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The productivity of mixed mountain forests comprised of Fagus sylvatica, Picea abies, and Abies alba across Europe

  • Torben Hilmers
  • , Admir Avdagić
  • , Leszek Bartkowicz
  • , Kamil Bielak
  • , Franz Binder
  • , Andrej Bončina
  • , Laura Dobor
  • , David I. Forrester
  • , Martina L. Hobi
  • , Aida Ibrahimspahić
  • , Andrzej Jaworski
  • , Matija Klopčič
  • , Bratislav Matović
  • , Thomas A. Nagel
  • , Rudolf Petráš
  • , Miren Del Rio
  • , Branko Stajić
  • , Enno Uhl
  • , Tzvetan Zlatanov
  • , Roberto Tognetti
  • Hans Pretzsch
  • University Sarajevo
  • University of Agriculture
  • Warsaw University of Life Sciences
  • Bavarian State Institute of Forestry (LWF)
  • Univ. of Ljubljana
  • Czech University of Life Sciences Prague
  • Snow and Landscape Research WSL
  • University of Novi Sad
  • University of East Sarajevo
  • National Forest Centre - Forest Research Institute Zvolen
  • Forest Research Centre INIA-CIFOR Forest Research Centre
  • Sustainable Forest Management Research Institute University of Valladolid & INIA
  • University of Belgrade
  • Technical University of Munich
  • Bulgarian Academy of Sciences
  • University of Molise

Research output: Contribution to journalArticlepeer-review

62 Scopus citations

Abstract

Mixed mountain forests of European beech (Fagus sylvatica L.), Norway spruce (Picea abies (L.) Karst), and silver fir (Abies alba Mill.) cover a total area of more than 10 million hectares in Europe. Due to altitudinal zoning, these forests are particularly vulnerable to climate change. However, as little is known about the long-term development of the productivity and the adaptation and mitigation potential of these forest systems in Europe, reliable information on productivity is required for sustainable forest management. Using generalized additive mixed models this study investigated 60 long-term experimental plots and provides information about the productivity of mixed mountain forests across a variety of European mountain areas in a standardized way for the first time. The average periodic annual volume increment (PAI) of these forests amounts to 9.3 m3ha-1y-1. Despite a significant increase in annual mean temperature the PAI has not changed significantly over the last 30 years. However, at the species level, we found significant changes in the growth dynamics. While beech had a PAI of 8.2 m3ha-1y-1 over the entire period (1980-2010), the PAI of spruce dropped significantly from 14.2 to 10.8 m3ha-1y-1, and the PAI of fir rose significantly from 7.2 to 11.3 m3ha-1y-1. Consequently, we observed stable stand volume increments in relation to climate change.

Original languageEnglish
Pages (from-to)512-522
Number of pages11
JournalForestry
Volume92
Issue number5
DOIs
StatePublished - 12 Dec 2019

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 12 - Responsible Consumption and Production
    SDG 12 Responsible Consumption and Production
  2. SDG 13 - Climate Action
    SDG 13 Climate Action
  3. SDG 15 - Life on Land
    SDG 15 Life on Land

Keywords

  • climate adaption
  • growth stability
  • long-term experiments
  • niche complementarity
  • permanent research plots
  • resilience

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