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Technische Innovationen können einen entscheidenden Beitrag zur Steigerung der Ressourceneffizienz leisten. Eine Auswahl von 21 Praxis-Beispielen für ressourceneffiziente Technologien, Produkte und Strategien zeigt die Broschüre "Ressourceneffizienzatlas", die im Rahmen des gleichnamigen Projekts erstellt wurde. Insgesamt wurden in dem Projekt mehrere Hundert technische Lösungen und Strategien analysiert und ihr möglicher Beitrag zur Steigerung der Ressourceneffizienz bewertet. Durchgeführt wurde das Projekt zusammen mit dem Fraunhofer-Institut für Arbeitswirtschaft und Organisation (IAO), der Trifolium - Beratungsgesellschaft mbH sowie dem Institut für Arbeitswissenschaft und Technologiemanagement der Universität Stuttgart. Die Beispiele aus der Broschüre sowie rund 70 weitere Beispiele finden sich auf der Projekt-Website www.ressourceneffizienzatlas.de.
Ressourceneffizienz verspricht geringere Materialkosten, Importunabhängigkeit und geringere Umweltbelastungen. Die Einspareffekte lassen sich auf vielfältige Art erreichen: Sei es durch Einsatz neuer Technologien, Optimierung bestehender Technologien oder Strategien, die Produktion und Konsum aufgreifen. Das Buch zeigt anhand von 18 Beispielen, wie sich Ressourceneffizienz erfolgreich in Deutschland umsetzen lässt und welche Einspareffekte zu erzielen sind.
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.
Technical innovations can contribute significantly to increase resource efficiency. A selection of 21 examples for resource efficient technologies, products and strategies from the field shows the brochure Resource Efficiency Atlas, which was created in line with the same titled project. Overall the project team analysed several hundred technical solutions and strategies and assessed its possible contributions to increases in resource efficiency. The project was arranged co-operatively by the Fraunhofer Institute for Industrial Engineering IAO, the Trifolium-Beratungsgesellschaft mbH and the Institut für Arbeitswissenschaften und Technologiemanagement of the University Stuttgart. The examples from the brochure and further 70 examples can be seen on the project website www.ressourceneffizenzatlas.de.
New technologies can be the basis for resource-efficient products and services and thus create eco-innovations, either by creating new functionalities in existing or new application fields or by substituting existing technologies in existing or new application fields. In this paper, an overview over different technology fields, products and strategies with resource efficiency potential, such as nanotechnolo- gies, material science, manufacturing technologies, process technologies and cross-cutting issues, is presented. There is a special focus on applications from nanotechnology issuing, e.g. functional surfaces or new "smart" materials with special functionalities. Furthermore, it is shown how companies can use the method Resource Efficiency Technology Radar to identify and evaluate technolo- gies with resource efficiency in order to incorporate them into their development activities.