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Economic potential and environmental impacts of reused steel structures

机译:重用钢结构的经济潜力和环境影响

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Considerable amounts of natural resources are embodied in the building stock and infrastructure. Designing resource-efficient buildings is, therefore, an important approach to reduce raw material use and environmental impacts. However, sustainability criteria in national building codes focus primarily on improving energy efficiency and waste recovery. The EU target to recover 70% of construction and demolition waste is already being achieved in many countries; however, this is achieved using the lowest levels of the waste management hierarchy. Although landfill is avoided, the retained value of recovered products is generally low and there is a need to prioritise higher levels of recovery, i.e. reuse and waste prevention. Targets for this higher level of utilisation are currently unavailable, although they can be expected to be included in future European waste legislation. Consequently, the reuse of building structures is still uncommon and is not largely supported through regulation. The building stock is not designed for deconstruction, and material recovery for reuse at the end of life of buildings is complex and challenging. To support greater reuse of steel structures, this paper demonstrates the calculation of the economic potential and environmental impact of reused steel building elements.
机译:大量自然资源体现在建筑物和基础设施中。因此,设计资源高效的建筑是减少原材料使用和环境影响的重要方法。但是,国家建筑规范的可持续性标准主要关注提高能源效率和废物恢复。在许多国家已经取得了恢复70%的建设和拆迁废物的欧盟目标;但是,这是使用废物管理层次结构的最低水平实现的。虽然避免了垃圾填埋场,所回收的产品的保留值通常很低,并且需要优先考虑更高水平的回收率,即重用和废物预防。这种更高水平利用率的目标目前无法使用,尽管它们可以预期包括在未来的欧洲废物立法中。因此,建筑物结构的重用仍然是罕见的,并且在很大程度上通过调节基本上支持。建筑物的股票不是用于解构的解构,在建筑物的生命结束时重复使用的材料恢复是复杂的并且具有挑战性。为了支持更高的钢结构重用,本文展示了重复使用钢结构元件的经济潜力和环境影响的计算。

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