Abstract Bioenergy is expected to play an important role in the future energy mix as it can substitute fossil fuels and contribute to climate change mitigation. However, large-scale bioenergy cultivation may put substantial pressure on land and water resources. While irrigated bioenergy production can reduce the pressure on land due to higher yields, associated irrigation water requirements may lead to degradation of freshwater ecosystems and to conflicts with other potential users. In this article, we investigate the trade-offs between land and water requirements of large-scale bioenergy production. To this end, we adopt an exogenous demand trajectory for bioenergy from dedicated energy crops, targeted at limiting greenhouse gas emissions ...
Across energy, agricultural and forestry landscapes, the production of biomass for energy has emerge...
The increasing demand for biomass for the production of bioenergy is generating land-use conflicts. ...
Abstract Climate change mitigation, in the context of growing population and ever increasing economi...
Large-scale 2nd generation bioenergy deployment is a key element of 1.5 °C and 2 °C transformation p...
Bioenergy is a necessity in most climate change mitigation scenario limiting global warming to below...
Widespread production of bioenergy appears to be a potential candidate to counteract fossil fuel dep...
We estimate the global bioenergy potential from dedicated biomass plantations in the 21st century un...
Bioenergy aims to reduce greenhouse gas (GHG) emissions and contribute to meeting global climate cha...
Integrated assessment model scenarios project rising deployment of biomass‐using energy systems in c...
Energy, water and land are scarce resources, critical to humans. Developments in each affect the ava...
Bioenergy aims to reduce greenhouse gas (GHG) emissions and contribute to meeting global climate cha...
Bioenergy aims to reduce greenhouse gas (GHG) emissions and contribute to meeting global climate cha...
Bioenergy aims to reduce greenhouse gas (GHG) emissions and contribute to meeting global climate cha...
Bioenergy aims to reduce greenhouse gas (GHG) emissions and contribute to meeting global climate cha...
There are major expectations that bioenergy will supply large amounts of CO2 neutral energy for the ...
Across energy, agricultural and forestry landscapes, the production of biomass for energy has emerge...
The increasing demand for biomass for the production of bioenergy is generating land-use conflicts. ...
Abstract Climate change mitigation, in the context of growing population and ever increasing economi...
Large-scale 2nd generation bioenergy deployment is a key element of 1.5 °C and 2 °C transformation p...
Bioenergy is a necessity in most climate change mitigation scenario limiting global warming to below...
Widespread production of bioenergy appears to be a potential candidate to counteract fossil fuel dep...
We estimate the global bioenergy potential from dedicated biomass plantations in the 21st century un...
Bioenergy aims to reduce greenhouse gas (GHG) emissions and contribute to meeting global climate cha...
Integrated assessment model scenarios project rising deployment of biomass‐using energy systems in c...
Energy, water and land are scarce resources, critical to humans. Developments in each affect the ava...
Bioenergy aims to reduce greenhouse gas (GHG) emissions and contribute to meeting global climate cha...
Bioenergy aims to reduce greenhouse gas (GHG) emissions and contribute to meeting global climate cha...
Bioenergy aims to reduce greenhouse gas (GHG) emissions and contribute to meeting global climate cha...
Bioenergy aims to reduce greenhouse gas (GHG) emissions and contribute to meeting global climate cha...
There are major expectations that bioenergy will supply large amounts of CO2 neutral energy for the ...
Across energy, agricultural and forestry landscapes, the production of biomass for energy has emerge...
The increasing demand for biomass for the production of bioenergy is generating land-use conflicts. ...
Abstract Climate change mitigation, in the context of growing population and ever increasing economi...