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Figure Mix of energy crops, 2006–2008 (left) and EEA scenario for environmentally compatible energy cropping in 2020 (right)
The graph presents the ‘environmentally compatible’ energy cropping data and scenario developed by the EEA for 2020.
Located in Data and maps Maps and graphs
Figure The two key aspects of resource efficiency
The schema shows how resource efficiency relates to the use of natural capital and ecosystem resilience.
Located in Data and maps Maps and graphs
Figure Assessing the environmental performance of bioenergy
The chema outlines critical factors for the overall environmental performance of bioenergy and how the resource efficiency concept can be applied for environmental assessment.
Located in Data and maps Maps and graphs
Figure Routes for converting biomass to energy
The schema shows the most common biomass categories derived from agriculture, forests and wastes, and the conversion routes that are expected to become economic by 2020.
Located in Data and maps Maps and graphs
Figure Total domestic agricultural bioenergy potential per country in 2020
The figure shows the differences in terms of the contribution to the overall EU domestic agricultural potential.
Located in Data and maps Maps and graphs
Figure Waste potential (PJ) and technology mix per storyline in 2020
The potential estimates refer to the EU’s agricultural bioenergy potential in 2020 for three storylines. These storylines explore plausible bioenergy development paths from a resource efficiency perspective under three specific sets of economic and political assumptions.
Located in Data and maps Maps and graphs
Figure Efficiency range of different biomass-to-energy conversion routes
The figure provides a first overview of the relative efficiency of different types of bioenergy. Data represent net efficiencies taking into account results of life-cycle analysis.
Located in Data and maps Maps and graphs
Figure National perennial cropping mixes in the ‘Resource efficiency’ storyline
The graph gives an overview of the absolute contribution of perennials per type to the bioenergy potential of a country in the Resource efficiency storyline.
Located in Data and maps Maps and graphs
Figure Projected life cycle land use of fossil, nuclear and renewable electricity systems in 2030 (m2/GJel)
The graph illustrates that energy systems differ in the extent and complexity of their impacts by presenting the projected life cycle land use of fossil, nuclear and renewable electricity systems in 2030. To understand the implications of increased bioenergy production, it is important to recognise that the land used for energy cropping is a natural resource, comprising soil, minerals, water and biota. Where bioenergy involves energy cropping it often necessitates changes to land use, with significant implications for related systems as well Other renewable technologies do also use some land and so do fossil and nuclear systems but the area is comparatively small. Nevetheless these technologies have other limitations.
Located in Data and maps Maps and graphs
Figure Forest potential (PJ) and technology mix per storyline in 2020
The potential estimates refer to the EU’s agricultural bioenergy potential in 2020 for 3 storylines. These storylines explore plausible bioenergy development paths from a resource efficiency perspective under three specific sets of economic and political assumptions.
Located in Data and maps Maps and graphs
European Environment Agency (EEA)
Kongens Nytorv 6
1050 Copenhagen K
Denmark
Phone: +45 3336 7100