Browse data: KeyPolicyQuestion
KeyPolicyQuestion > Component :
Agricultural economy or
Air pollution and energy policies or
Carbon, vegetation, agriculture and water or
Crops and grass or
Ecosystem services or
Energy demand or
Energy supply and demand or
None or
None or
None
Click on one or more items below to narrow your results.
Agricultural land use (Land use) (5) ·
Air quality (Air pollution) (2) ·
Climate change (Climate) (1) ·
Climate impacts (Climate) (1) ·
Climate mitigation (Climate) (2) ·
Crop production (Food) (3) ·
Eco goods and services (NB) (3) ·
Energy demand (Energy) (6) ·
Energy emissions (Energy) (2) ·
Energy system (Energy) (2) ·
Food demand (Food) (1) ·
GHG emissions (Climate) (3) ·
Irrigation (Water) (1) ·
Land cover (NB) (1) ·
Land use system (Land use) (1) ·
Other climate (Climate) (1) ·
Other energy (Energy) (3) ·
Other land use (Land use) (1) ·
Terrestrial biodiversity (NB) (1) ·
Water stress (Water) (2)
Showing below up to 20 results in range #1 to #20.
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- PQ1 (AEF) (Agricultural economy, What is the area of cropland and grassland required to support future food demand?)
- PQ1 (APEP) (Air pollution and energy policies, How do energy policies contribute to economic and social development, and how do they support or hamper a more sustainable future?)
- PQ1 (CG) (Crops and grass, How will climate change affect the productivity of current and future agricultural areas?)
- PQ1 (ED) (Energy demand, How will energy demand evolve particularly in emerging and medium- and low-income economies?)
- PQ1 (EGS) (Ecosystem services, How would ecosystem services and the benefits from the natural environment develop in the absence of specific policies?)
- PQ1 (ESD) (Energy supply and demand, How can energy supply and demand become more sustainable, balancing human development, security of supply, and concerns about climate change and air pollution?)
- PQ2 (AEF) (Agricultural economy, What are the policy options to reduce agricultural land use and to safeguard global biodiversity, while ensuring food security?)
- PQ2 (APEP) (Air pollution and energy policies, How can the goals for affordable, clean and reliable energy be achieved taking into account possible synergies and trade-offs?)
- PQ2 (CG) (Crops and grass, How could management improve agricultural productivity under current and future water constraints?)
- PQ2 (ED) (Energy demand, What is the mix of end-use energy carriers to meet future energy demand?)
- PQ2 (EGS) (Ecosystem services, How could policy interventions contribute to improving future ecosystem services?)
- PQ2 (ESD) (Energy supply and demand, What transitions in the energy system would meet long-term climate goals?)
- PQ2 (VHA) (Carbon, vegetation, agriculture and water, How do climate change and land-use management affect the land productivity of current and future agricultural land?)
- PQ3 (AEF) (Agricultural economy, How can the implications of biofuels for land use and greenhouse gases be managed sustainably?)
- PQ3 (CG) (Crops and grass, How will agriculture affect the Earth system with respect to carbon emissions, freshwater availability and nutrient cycles?)
- PQ3 (ED) (Energy demand, How can energy efficiency contribute to reducing the growth rate of energy demand and mitigate pressures on the global environment?)
- PQ3 (EGS) (Ecosystem services, How could policy interventions influence the interaction between ecosystem services and other goals and ambitions, such as the millennium development goals?)
- PQ3 (ESD) (Energy supply and demand, How are these strategies affected by uncertainties in the energy system?)
- PQ3 (VHA) (Carbon, vegetation, agriculture and water, What is the role of the terrestrial biosphere in the global carbon cycle, how will it change in time as a result of climate and land-use change?)
- PQ4 (VHA) (Carbon, vegetation, agriculture and water, What is the combined effect of climate change and socio-economic development on water demand and availability, and associated agricultural production?)