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Estimating UK perennial energy crop supply using farm-scale models with spatially disaggregated data, , , , , , , , , and 2 other author(s). GCB Bioenergy, (Nov 1, 2013)Water use and yield of bioenergy poplar in future climates: modelling the interactive effects of elevated atmospheric CO2and climate on productivity and water use, , , and . GCB Bioenergy, 7 (5): 958--973 (June 2014)The technical potential of Great Britain to produce ligno-cellulosic biomass for bioenergy in current and future climates, , , , , , , and . GCB Bioenergy, (Nov 1, 2013)The potential for bioenergy crops to contribute to meeting GB heat and electricity demands, , , , , , , , , and 5 other author(s). GCB Bioenergy, (Oct 1, 2013)Few-Shot Learning Enables Population-Scale Analysis of Leaf Traits in Populus trichocarpa., , , , , , , , , and 1 other author(s). CoRR, (2023)Second generation bioenergy crops and climate change: a review of the effects of elevated atmospheric CO2 and drought on water use and the implications for yield, , and . GCB Bioenergy, 1 (2): 97--114 (Apr 1, 2009)Greenhouse gas emissions from four bioenergy crops in England and Wales: Integrating spatial estimates of yield and soil carbon balance in life cycle analyses, , , , , , , , , and . GCB Bioenergy, 1 (4): 267--281 (Aug 1, 2009)Estimating the supply of biomass from short-rotation coppice in England, given social, economic and environmental constraints to land availability, , , and . Biofuels, 1 (5): 719--727 (September 2010)Yield and spatial supply of bioenergy poplar and willow short-rotation coppice in the UK, , , , , and . New Phytologist, 178 (2): 358--370 (2008)Spatial mapping of Great Britain's bioenergy to 2050, , , , , , , and . GCB Bioenergy, 6 (2): 97--98 (Mar 1, 2014)