Have a personal or library account? Click to login
Aboveground Net Primary Production of tree cover at the post-disturbance area in the Tatra National Park, Slovakia Cover

Aboveground Net Primary Production of tree cover at the post-disturbance area in the Tatra National Park, Slovakia

Open Access
|Dec 2015

References

  1. Cienciala, E., Černý, M., Tatarinov, F., Apltauer, J., Exnerová, Z., 2006: Biomass functions applicable to Scots pine. Trees, 20:483–495.
  2. Dale, V. H., Joyce, L. A., McnNulty, S., Neilson, R. P., Ayres, M. P., Flanningan, M. D. et al., 2001: Climate change and forest disturbances. BioSciences, 51:723–734.
  3. Dutca, I., Abrudan, I. V., Stancioiu, P. T., Blujdea, V., 2010: Biomass conversion and expansion factors for young Norway spruce (Picea abies [L.] Karst.) trees planted on non-forest lands in Eastern Carpathians. Notuale Botanicae Horti Agrobotanici Cluj-Napoca, 38:286–292.
  4. Gardiner, B., Schuck, A. S., Schelgaas, M. J., Orazio, Ch., Blennow, K., Nicoll, B. et al., 2011: Living with storm damage to forests. European Forest Institute, Joensuu, 129 p.
  5. Gubka, A. et al. 2014: Vetrová kalamita Žofia z 15. 5. 2014. Usmernenie Lesníckej ochranárskej služby, NLC, Zvolen, 8 p.
  6. Chroust, L., 1985: Above–ground biomass of young pine forests (Pinus sylvestris) and its determination. Communicationes Instituti Forestalis Čechosloveniae, 14 :127–145.
  7. Chroust, L., Tesařová, 1985: Quantification of above-ground components of 20 years old Norway spruce (Picea abies [L.] Karst.). Communicationes Instituti Forestalis Čechosloveniae, 14:111–126.
  8. Kho, L. K., Malhi, Y., Tan, S. K. S., 2013: Annual budget and seasonal variation of aboveground and belowground net primary productivity in a lowland dipterocarp forest in Borneo. Biogeosciences, 118:1282–1296.
  9. Kaštier, P., Bučko, J., 2010: Analýza intenzity a dislokácie škôd spôsobených raticovou zverou na iniciálnych štádiách lesa po kalamite roku 2004 vo Vysokých Tatrách. In: Výskum smrečín destabilizovaných škodlivými činiteľmi. NLC Zvolen, p. 198–205.
  10. Konôpka, B., 2003: Needle traces as indicators of growing conditions in Scots pine (Pinus sylvestris L.). Journal of Forest Science, 49:1–10.
  11. Konôpka, B., Pajtík, J., Moravčík, M., Lukac, M., 2010: Biomass partitioning and growth efficiency in four naturally regenerated forest tree species. Basic and Applied Ecology, 11:234–243.
  12. Konôpka, B., Pajtík, J., Noguchi, K., Lukac, M., 2013: Replacing Norway spruce with European beech: A comparison of biomass and net primary production patterns in young stands. Forest Ecology and Management, 302:185–192.
  13. Konôpka, B., Pajtík, J., 2014: Similar foliage area but contrasting foliage biomass between young beech and spruce stands. Lesnícky časopis - Forestry Journal, 60:205–213.
  14. Konôpka, B., Pajtík, J., Šebeň, V., 2015: Biomass functions and expansion factors for young trees of European ash and Sycamore maple in the Inner Western Carpathians. Austrian Journal of Forest Science, 132:1–60.
  15. Koreň, M., 2005: Čo sa stalo 19. novembra 2004 v tatranskej oblasti? Tatry, 44:4–6.
  16. Kurz, W. A., Apps, M. J., 1999: A 70-year retrospective analysis of carbon fluxes in the Canadian forest sector. Ecological Applications, 9:526–547.
  17. Lal, R., Follett, R.F., 2009: Soil carbon sequestration and greenhouse effects. Soil Science Society of America, Madison, 366 p.
  18. Liu, S., Bond-Lamberty, B., Hicke, J. A., Vargas, R., Zhao, S., Chen, J. et al., 2011: Simulating the impacts of disturbances on forest carbon cycling in North America: Processes, data, models, and challenges. Journal of Geographical Research, 16:1–22.
  19. Marklund, L. G., 1987: Biomass functions for Norway spruce (Picea abies L. Karst.) in Sweden. Umeå, Swedish University of Agricultural Sciences, 27 p.
  20. Nikolov, Ch., Konôpka, B., Kajba, M., Galko, J., Kunca, A., Janský, L., 2014: Post-disaster management and bark beetle outbreak in Tatra National Park, Slovakia. Mountain Research and Development, 34: 326–335.
  21. Pajtík, J., Konôpka, B., Lukac, M., 2008: Biomass functions and expansion factors in young Norway spruce (Picea abies [L.] Karst) trees. Forest Ecology and Management, 256:1096–1103.
  22. Pajtík, J., Konôpka, B., Lukac, M., 2011a: Individual biomass factors for beech, oak and pine in Slovakia: a comparative study in young naturally regenerated stands. Trees, 25:277–288.
