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Resource efficiency potential of selected technologies, products and strategies

机译:选定技术,产品和策略的资源效率潜力

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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.
机译:尽管过去30年自然资源价格上涨,但全球自然资源消费仍在增长。这导致了生态,经济和社会问题。但是,到目前为止,已经做出了有限的努力来减少商品和服务对自然资源的使用。尽管资源效率已经在政治议程上(欧盟和国家资源战略),但在不同领域中,关于资源效率改善策略有效性的知识差距仍然很大。在这种情况下,在“材料效率和资源保护”项目中,计算了22种技术,产品和策略对自然资源的利用,并分析了它们的资源效率潜力。在基于文献和专家的初步识别过程中,识别了250多种被认为具有资源效率的技术,策略和产品。其中,选择了22个具有高资源效率潜力的主题。它们涵盖了广泛的相关技术,产品和策略,例如能源供应和存储,绿色IT,交通运输,食品,农业工程,设计策略,轻型建筑以及“用而不是拥有”的概念。为了评估所选主题在整个生命周期中的资源使用情况,材料足迹已被用作可靠的指标。此外,还考虑了定性的可持续性标准。本文介绍的结果表明,许多技术,产品和策略都具有巨大的资源利用潜力。

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