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Article

Young Silver Birch Grows Faster and Allocates Higher Portion of Biomass into Stem Than Norway Spruce, a Case Study from a Post-Disturbance Forest

by
Bohdan Konôpka
1,2,
Jozef Pajtík
1,
Vladimír Šebeň
1,*,
Peter Surový
2 and
Katarína Merganičová
2,3
1
National Forest Centre, Forest Research Institute Zvolen, T. G. Masaryka 22, SK 960 01 Zvolen, Slovakia
2
Faculty of Forestry and Wood Sciences, Czech University of Life Sciences Prague, Kamýcká 129, CZ-165 000 Prague, Czech Republic
3
Department of Biodiversity of Ecosystems and Landscape, Institute of Landscape Ecology, Slovak Academy of Sciences, SK 949 01 Nitra, Slovakia
*
Author to whom correspondence should be addressed.
Forests 2021, 12(4), 433; https://doi.org/10.3390/f12040433
Submission received: 5 March 2021 / Revised: 26 March 2021 / Accepted: 2 April 2021 / Published: 4 April 2021
(This article belongs to the Section Forest Ecology and Management)

Abstract

The aim of the paper was to compare young silver birch (Betula pendula Roth.) and Norway spruce (Picea abies L. Karst) growing at the identical site, from the point of contribution of tree components to their aboveground biomass stock, their wood density, radial increment and aboveground biomass production. Our research activities were performed in the High Tatra Mts., which belong to the Tatra National Park (TANAP), Northern Slovakia. Currently, the substantial part of the TANAP territory is covered by post-disturbance young forests which have been growing there since the large-scale windstorm episode in November 2004. Our study combined non-destructive repeated tree measurements performed at two transects in 2016–2020, with destructive tree sampling of twenty 14-year-old individuals for each species. From the gathered data, we derived models estimating standing stock and annual production of aboveground biomass in individual tree components (foliage, branches, stem bark and stem wood), using diameter at breast height (DBH) as a predictor. The results showed contrasting contributions of tree compartments to aboveground biomass stock between birch and spruce. While spruce trees had four times higher contribution of foliage than birches, the reverse situation (1.5-fold difference) was observed for stem over bark biomass. At the same time, birch trees had a 40% greater diameter increment and a 30% denser stem wood than spruce. As for aboveground biomass production, the contribution of the stem as an economically important component was greater in birch than spruce. The results suggest that, in the young growth stage, birch may be advantageous over spruce in both ecological and production properties. Therefore, we believe that strengthening research activities focused on birch ecology and production issues would bring practical recommendations for better utilization of this tree species in forestry and wood-processing industry sectors
Keywords: Betula pendula; Picea abies; aboveground tree components; diameter increment; stem volume; wood density; biomass production Betula pendula; Picea abies; aboveground tree components; diameter increment; stem volume; wood density; biomass production

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MDPI and ACS Style

Konôpka, B.; Pajtík, J.; Šebeň, V.; Surový, P.; Merganičová, K. Young Silver Birch Grows Faster and Allocates Higher Portion of Biomass into Stem Than Norway Spruce, a Case Study from a Post-Disturbance Forest. Forests 2021, 12, 433. https://doi.org/10.3390/f12040433

AMA Style

Konôpka B, Pajtík J, Šebeň V, Surový P, Merganičová K. Young Silver Birch Grows Faster and Allocates Higher Portion of Biomass into Stem Than Norway Spruce, a Case Study from a Post-Disturbance Forest. Forests. 2021; 12(4):433. https://doi.org/10.3390/f12040433

Chicago/Turabian Style

Konôpka, Bohdan, Jozef Pajtík, Vladimír Šebeň, Peter Surový, and Katarína Merganičová. 2021. "Young Silver Birch Grows Faster and Allocates Higher Portion of Biomass into Stem Than Norway Spruce, a Case Study from a Post-Disturbance Forest" Forests 12, no. 4: 433. https://doi.org/10.3390/f12040433

APA Style

Konôpka, B., Pajtík, J., Šebeň, V., Surový, P., & Merganičová, K. (2021). Young Silver Birch Grows Faster and Allocates Higher Portion of Biomass into Stem Than Norway Spruce, a Case Study from a Post-Disturbance Forest. Forests, 12(4), 433. https://doi.org/10.3390/f12040433

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