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Global Change Biology. Bioenergy|July 25, 2022
Global implications of crop-based bioenergy with carbon capture and storage for terrestrial vertebrate biodiversitySteef V Hanssen, Zoran J N Steinmann, Vassilis Daioglou, et al.
Global Change Biology. Bioenergy|September 28, 2011
Enzymatic deconstruction of xylan for biofuel productionDylan Dodd, Isaac K O Cann
Global Change Biology. Bioenergy|May 19, 2017
Towards Miscanthus combustion quality improvement: the role of flowering and senescenceElaine Jensen, Paul Robson, Kerrie Farrar, et al.
Global Change Biology. Bioenergy|April 23, 2019
Soil nitrous oxide flux following land-use reversion from Miscanthus and SRC willow to perennial ryegrassJon P McCalmont, Rebecca Rowe, Dafydd Elias, et al.
Global Change Biology. Bioenergy|April 23, 2019
Soil N2O emissions with different reduced tillage methods during the establishment of Miscanthus in temperate grasslandAmanda J Holder, Jon P McCalmont, Rebecca Rowe, et al.
Global Change Biology. Bioenergy|August 8, 2017
Oilseed rape (Brassica napus) as a resource for farmland insect pollinators: quantifying floral traits in conventional varieties and breeding systemsJonathan M Carruthers, Samantha M Cook, Geraldine A Wright, et al.
Global Change Biology. Bioenergy|August 20, 2019
Global relative species loss due to first-generation biofuel production for the transport sectorPieter M F Elshout, Rosalie van Zelm, Marijn van der Velde, et al.
Global Change Biology. Bioenergy|March 12, 2019
Breeding progress and preparedness for mass-scale deployment of perennial lignocellulosic biomass crops switchgrass, miscanthus, willow and poplarJohn Clifton-Brown, Antoine Harfouche, Michael D Casler, et al.
Global Change Biology. Bioenergy|March 7, 2017
Radiation capture and conversion efficiencies of Miscanthus sacchariflorus, M. sinensis and their naturally occurring hybrid M. × giganteusChristopher Lyndon Davey, Laurence Edmund Jones, Michael Squance, et al.
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