Learn to see the forest and the trees
Assessing the cross-site and within-site response of potential production to atmospheric demand for water in Eucalyptus plantations
Lim et al. in: Forest Ecology and Management (2020), 464, Article 118068
Wild boar grubbing causes organic carbon loss from both top- and sub-soil in an oak forest in central China
Liu et al. in: Forest Ecology and Management (2020), 464, Article 118059
Chitosan Oligosaccharide Addition to Buddhist Pine (Podocarpus macrophyllus (Thunb) Sweet) under Drought: Reponses in Ecophysiology and δ13C Abundance
He et al. in: Forests (2020), 11:5, Article 526
Estimation of Aboveground Oil Palm Biomass in a Mature Plantation in the Congo Basin
Migolet et al. in: Forests (2020), 11:5, Article 544
High Biomass Productivity of Short-Rotation Willow Plantation in Boreal Hokkaido Achieved by Mulching and Cutback
Han et al. in: Forests (2020), 11:5, Article 505
Regeneration Dynamics Following the Formation of Understory Gaps in a Slovakian Beech Virgin Forest
Feldmann et al. in: Forests (2020), 11:5, Article 585
Shifts in Foliage Biomass and Its Vertical Distribution in Response to Operational Nitrogen Fertilization of Douglas-Fir in Western Oregon
Putney, Maguire in: Forests (2020), 11:5, Article 511
Shrub Biomass Estimates in Former Burnt Areas Using Sentinel 2 Images Processing and Classification
Aranha in: Forests (2020), 11:5, Article 555
Recovering the Metabolic, Self-Thinning, and Constant Final Yield Rules in Mono-Specific Stands
Mrad et al. in: Frontiers in Forests and Global Change (2020), 3, Article 62
Determinants of soil organic carbon sequestration and its contribution to ecosystem carbon sinks of planted forests
Wang, Huang in: Global Change Biology (2020), 26:5, pp 3163-3173
Aboveground biomass, transpiration and water use efficiency in eucalypt plantation fertilized with KCl, NaCl and phonolite rock powder
de Toledo et al. in: New Forests (2020), 51:3, pp 469-488
Mapping aboveground biomass and carbon in Shanghai’s urban forest using Landsat ETM+ and inventory data
Shen et al. in: Urban Forestry & Urban Greening (2020), 51, Article 126655
Extrusion process to enhance the pretreatment effect of ionic liquid for improving enzymatic hydrolysis of lignocellulosic biomass
Han et al. in: Wood Science and Technology (2020), 54:3, pp 599-613
How does extraction of biologically active substances with supercritical carbon dioxide affect lignocellulosic biomass properties?
Stolarski et al. in: Wood Science and Technology (2020), 54:3, pp 519-546