Abstract (eng): Supplying food for the anticipated global population of over 9 billion in 2050 under changing climate conditions is one of the major challenges of the 21st century. Agricultural expansion and intensification, contributes to global environmental change, and risks the long-term sustainability of the planet. It has been proposed that no more than 15% of the global ice-free land surface should be converted to cropland. Bioenergy production for land-based climate mitigation places additional pressure on limited land resources. Here we test normative targets of food supply and bioenergy production within the cropland planetary boundary using a global land-use model. The results suggest supplying the global population with adequate...
Land and water are essential local resources for food production but are limited. The main drivers o...
We explore the role of agriculture in destabilizing the Earth system at the planetary scale, through...
Global agricultural production almost tripled within the last five decades. The production increase ...
Supplying food for the anticipated global population of over 9 billion in 2050 under changing climat...
Supplying food for the anticipated global population of over 9 billion in 2050 under changing climat...
There is a growing recognition that the interrelations between agriculture, food, bioenergy, and cli...
An adapted Earth system model is used to investigate the limitations that future climate and water a...
AbstractThere is a growing recognition that the interrelations between agriculture, food, bioenergy,...
Bioenergy is expected to play an important role in the achievement of stringent climate-change mitig...
AbstractGlobal food and feed demands have been projected to double in the 21st century, which will f...
The areas of agricultural land on this globe that in the future possibly are available for biomass p...
Global bioenergy potentials have been the subject of extensive research and continued controversy. D...
Integrated assessment model scenarios project rising deployment of biomass‐using energy systems in c...
We assessed agricultural land’s potential as to food supply and biofuel production. Agricultural lan...
Land and water are essential local resources for food production but are limited. The main drivers o...
We explore the role of agriculture in destabilizing the Earth system at the planetary scale, through...
Global agricultural production almost tripled within the last five decades. The production increase ...
Supplying food for the anticipated global population of over 9 billion in 2050 under changing climat...
Supplying food for the anticipated global population of over 9 billion in 2050 under changing climat...
There is a growing recognition that the interrelations between agriculture, food, bioenergy, and cli...
An adapted Earth system model is used to investigate the limitations that future climate and water a...
AbstractThere is a growing recognition that the interrelations between agriculture, food, bioenergy,...
Bioenergy is expected to play an important role in the achievement of stringent climate-change mitig...
AbstractGlobal food and feed demands have been projected to double in the 21st century, which will f...
The areas of agricultural land on this globe that in the future possibly are available for biomass p...
Global bioenergy potentials have been the subject of extensive research and continued controversy. D...
Integrated assessment model scenarios project rising deployment of biomass‐using energy systems in c...
We assessed agricultural land’s potential as to food supply and biofuel production. Agricultural lan...
Land and water are essential local resources for food production but are limited. The main drivers o...
We explore the role of agriculture in destabilizing the Earth system at the planetary scale, through...
Global agricultural production almost tripled within the last five decades. The production increase ...