Browse data: KeyPolicyQuestion
KeyPolicyQuestion > Component :
Aquatic biodiversity or
Carbon cycle and natural vegetation or
Ecosystem services or
Energy conversion or
Energy demand or
Flood risks or
Nutrients or
None or
None or
None
Click on one or more items below to narrow your results.
Agricultural land use (Land use) (1) ·
Aquatic biodiversity (NB) (3) ·
Climate change (Climate) (1) ·
Climate mitigation (Climate) (1) ·
Degradation (Land use) (1) ·
Eco goods and services (NB) (3) ·
Energy demand (Energy) (3) ·
Energy emissions (Energy) (1) ·
Energy system (Energy) (1) ·
GHG emissions (Climate) (3) ·
Land cover (NB) (1) ·
Other energy (Energy) (2) ·
Other land use (Land use) (1) ·
Other water (Water) (3) ·
Water quality (Water) (4) ·
Water stress (Water) (2)
Showing below up to 20 results in range #1 to #20.
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- PQ1 (AB) (Aquatic biodiversity, How will the biodiversity in freshwater bodies develop in the absence of additional policies and measures?)
- PQ1 (EC) (Energy conversion, What is the potential role of energy conversion sector, particularly in power production, in achieving a more sustainable energy system?)
- 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 (FR) (Flood risks, How will future flood risk change as a result of socio-economic changes and climate change?)
- PQ1 (N) (Nutrients, How will the increasing use of fertilisers affect terrestrial and marine ecosystems, with possible consequences for human health?)
- PQ1 (NVCC) (Carbon cycle and natural vegetation, 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?)
- PQ2 (AB) (Aquatic biodiversity, What are the key pressure factors causing loss of aquatic biodiversity?)
- PQ2 (EC) (Energy conversion, What are the potential roles of individual technologies, such as carbon capture and storage (CCS), nuclear power, hydrogen and renewable energy?)
- 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 (FR) (Flood risks, What would be the impact of floods, in terms of damage and victims, and where are the hot spots?)
- PQ2 (N) (Nutrients, To what extent can the negative impacts be reduced by more efficient nutrient management and wastewater treatment, while retaining the positive effects on food production and land productivity?)
- PQ2 (NVCC) (Carbon cycle and natural vegetation, To what extent can the terrestrial biosphere contribute to reducing the accumulation of CO2 in the atmosphere and what are viable mechanisms?)
- PQ3 (AB) (Aquatic biodiversity, How will policies and measures to reduce the key pressure factors contribute to meeting the internationally agreed targets of the UN Convention on Biological Diversity (CBD)?)
- 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 (FR) (Flood risks, What would be suitable adaptation strategies and investment options related to flood risk?)
- PQ3 (NVCC) (Carbon cycle and natural vegetation, What opportunities exist to reduce land-use related carbon emissions (e.g. REDD) and even enhance the carbon uptake through the establishment of new forests.)
- PQ3(NVCC) (Carbon cycle and natural vegetation, What are the contributions of land-use change, climate change and CO2 fertilization on the future carbon cycle and how can these be considered in climate policies?)