with English abstract) https://doi.org/10.5572/KOSAE.2007.23.4.440
  8. Kainou, K. (2005) Revision of default net calorific values, carbon content factors, carbon oxidization factors and carbon dioxide emission factors for various fuels in 2006 IPCC GHG Inventory Guidelines, RIETI, Japan.
  9. Kim, S.J., J.W. Lee, S.H. Lee, J.H. Sa, B.S. Choi, and E.C. Jeon (2013) Development of Classification Method for Anthracite and $CO_2$ Emission Factor to Improve the Quality of National GHG Inventory, Climate Change Research, 4(1), 27-39. (in Korean with English abstract)
  10. Korean Ministry of Trade, Industry and Energy (2014) Petroleum and Alternative Fuels Business Act.