Impacts of a 32-billion-gallon bioenergy landscape on land and fossil fuel use in the US
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Pore-scale dynamics of enzyme adsorption, swelling and reactive dissolution determine sugar yield in hemicellulose hydrolysis for biofuel productionThe vital role of citrate buffer in acetone-butanol-ethanol (ABE) fermentation using corn stover and high-efficient product recovery by vapor stripping-vapor permeation (VSVP) processThe social inefficiency of regulating indirect land use change due to biofuels.Potential of global croplands and bioenergy crops for climate change mitigation through deployment for enhanced weathering.Consensus, uncertainties and challenges for perennial bioenergy crops and land use.Integrating future scenario-based crop expansion and crop conditions to map switchgrass biofuel potential in eastern Nebraska, USAMapping marginal croplands suitable for cellulosic feedstock crops in the Great Plains, United StatesContribution of above- and belowground bioenergy crop residues to soil carbon
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Impacts of a 32-billion-gallon bioenergy landscape on land and fossil fuel use in the US
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article
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wetenschappelijk artikel
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наукова стаття, опублікована в січні 2016
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name
Impacts of a 32-billion-gallon bioenergy landscape on land and fossil fuel use in the US
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Impacts of a 32-billion-gallon bioenergy landscape on land and fossil fuel use in the US
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Impacts of a 32-billion-gallon bioenergy landscape on land and fossil fuel use in the US
@en
Impacts of a 32-billion-gallon bioenergy landscape on land and fossil fuel use in the US
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Impacts of a 32-billion-gallon bioenergy landscape on land and fossil fuel use in the US
@en
Impacts of a 32-billion-gallon bioenergy landscape on land and fossil fuel use in the US
@nl
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P2860
P356
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Impacts of a 32-billion-gallon bioenergy landscape on land and fossil fuel use in the US
@en
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Evan H. DeLucia
Madhu Khanna
Melannie Hartman
Stephen P. Long
Tara W. Hudiburg
WeiWei Wang
William J. Parton
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P356
10.1038/NENERGY.2015.5
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2016-01-11T00:00:00Z