4.7 Article

Mean Annual Wood Density Variations of Larix gmelinii (Rupr.), Quercus mongolica Fisch. ex Ledeb., and Pinus tabulaeformis Carr. at Two Different Stem Heights

期刊

FORESTS
卷 11, 期 4, 页码 -

出版社

MDPI
DOI: 10.3390/f11040394

关键词

air-dry wood density; annual radial increment; cambial age; dendroecology; emmeans; high-frequency densitometry; linear mixed-effects models; lme4; lmerTest

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资金

  1. German Federal Ministry of Education and Research (BMBF) within the project Lin4Future [01LZ1701A]
  2. German Federal Ministry of Food and Agriculture (BMEL) within the project Chinawald [28I-010-01]
  3. National Natural Science Foundation of China (NSFC) [31270681]
  4. German Research Foundation (DFG)
  5. University of Freiburg

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Forests are a large carbon sink with an additional substitution effect in the merchantable timber compartment of harvested trees, where carbon stored within the same volume of wood varies depending on wood density. Here, we investigated mean annual air-dry wood density variations depending on cambial age, annual radial increment, and two different stem heights of Larix gmelinii (Rupr.), Quercus mongolica Fisch. ex. Ledeb., and Pinus tabulaeformis Carr. from a first climatic region (Mulan Forest) and exclusively of P. tabulaeformis from a second climatic region (Zhongtiaoshan Forest) in the temperate zone of China. We applied linear mixed-effects models with partly transformed variables and estimated marginal means for pairwise comparisons. Results showed that mean wood density was not significantly different between L. gmelinii (0.626 g cm(-3)) and Q. mongolica (0.596 g cm(-3)), but significantly different between P. tabulaeformis from the two different climatic regions (0.445 g cm(-3) in Mulan Forest and 0.521 g cm(-3) in Zhongtiaoshan Forest). Mean annual wood density within trees except for P. tabulaeformis from Mulan Forest was initially increasing until an intermediate cambial age, after which it decreased again to lower values. These findings showed that tree age had to be considered in assessing carbon sequestration in wood. It also could play an important role in decision making for forest management in Mulan Forest and show the benefit of the wood properties and carbon storage potential of the faster growing L. gmelinii compared to Q. mongolica. Furthermore, these findings gave an indication that intermediate old forest stands for some tree species accumulated more carbon per year within their woody biomass than young stands or old growth forests. Our results may have an impact on the planning of rotation lengths and of tree species composition for forest stands in Mulan Forest and Zhongtiaoshan Forest.

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