DOI QR코드

DOI QR Code

Carbon Storages in Aboveground and Root of Pinus koraiensis and Larix leptolepis Stands in Gongju, Chungnam Province

충남 공주지역 잣나무림과 낙엽송림의 지상부와 뿌리에 의한 탄소고정

  • Kang, Kil-Nam (Chungcheongnam-do Forest Environment Research Institute) ;
  • Park, Gwan-Soo (Dept. of Forest Resources, Chungnam National University) ;
  • Lee, Sang-Jin (Dept. of Forest Resources, Chungnam National University) ;
  • Lee, Hang-Goo (Dept. of Forest Resources, Chungnam National University) ;
  • Kim, Jun-Sung (Chungnam Provincial Office of National Forestry Cooperatives Federation) ;
  • Kim, Yeon-Tae (Chungcheongnam-do Forest Environment Research Institute)
  • 강길남 (충청남도 산림환경연구소) ;
  • 박관수 (충남대학교 산림환경자원학과) ;
  • 이상진 (충남대학교 산림환경자원학과) ;
  • 이항구 (충남대학교 산림환경자원학과) ;
  • 김준성 (산림조합중앙회 충남도지회) ;
  • 김연태 (충청남도 산림환경연구소)
  • Received : 2010.04.11
  • Accepted : 2010.06.11
  • Published : 2010.06.30

Abstract

This study has been carried out to estimate carbon contents in an average 40-years-old Pinus koraiensis plantations and an average 37-years-old Larix leptolepis plantations in Gongju, Chungnam Province. Average carbon concentration in stemwood, stembark, branches, needles, and root were 54.31% in Pinus koraiensis and 53.49% in Larix leptolepis stands. Carbon contents was estimated by the equation model logWt=A+BlogD where Wt is oven-dry weight in kg and D is DBH in cm. Total carbon contents was 103.38tC/ha in Pinus koraiensis stands and 96.59tC/ha in Larix leptolepis stands. Net primary carbon production was estimated at 8.79tC/ha/yr in Pinus koraiensis stands and 11.42tC/ha/yr in Larix leptolepis stands.

