Repository logo
Log In(current)
  1. Home
  2. Prodotti della ricerca
  3. A. Contributo su rivista
  4. A1. Articolo in rivista
  5. Evaluation of Deadwood Characteristics and Carbon Storage under Different Silvicultural Treatments in a Mixed Broadleaves Mountain Forest

Evaluation of Deadwood Characteristics and Carbon Storage under Different Silvicultural Treatments in a Mixed Broadleaves Mountain Forest

Author(s)
Tavankar, Farzam
Kivi, Aezam Rezaee
Taheri-Abkenari, Kambiz
Lo Monaco, Angela  
Venanzi, Rachele  
more
Date Issued
2022
Type
article
Volume
13
Issue
2
Start Page
1
End Page
26
DOI
10.3390/f13020259
Journal
FORESTS  
Abstract
The deadwood (DW) of the forest is in the following two forms: standing (snag) and fallen (log). The DW categories and decay stage are important functional and structural components of forest ecosystems. We used a field-based assessment to quantify how the relative contribution of deadwood to total above-ground carbon stock changes across a silvicultural method and stand altitude gradient in mixed broadleaves stands. The characteristics of DW and carbon stock in selection-cutting managed stands (Sc), shelter-wood managed stands (Sh) and protected stands (Pr) were examined in three altitude ranges (low, <600; medium, 600–1200; and high, >1200 m a.s.l.) in a mixed broadleaves high forest. The results showed that with increasing altitude, the volume of DW in-creased. The volume of DW in Pr stands was about three times higher than Sh stands and twice higher than Sc stands. The volume of the standing DW was greater than that of the fallen DW in all stands. The highest volume ratio of fallen DW to standing DW was found in the medium altitude in the Sc stand. The amount of carbon stock by DW in the Sh, Sc, and Pr stands was 1.53–2.22, 2.29– 3.19, and 5.03–6.80 t ha−1, respectively. The DW share of C-stock of above ground biomass was 4%– 4.6% in Sh stand, 4.3%–4.8% in Sc stand, and 7.4%–7.9% in the Pr stand. Deadwood assessment and management, in terms of volume, type, species composition, diameter distribution, spatial allocation and decay stage, is one of the new challenges for a proper sustainable forest management.
Subjects

Altitude gradient

Carbon stock

Deadwood dynamic

Hyrcanian forest

Mixed stand

Selection cutting

Shelter wood

Handle
http://hdl.handle.net/2067/47698
Related items
Metrics
Project(s)
This research was in part carried out within the framework of the MIUR (Ital ian Ministry for Education, University and Research) initiative “Departments of Excellence” (Law 232/2016), WP 4 (Angela Lo Monaco) WP3 (Rodolfo Picchio), which financed the Department of Agriculture and Forest Science at the University of Tuscia

Built with DSpace-CRIS software - Extension maintained and optimized by 4Science

  • Accessibility settings
  • Privacy policy
  • End User Agreement
  • Send Feedback
Repository logo COAR Notify