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Puhtpuistute hinna- ja kasumiküpsuse empiiriline analüüs Eesti majandusmetsades ning selle võrdlus uuendusraiet lubava vanusega Cover

Puhtpuistute hinna- ja kasumiküpsuse empiiriline analüüs Eesti majandusmetsades ning selle võrdlus uuendusraiet lubava vanusega

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Open Access
|Jun 2022

References

  1. Harmon, M.E., Marks, B. 2002. Effects of silvicultural practices on carbon stores in Douglas-fir - Western hemlock forests in the Pacific Northwest, U.S.A.: Results from a simulation model. – Canadian Journal of Forest Research, 32(5), 863–877.
  2. Hartman, R. 1976. Harvesting decision when standing forest has value. – Economic Inquiry, 14(1), 52–58.
  3. Kaimre, P., Nilson, A., Rosenvald, R., Lilleleht, A., Sims, A., Kiviste, A., Drenkhan, R. 2011. Analysis of the impact of the application of stand based maturity ages. (Puistupõhiste küpsusvanuste rakendamise mõju analüüs). – Final report. Tartu, Estonian University of Life Sciences. 103 pp. (In Estonian).
  4. Kaimre, P., Padari, A., Teder, M., Pärt, E. 2015. Forest resource analysis to maximize carbon sequestration. (Metsaressursi analüüs süsiniku sidumise maksimeerimiseks). Tartu, Estonian University of Life Sciences. 47 pp. (In Estonian).
  5. Keskkonnaagentuur. 2021. Estonian Environment Agency. Yearbook Forest 2019. (Aastaraamat Mets 2019). [WWW document]. – URL https://keskkonnaagentuur.ee/media/882/download. [Accessed 3 January 2022].
  6. Keskkonnaministeerium, 2010. Estonian Forestry Development Programme until 2020. (Eesti metsanduse arengukava aastani 2020). Tallinn, Ministry of Environment. 39 pp. (In Estonian).
  7. Kuusinen, M., Siitonen, J. 1998. Epiphytic lichen diversity in old-growth and managed Picea abies stands in southern Finland. – Journal of Vegetation Science, 9(2), 283–292.
  8. Liira, J., Sepp, T., Parrest, O. 2007. The forest structure and ecosystem quality in conditions of anthropogenic disturbance along productivity gradient. – Forest Ecology and Management, 250(1–2), 34–46.
  9. Martikainen, P., Siitonen, J., Punttila, P., Kaila, L., Rauh, J. 2000. Species richness of Coleoptera in mature managed and old-growth boreal forests in southern Finland. – Biological Conservation, 94(2), 199–209.
  10. Metsa majandamise eeskiri. 2021. Rules of Forest Management. – RT I, 06.04.2021, 8. (In Estonian).
  11. Nilson, A. 1979. Comments on the discussion on forest management and the assessment of harvesting sites. (Kommentaare metsakorraldustööde ja raielankide hindamise alase diskussiooni kohta). Mets, Puit, Paber, 9, 5–6. (In Estonian).
  12. Nilson, A. 1997. On forest harvesting planning in Estonia in the computer age. (Metsa raiete kavandamisest Eestis arvutisajandil). Tartu, Transactions of the Estonian Agricultural University. Forestry. (EPMÜ teadustööde kogumik 189. Metsandus). 103–132. (In Estonian).
  13. Nilson, A. 2010. Analysis of the need and possibilities for rotatin age differentiation in mixed stands. (Segapuistute uuendusraie vanuse diferentseerimise vajaduse ja võimaluste analüüs). – Research Report. (Uuringu aruanne). Tallinn, Ministry of Environment. 82 pp. (In Estonian).
  14. Ohlin, B. 2003. Concerning the question of the rotation period in forestry. – Sedjo, R. A. (ed.). Economics of Forestry. Ashgate Publishing, 42–66.
  15. Padari, A. 2017. Creating an updated assortment model. (Uuendatud sortimenteerimise mudeli koostamine). Tartu, Estonian University of Life Sciences. 26 pp.
  16. Padari, A., Muiste, P. 2003. Analysis of maturity ages of Estonian forests. – Baltic Forestry, 9(2), 16−19.
  17. Pärt, E. 1983. Computational design of forest use at Kaarepere Forestry Experimental Centre. (Metsakasutuse arvutuslik projekteerimine Kaarepere metsakatsejaamas). – Diploma thesis. Tartu, Estonian Agricultural Academy. 74 pp. (In Estonian).
  18. Samuelson, P. 1976. Economics of forestry in an evolving society. – Economic Inquiry, 14, 466–492.
  19. Saraev, V., Valatin, G., Peace, A.J, Quine, C.P. 2019. How does a biodiversity value impact upon optimal rotation length? An investigation using species richness and forest stand age. – Forest Policy and Economics, 107, 101927. https://doi.org/10.1016/j.forpol.2019.05.013.
  20. Viitala, E.-J. 2002. Optimal Forest Rotation: Approaches and their Theoretical Basis. (Metsän optimaalinen kiertoaika: Lähestymistavat ja niiden talousteoreettinen perusta). Vantaa, Metsäntutkimuslaitoksen tiedonantoja, Vantaan tutkimuskeskus. 848, 128 pp. (In Finnish).
DOI: https://doi.org/10.2478/fsmu-2021-0021 | Journal eISSN: 1736-8723 | Journal ISSN: 1406-9954
Language: English
Page range: 202 - 219
Submitted on: Dec 23, 2021
Accepted on: Dec 31, 2021
Published on: Jun 4, 2022
Published by: Estonian University of Life Sciences
In partnership with: Paradigm Publishing Services
Publication frequency: 2 times per year

© 2022 Enn Pärt, Paavo Kaimre, published by Estonian University of Life Sciences
This work is licensed under the Creative Commons Attribution 4.0 License.