Keywords

References

  1. 권기철, 이돈구. 2006. 월악산 24년생 잣나무 인공림의 바이오매스와 에너지량. 한국목재공학회지. 34(4):66-75.
  2. 김종성, 손요환, 임주훈, 김진수. 1996. 리기다소나무와 낙엽송 인공조림지의(人工造林地) 지상부 생체량, 질소와 인의 분포 및 낙엽에 관한 연구. 한국임학회지. 85(3):416-425.
  3. 농업기술연구소. 1988. 토양화학분석법. 농촌진흥청. 450.
  4. 박인협, 문광선. 1994. 주요 참나무류 천연림의 물질생산 및 현존량추정식(現存量推定式)에 관한 연구. 한국임학회지. 83(2):246-253.
  5. 박관수, 임재구, 김준성, 고소현. 2003. 주요 참나무류 천연림 생태계의 탄소고정에 관한 연구. 2003한국임학회 학술연구 발표논문집[2월]. 174-176.
  6. 송칠영, 이수욱. 1996. 신갈나무와 굴참나무 천연림 생태계의 현존량 및 물질 생산량에 관한 연구. 한국임학회지. 85(3):443-452.
  7. 이돈구, 김갑태. 1997. 경기도 광주지방에서 자라는 참나무류, 낙엽송 및 잣나무의 수형특성과 물질분배. 한국임학회지. 86(2):208-213.
  8. 이명종. 1998. 강원도 지방 잣나무 인공림의 임령변화에 따른 지상부 현존량과 양분축적. 한국임학회지. 87(2): 276-285.
  9. 이상진. 2008. 충주지역의 자작나무와 가래나무 조림지의 물질생산과 탄소고정에 관한 연구. 충남대학교 석사 학위 논문. p44.
  10. 이수욱. 1985. 강원도산 소나무 천연림 생태계의 Biomass 및 Net primary production에 관한 연구. 한국임학회지. 71:74-81.
  11. 이영진, 서연옥, 박상문, 표정기, 김래현, 손영모, 이경학, 김형호. 2009. 강릉지방 27년생 잣나무조림지의 바이오매스에 관한 연구. 경상대학교 농업생명과학연구원(구 경상대학교 농업자원이용연구소). 농업생명과학연구. 43(1):1-8.
  12. Alban, D.H., and D.A. Perala. 1992. Carbon storage in Lake States aspen ecosystems. Canadian Journal of Forest Research 22:1107-1110. https://doi.org/10.1139/x92-146
  13. Alexeyev, V.A. and R.A. Birdsey. 1998. Carbon Storage in Forests and Peat Lands of Russia. USDA-USFS Gene. Tech. Rep. NE-244. 1-37p.
  14. Birdsey, R.A. 1992. Carbon Storage and Accumlation in United States Forest Ecosystems. USDA-USFS Gen. Tech. Rep. WO-59.
  15. Dixon, R.K., S. Brown, R.A. Houghton, A.M. Solomon, M.C. Trexler and J. Wisniewskil. 1994. Carbon pools and flux of global forest ecosystem. Science. 263:185-190. https://doi.org/10.1126/science.263.5144.185
  16. Earth Negotiation Bulletin. 2001. A reporting service for environment and development nego-tiations. COP-6 vis. http://www.lisd.ca/climate/cop6bis/.
  17. Kurz, W.A., M.J. Apps, T.M Webb and P.J. McNamee. 1992. The carbon budget of the Canadian Forest Sector; Phase I. Inf. Rep. NOR-X-326, Forestry Canada, Edmonton, Alberta. 56pp.
  18. Laitat, E., T. Karjalainen, D. Loustau and M. Lindner. 2000. Contribution of forests and forestry to mitigate greenhouse effects. Biotechnology, Agronomy Society and Environment. 4(4):241-251.
  19. McPherson, E.G. and J.R. Simpson. 1999. Carbon Dioxide Reduction through Urban Forestry : Guideline for Professional and Vol-unteer Tree Planters. USDA-USFS Gen. Tech. Rep. PSW-GTR-171. 237p.
  20. Post, W.M., T. Peng, W. R. Emanuel, A. W. King, V. H. Dale and D. L. DeAngelis. 1990. The global carbon cycle. Am. Sci. 78:310-326.
  21. Satoo, T. and H.A.I. Madgwick. 1982. Forest Biomass. Martinus Nijh off/Dr W. Junk Publisher, The Hague. 152.
  22. Schroeder, P.E. and J.K. Winjum. 1995. Assessing Brazil's carbon budget : I. Biotic carbon pool. Forest Ecology and Management. 75:77-86. https://doi.org/10.1016/0378-1127(95)03532-F
  23. Sedjo, R.A. 1989. Forests: A tool to moderate global warning? Environment 31(1):15-21.
  24. Tans, P.P., I.Y. Fung and T. Takahashi. 1990. Observational constraints on the global atmospheric $CO_2$ budget. Scinece. 247:1431-1438. https://doi.org/10.1126/science.247.4949.1431
  25. Vitousek, P.M. 1991. Can planted forests counteract increasing atmospheric carbon dioxide? J. Environ. Qual. 20:348-354.
  26. Watson, R.T., I.R. Novel, B. Bolin, N.H. Ravindranath, D.J. Verado and D.J. Dokken. 2000. Land use, Land-use Change, and Forestry. Cambridge University Press. 377p.
  27. Whittaker, R.H. and P.L. Marks. 1975. Methods of assessing terrestrial productivity. Pages 55-118 in H. Lieth and R.H. Whittaker. ed. Primary Productivity of the Biosphere. Springer-Verlag. New York. Inc.