Coarse woody debris in forest regions of Russia

To assess regional stores of coarse woody debris (CWD) in seven major forest regions of Russia, we combined data collected as part of the routine forest inventory with measurements in 1044 sample plots and the results of density sampling of 922 dead trees. The stores of CWD in the western part of Ru...

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Bibliographic Details
Main Authors: Krankina, Olga N., Harmon, Mark E., Kukuev, Yuri A., Treyfeld, Rudolf F., Kashpor, Nikolai N., Kresnov, Vladimir G., Skudin, Viktor M., Protasov, Nikolai A., Yatskov, Mikhail, Spycher, Gody, Povarov, Ewgeni D.
Other Authors: College of Forestry
Format: Article in Journal/Newspaper
Language:English
unknown
Published: NRC Canada
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Online Access:https://ir.library.oregonstate.edu/concern/articles/bc386j71t
Description
Summary:To assess regional stores of coarse woody debris (CWD) in seven major forest regions of Russia, we combined data collected as part of the routine forest inventory with measurements in 1044 sample plots and the results of density sampling of 922 dead trees. The stores of CWD in the western part of Russia (St. Petersburg, Central, Khanty- Mansi, and Novosibirsk regions) were on average lower (14–20 m3/ha or 4.0–5.8 Mg/ha) than in the East Siberian and Far Eastern regions (40–51 m3/ha or 11.0–14.4 Mg/ha). The difference in CWD stores was particularly large between young forests in two western regions (2.4 Mg/ha in St. Petersburg and 3.4 Mg/ha in the Central region) and in the east (20.4–24.4 Mg/ha). This difference is associated with the prevailing disturbance type: clear-cut harvest in western Russia and natural disturbances in the east. Analysis of variance in CWD stores indicates that region, dominant species, forest age group, productivity class, and interactions of these factors explain 87–88% of the total variance and the strongest effects are for age group and region. Lower stores of CWD within the intensively managed forest regions suggest that further expansion of forest use in many regions of Russia may reduce regional stores of CWD and carbon.