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Estimation of the Heating Value of Major Broad-Leaved Trees due to Moisture Content

주요 활엽수종의 함수율별 발열량 예측

  • Hwang, Jin-Sung (College of Forest & Environmental Sciences, Kangwon National University) ;
  • Oh, Jae-Heun (Forest Practice Research Center, Korea Forest Research Institute) ;
  • Cha, Du-Song (College of Forest & Environmental Sciences, Kangwon National University)
  • 황진성 (강원대학교 산림환경과학대학) ;
  • 오재헌 (국립산림과학원 산림생산기술 연구소) ;
  • 차두송 (강원대학교 산림환경과학대학)
  • Received : 2011.05.03
  • Accepted : 2011.08.25
  • Published : 2011.08.31

Abstract

Heating value is the one of most important factor in energy use of the woods. This study was investigated for determining the heating value according to the moisture content level(%) of major broad-leaved tree in Korea. Heating value was decreased rapidly regardless the kinds of species (Liriodendron tulipifera, Alnus japonica, and Quercus mongolica) and parts of woods (wood part, and bark) as the moisture content (MC) was increased. In addition, bark had higher heating value than wood part. Liriodendron tulipifera showed the highest heating value among the other two species.

Keywords

References

  1. Abe Fusako. 1986. Calorific value of Japanese coniferous wood. Bull. For. & For. Prod. Res. Inst. 338: 91-100.
  2. Boo, K. J., J. H. Bae, J. O. Kim, S. M. Kim, I. G. Lee, J. S. Lee, S. C. Park, J. H. Kim, J. P. Lee, J. W. Kim, S. K. Kim, T. Y. Song, K. S. Lee, and Y. J. Kang. 2007. A study on the energy utilization of ligneous biomass -Focusing on energy production facility fueled by wood chips-. Ministry of commerce, Industry and energy. pp. 292-302.
  3. Hwang, J. S., J. H. Oh, J. S. Lee, N. H. Kim, and D. S. Cha. 2009. Heating value of short rotation coppice species according to moisture content. Jour. Korea. Soc. For. Eng Tech. 7(2): 129-141.
  4. Jo, S. T., O. K. Lee, S. M. Lee, S. H. Choi, and B. J. Ahn. 2009. Application of forestry bio energy. KFRI. pp. 47-54.
  5. Kim, K. Y., Y. J. Yeon. 1999. Combustion engineering. DongHwa Technology Publishing, Paju, Korea.
  6. Lee, J. S., D. S. Cha, J. H. Oh, K. S. Han, and J. J. Kim. 2006. The Report of development on department of unused biomass energy cinversion. (1)Development of energy conversion and application technology for woody-biomass resource. Ministy of commerce, Industry and energy. pp. 1-72.
  7. Park, Y. J., S. Y. LEE, and H. P. Lee. 2008. The thermal characteristics of tree branches, barks, living lwaves and dead leaves in Pinus densiflora and Quercus dentata. J. of Korean Institute of Fire Sci. & Eng. 22(1): 84-92.
  8. Shin, S. J., G. S. Han, S. J. Myeong, J. S. Cho, and I. J. Yeon. 2008. Wood pelletizing using pine root wast biomass -different pelletizing properties between trunk and root biomass of Pinus densiflora. Proc. cf conf. Kor. Soc. For New and Renewable Energy. pp. 71-73.