Differences in biomass production and carbon sequestration between highland and lowland stands of Picea abies (L.) H. Karst. and Fagus sylvatica L.
Author:
Publisher
Elsevier BV
Subject
Management, Monitoring, Policy and Law,Nature and Landscape Conservation,Forestry
Reference70 articles.
1. Forest structure and live aboveground biomass variation along an elevational gradient of tropical Atlantic moist forest (Brazil);Alves;Forest Ecol. Management,2010
2. Estimating forest biomass dynamics by integrating multi-temporal landsat satellite images with ground and airborne LiDAR data in the coal valley mine, Alberta, Canada;Badreldin;Remote Sensing,2015
3. Bank Danych o Lasach, 2015. URL http://www.bdl.lasy.gov.pl/ (accessed 1.31.17). Barton, K., 2017. MuMIn: Multi-Model Inference.
4. Allometric biomass equations for young broadleaved trees in plantations in Romania;Blujdea;Forest Ecol. Management,2012
5. Aboveground stand-level biomass estimation: a comparison of two methods for major forest species in northwest Spain;Castedo-Dorado;Annals Forest Sci.,2012
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