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Resource use of wind farms in the German North Sea : the example of Alpha Ventus and Bard Offshore I
(2013)
The German government aims to obtain at least 40 percent of its electricity from renewable sources by 2030. One of the central steps to reach this target is the construction of deep sea offshore wind farms. The paper presents a material intensity analysis of the offshore wind farms "Alpha Ventus" and "Bard Offshore I" under consideration of the grid connection. An additional onshore scenario is considered for comparison. The results show that offshore wind farms have higher resource consumption than onshore farms. In general, and in respect to the resource use of other energy systems, both can be tagged as resource efficient.
Ressourceneffizienzpotenziale der Stromerzeugung durch Windenergie und Biomasse in Deutschland
(2013)
Sharing : eine innovative, soziale Praktik für einen ressourcenschonenden, nachhaltigeren Konsum?
(2017)
Innerhalb des Projektes NsB-Ress untersuchten Forscherinnen und Forscher eine Konsumform hinsichtlich seiner Ressourceneffizienz- und Diffusionspotenziale, die eine ressourcenschonendere und -effizientere Nutzung natürlicher Ressourcen verspricht. Das Credo: nutzen statt besitzen. Zum Zweck dieser Untersuchung machten sie eine Bestandsaufnahme der aktuell und zukünftig marktrelevanten NsB-Angebote, deren Ressourceneinsparpotenziale im Nachgang analysiert wurden. Durch diese Schritte sollen Erkenntnisse und Aussagen über den möglichen Ressourcenverbrauch und Reboundeffekte möglich werden. Weiterhin wurden Erfolgsfaktoren für die Diffusion von Angeboten identifiziert sowie Einsparpotenziale erschlossen, um auszuloten, wie NsB-Angebote frühzeitig ressourcenleicht gestaltet werden können. Am Ende des Projektes sollen Handlungsempfehlungen für relevante Akteure - also Politik, Wirtschaft sowie Verbraucherinnen und Verbraucher - generiert werden.
Das Projektteam zeichnet in der vorliegenden Broschüre ein differenziertes Bild, das sowohl ökologisch als auch sozial wünschenswerte und förderungswürdige NsB-Angebote aufzeigt, aber auch diejenigen benennt, die mit Reboundeffekten verbunden sein können und deshalb einer politischen Rahmensetzung bedürfen.
Assessing the natural resource use and the resource efficiency potential of the Desertec concept
(2013)
Considering global warming, increasing commodity prices, and the dramatic consequences of the over-exploitation and overuse of resources, a transition to a renewable energy supply is necessary. This requires an (resource) efficient and renewable supply of operating reserve. In this article, a possible solution to this problem is analysed: the Desertec concept. It is meant to convert solar energy in areas with high solar irradiation into electrical energy by means of Concentrated Solar Power (CSP) transferring this energy by High Voltage Direct Current (HVDC) lines into the whole European Union Middle East and North Africa (EU-MENA) area. In order to assess the resource efficiency potential of Desertec, three different kinds of CSP plants (parabolic trough, Fresnel collector and central receiver of the building classes Inditep, Novatec and Solar Tres) including heat storage systems (Molten Salt and Phase-Changing-Material) and the necessary HVDC are analysed using the Material Input per Service Unit (MIPS) methodology. The assessment is accomplished for three different locations (Morocco, Tunisia and Egypt) and two points of time (2025 and 2050). With these results, a scenario of electricity supply in Germany in 2050 with a 20% share of solar power import is calculated. Central receivers are the most resource efficient ones: their consumption of abiotic materials is only half of parabolic trough plants and two thirds of Fresnel trough plants. Water and air consumption is the lowest of all analyzed CSP plants as well. The scenario for Germany's fuel mix in 2050 shows that a predominantly renewable fuel mix reduces the consumption of abiotic materials by 75%, of water by 60% and of air by 45%. Only the consumption of biotic materials rises due to the higher share of biomass conversion.
Despite rising prices for natural resources during the past 30 years, global consumption of natural resources is still growing. This leads to ecological, economical and social problems. So far, however, limited effort has been made to decrease the natural resource use of goods and services. While resource efficiency is already on the political agenda (EU and national resource strategies), there are still substantial knowledge gaps on the effectiveness of resource efficiency improvement strategies in different fields. In this context and within the project "Material Efficiency and Resource Conservation", the natural resource use of 22 technologies, products and strategies was calculated and their resource efficiency potential analysed. In a preliminary literature- and expert-based identification process, over 250 technologies, strategies, and products, which are regarded as resource efficient, were identified. Out of these, 22 subjects with high resource efficiency potential were selected. They cover a wide range of relevant technologies, products and strategies, such as energy supply and storage, Green IT, transportation, foodstuffs, agricultural engineering, design strategies, lightweight construction, as well as the concept "Using Instead of Owning". To assess the life-cycle-wide resource use of the selected subjects, the material footprint has been applied as a reliable indicator. In addition, sustainability criteria on a qualitative basis were considered. The results presented in this paper show significant resource efficiency potential for many technologies, products and strategies.
Ökoeffizienz im Wettbewerb
(2001)
The food and agricultural sector will face numerous challenges in the next decades, arising from changing global production and consumption patterns, which currently go along with high resource use, causing ecological and socio-economic impacts. The aim of this paper is to illustrate and evaluate the practical applicability of the Hot Spot Analysis methodology in the context of supply chain management in companies. The HSA is a method to identify social and ecological problems along the entire life cycle of a product. Special emphasis is put on a customized implementation in the value chain beef of McDonald's Germany. The HSA of McDonald's beef value chain shows that the main ecological problems arise in the phase of raw material extraction, whereas the main social problems can be identified in the phase of slaughtering. Finally, the paper shows potentials and shortcomings of such a customized application and how the results can be implemented in the sustainability management of a company.