  23. Pajtík, J., Konôpka, B., Priwitzer, T., 2011b: Alokácia dendromasy v mladých porastoch buka obyčajného a duba zimného. Zprávy lesnického výzkumu, 56:291–300.
  24. Pajtík, J., Konôpka, B., Marušák, R., 2013: Above-ground net primary productivity in young stands of beech and spruce. Lesnícky časopis - Forestry Journal, 59:154–162.
  25. Pajtík, J., Konôpka, B., 2015: Quantifying edible biomass on young Salix caprea and Sorbus aucuparia trees for Cervus elaphus: estimates by regression models. Austrian Journal of Forest Science, 132:61–80.
  26. Pajtík, J., Konôpka, B., Bošeľa, M., Šebeň, V., Kaštier, P., 2015a: Modelling forage potential for red deer: A case study in post-disturbance young stands of rowan. Annals of Forest Research, 58:91–107.
  27. Pajtík, J., Konôpka, B., Šebeň, V., Michelčík, P., Fleischer, P., 2015b: Alokácia biomasy smrekovca opadavého prvého vekového stupňa vo Vysokých Tatrách. Štúdie TANAP-u, 11:229–241.
  28. Schmidt-Vogt, H., 1977: Die Fichte. Band I. Taxomomie - Verbre-Band I. Taxomomie – Verbreitung – Morphologie Ökologie - Waldgesellschaften. Hamburg and Berlin, Verlag Paul Parey 472 p.
  29. Seidl, R., Rammer, W., Bellos, P., Hochbichler, E., Lexer, M.J., 2010: Testing generalized allometries in allocation modeling within an individual-based stimulation framework. Trees, 24:139–150.
  30. Skovsgaard, J. P., Bald, C., Nord-Larsen, T., 2011: Functions for biomasss and basic denisty of stem, crown and root system of Norway spruce (Picea abies [L.] Karst.) in Denmark. Scandinavian Journal of Forest Research, 26:3–20.
  31. Šebeň, V., 2011a: Prirodzená obnova po kalamite z novembra 2004 vo Vysokých Tatrách. In: Výskum smrečín destabilizovaných škodlivými činiteľmi. Zvolen, Národné lesnícke centrum, p. 297–308.
  32. Šebeň, V., 2011b: Podiel a skladba prežívajúcej umelej obnovy na kalamitisku vo Vysokých Tatrách. In: Výskum smrečín destabilizovaných škodlivými činiteľmi. Zvolen, Národné lesnícke centrum, p. 309–321.
  33. Šebeň, V., Konôpka, B., Bošeľa, M., Pajtík, J., 2015: Contrasting development of declining and living larch-spruce stands after a disturbance event: A case study in High Tatra Mts. Lesnícky časopis - Forestry Journal, 61:157-166.
  34. Tateno, R., Hishi, T., Takeda, H., 2004: Above- and belowground biomass and net primary production in a cool-temperate deciduous forest in relation to topographical changes in soil nitrogen. Forest Ecology and Management, 193:297–306.
  35. Tobin, B., Nieuwenhuis, M., 2007: Biomass expansion factors for Sitka spruce (Picea sitchensis (Bong) Carr.) in Ireland. European Journal of Forest Research 126: 198–196.
  36. Vološčuk, I. et al., 1994: Tatranský národný park. Gradus, Martin, 557 p.
  37. Waring, R. H., Lansberg, J. J., Williams, M., 1998: Net primary production of forests: a constant fraction of gross primary production? Tree Physiology, 18:129–134.
  38. Wirth, C., Schumacher, J., Schulze, E. D., 2004: Generic biomass functions for Norway spruce in central Europe – a meta-analysis approach toward prediction and uncertainty estimation. Tree Physiology, 24:121–139.
  39. Xiao, Ch.-W., Yuste, J. C., Janssens, I., Roskams, P., Nachtergale, L., Carrara, A. et al., 2003: Above- and belowground biomass and net primary production in a 73-year-old Scots pine forest. Tree Physiology, 23:505–516.
  40. Yuste, J. C., Konôpka, B., Janssens, I., Coenen, K., Xiao, C. W., Ceulemans, R., 2005 Contrasting net primary productivity and carbon distribution between neighbouring stands of Quercus robur and Pinus sylvestris. Tree Phyiology, 25:701–712.
  41. Zianis, D., Muukkonene, P., Mäkipää, R., Mencuccini, M., 2005: Biomass and stem volume equations for tree species in Europe. Silva Fennica, 4:1–63.
  42. Zianis, D., Mencuccini, M., 2005: Aboveground net primary productivity of a beech (Fagus moesiaca) forest: a case study of Naousa forest, north Greece. Tree Physiology, 25:713–722.
DOI: https://doi.org/10.1515/forj-2015-0025 | Journal eISSN: 2454-0358 | Journal ISSN: 2454-034X
Language: English
Page range: 167 - 174
Published on: Dec 10, 2015
Published by: National Forest Centre and Czech University of Life Sciences in Prague, Faculty of Forestry and Wood Sciences
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2015 Bohdan Konôpka, Jozef Pajtík, Vladimír Šebeň, Michal Bošeľa, published by National Forest Centre and Czech University of Life Sciences in Prague, Faculty of Forestry and Wood Sciences
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.