Balancing different environmental effects of forest residue recovery in Sweden: A stepwise handling procedure. IEA Bioenergy Task43 TR2016:03
read moreState of the art in sustainable biomass recovery technology/supply chain in forest operations .IEA Bioenergy Task43 TR2016:02
read moreForest bioeconomy – a new scope for sustainability indicators. From Science to Policy 4, European Forest Institute B. Wolfslehner, S. Linser, H. Pülzl, A. Bastrup-Birk, A. Camia and M. Marchetti. Read it here
read moreThe contribution of Danish forestry to increase wood production and offset climate change 2010-2100. IEA Bioenergy Task43 TR2016:01
read moreHeeley, B., Srivastava, S.K. and Ghaffariyan, M.R. 2019. International assessment of bioenergy stakeholders research requirements of GIS based biomass analytics. Journal of Forest Science 65 (6): 234-246. Hansson, J., Berndes, G.,Englund, O., De Freitas, F.L.M. and G. Sparovek. 2018. How is biodiversity protection influencing the potential for bioenergy feedstock production on grasslands? GCB Bioenergy. 2018;1–22. […]
read moreArticles for download from WIREs – Energy and Environment Opportunities to Encourage Mobilization of Sustainable Bioenergy Supply Chains. WIREs Energy Environ 2016. doi: 10.1002/wene.237. Smith CT, Lattimore B, Berndes G, Bentsen NS, Dimitriou I, Langeveld JWA, Thif fault E. The climate effect of increased forest bioenergy use in Sweden: evaluation at different spatial and temporal […]
read moreModeling potential freshwater ecotoxicity impacts due to pesticide use in biofuel feedstock production.IEA Bioenergy Task43 TR2015:04
read moreFuel Poverty and Bioenergy Discussion paper. IEA Bioenergy Task43 TR2015:03
read moreBest Practice Guidelines for Managing Water for Bioenergy Feedstock Production. IEA Bioenergy Task43 TR2015:02
read more