Forest-based bioenergy plays an important role in climate mitigation for limiting global mean temperature increase to below 2 °C. The greenhouse gas (GHG) impact of three forest-based bioenergy systems from the USA, Canada and Spain supplying wood pellets for electricity in the UK were evaluated by conducting lifecycle assessments and forest carbon modelling of the three forest systems. Cumulative emissions were analysed by calculating the forest carbon stock change and net GHG emissions balance of the forest-based bioenergy electricity. The analysis considered both the replacement of the existing electricity mix with bioenergy electricity and forest management with and without bioenergy use. The supply chain emissions and forest carbon bal...
Recent literature has recommended that life cycle assessments (LCA) of forest bioenergy supply chain...
The potential greenhouse gas benefits of displacing fossil energy with biofuels are driving policy d...
Via a detailed analysis and review of the currently available literature, this work aims at clarifyi...
Forest-based bioenergy plays an important role in climate mitigation for limiting global mean temper...
Bioenergy production from forest resources offers opportunities to reduce greenhouse gas (GHG) emiss...
The scientific literature contains contrasting findings about the climate effects of forest bioenerg...
Bioenergy from boreal forests managed for productive purposes (e.g., pulp, timber) is commonly held ...
The scientific literature contains contrasting findings about the climate effects of forest bioenerg...
While bioenergy plays a key role in strategies for increasing renewable energy deployment, studies a...
This working paper presents an improved analysis of the potential of biofuels for climate change mit...
Climate change and energy policies often encourage bioenergy as a sustainable greenhouse gas (GHG) r...
This is an Open Access article, distributed under the terms of the Creative Commons Attribution lice...
Recent literature has recommended that life cycle assessments (LCA) of forest bioenergy supply chain...
The potential greenhouse gas benefits of displacing fossil energy with biofuels are driving policy d...
Via a detailed analysis and review of the currently available literature, this work aims at clarifyi...
Forest-based bioenergy plays an important role in climate mitigation for limiting global mean temper...
Bioenergy production from forest resources offers opportunities to reduce greenhouse gas (GHG) emiss...
The scientific literature contains contrasting findings about the climate effects of forest bioenerg...
Bioenergy from boreal forests managed for productive purposes (e.g., pulp, timber) is commonly held ...
The scientific literature contains contrasting findings about the climate effects of forest bioenerg...
While bioenergy plays a key role in strategies for increasing renewable energy deployment, studies a...
This working paper presents an improved analysis of the potential of biofuels for climate change mit...
Climate change and energy policies often encourage bioenergy as a sustainable greenhouse gas (GHG) r...
This is an Open Access article, distributed under the terms of the Creative Commons Attribution lice...
Recent literature has recommended that life cycle assessments (LCA) of forest bioenergy supply chain...
The potential greenhouse gas benefits of displacing fossil energy with biofuels are driving policy d...
Via a detailed analysis and review of the currently available literature, this work aims at clarifyi...