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The amount of carbon in the undergrowth biomass of main types of forests stands in Poland Cover

The amount of carbon in the undergrowth biomass of main types of forests stands in Poland

Open Access
|Mar 2016

References

  1. Apps M.J., Kurz W.A., Beukema S.J., Bhatti J.S. 1999. Carbon budget of the Canadian forest product sector., 2, 25–41.
  2. Banaszuk P., Matowicka B. 1996. Soil trophism and undergrowth layer primary production in pine forestin Szelągówka nature reserve in north-eastern Poland (in Polish)., 9, 101–128.
  3. Banaszuk P. 1996. The chemical composition of the biomass of trees and undergrowth plants in wet pine forestand fresh pine forestin Szelągówka nature reserve (in Polish)., 9, 137–142.
  4. Bhatti J.S., Apps M.J., Jiang H. 2002. Influence of nutrients, disturbances and site conditions on carbon stocks along a boreal forest transect in central Canada., 242, 1–14.
  5. Cannell M.G. 2003. Carbon sequestration and biomass energy on the set: theoretical, potential and achievable capacities globally, in Europe and the UK., 24, 97-116.
  6. Czerwiński Z., Pracz J. 1995a. Content of mineral components in the herb layer plants of the alderwood., 21 (2), 171–176.
  7. Czerwiński Z., Pracz J. 1995b. Content of mineral components in the overground parts of the herb layer plants incommunities., 21 (2), 139–152.
  8. Czerwiński Z., Pracz J. 1995c. Content of mineral elements in the overground parts of herb layer plants in thecommunity., 21 (2), 195–204.
  9. Czerwiński Z., Pracz J. 1995d. Content of mineral elements in the overground parts of herb layer plants in the community ofKleist 1929., 21 (2), 221–226.
  10. Dyguś K.H., Traczyk H. 1995. Structural properties and herb layer production in the community ofKleist 1929., 21 (2), 213–219.
  11. Galiński W. 1995. Carbon balance in forest ecosystems in Poland – comparison of years 1989, 1990 i 1991 (in Polish)., 3, 31–39.
  12. Johnson W.C., Sharpe D.M. 1983. The ratio of total merchantable forest biomass and its application to the global carbon budget., 13, 372–383.
  13. Karjalainen T. 1996. Model Computations on Sequestration of Carbon in Managed Forests and Wood Products under Changing Climatic Conditions in Finland., 47, 311–328.
  14. Karjalainen T., Pussinen A., Liski J., Nabburs G., Erhard M., Eggers T., Sonntag M., Mohren G.M. 2002. An approach towards an estimate of the impact of forest management and climate change on the European forest sector carbon budget: Germany as a case study., 162, 87–103.
  15. Karjalainen T., Pussinen A., Liski J., Nabburs G., Er-hard M., Eggers T., Lapvetaläinen T., Kaipainen T. 2003. Scenario analysis of the impact of forest management and climate change on the European forest sector carbon budget., 5, 141–155.
  16. Kotowska J. 1995. Structural characteristics and primary production of the herb layer inPol. 1962 community., 21 (2), 185–194.
  17. Kurbanov E.A., Post W.M. 2002. Changes in area and carbon in forests of the middle Zavolgie: A regional case study of Russian Forests., 55, 157–173.
  18. Linder M., Sohngen B., Joyce L., Price D.T., Bernier P.Y., Karjalainen T. 2002. Integrated forestry assessments for climate changes impacts., 162, 117–136.
  19. Muukkonen P. 2006. Forest inventory-based large-scale forest biomass and carbon budget assessment: new enhanced methods and use of remote sensing for verification. Dissertationes Forestales 30, Finnish Forest Research Institute, University of Helsinki.
  20. Nabuurs G.J., Paivinen R., Sikkema R., Mohren G.M. 1997. The role of European forests in the global carbon cycle – a review., 13 (6), 345–358.
  21. Nikolov N., Zeller K.F. 2003. Modeling coupled interactions of carbon, water and ozone exchange between terrestial ecosystems and the atmosphere. I: Model description., 124, 231–246.
  22. Pasternak-Kuśmierska D., Kotowska J. 1995. Structural characteristics and primary production of the herb layer in theTracz. 1962 community., 21 (2), 127–138.
  23. Pasternak-Kuśmierska D., Traczyk T. 1995a. Phytosorption of nutrients by the herb layer of theTracz. 1962 community., 21 (2), 153–162.
  24. Pasternak-Kuśmierska D., Traczyk T. 1995b. Phytosorption of nutrients in the herb layer of theKoch. 1926 community., 21 (2), 177–183.
  25. Pussinen A., Karjalainen T., Kellomäki S., Mäkipää R. 1997. Potential contribution of the forest sector to carbon sequestration in Finland., 13 (6), 377–387.
  26. Shepashenko D., Shvidenko A., Nilsson S. 1998. Phytomass (live biomass) and carbon of Siberian forests., 14 (1), 21–31.
  27. Turner D.P., Koerper G.J., Harmon M.E., Lee J.J. 1995. A carbon budget for forests of the conterminous United States., 5, 421–436.
  28. Zeller F.F., Nikolov N.T. 2000. Quantifying simultaneous fluxes of ozone, carbon dioxide and water vapor above a subalpine forest ecosystem., 107, 1–20.
DOI: https://doi.org/10.1515/ffp-2015-0024 | Journal eISSN: 2199-5907 | Journal ISSN: 0071-6677
Language: English
Page range: 233 - 239
Submitted on: Nov 23, 2015
Accepted on: Dec 3, 2015
Published on: Mar 7, 2016
Published by: Forest Research Institute
In partnership with: Paradigm Publishing Services
Related subjects:

© 2016 Sławomir Janyszek, Paweł Strzeliński, Magdalena Janyszek, Dorota Wrońska-Pilarek, published by Forest Research Institute
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.