Consequential life cycle assessment of demolition waste management in Germany

Christian Dierks, Tabea Hagedorn, Theresa Mack, Vanessa Zeller
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Abstract

Bulk mineral waste materials such as construction and demolition waste are Germany’s largest waste stream. Despite the availability of high-quality recycling pathways such as road base layers, waste concrete is predominantly recycled into lower-quality recycling pathways like earthworks or unbound road construction. This is due to low demand for recycled aggregates in road base layers and frost protection layers, especially in public procurement.This study assesses the environmental consequences of increasing high-quality recycling of waste concrete in the near future to provide decision support for public procurement in Germany. The focus lies on climate change due to its importance for decision-makers. However, 17 other impact categories were assessed to avoid problem shifting.Life cycle assessment (LCA) is applied with background data from ecoinvent 3.9.1. Impact assessment was conducted at midpoint level using IPCC 2021 and ReCiPe Midpoint (H). Foreground data were taken from literature and expert interviews. In line with the goal of this LCA, a consequential modeling approach was followed to account for changes in the material flow system. Substitution creates a cascade effect previously omitted in consequential LCA studies, in which lower quality recycling materials replace higher quality recycling materials in their respective utilization pathways.Increasing the high-quality recycling of waste concrete into road base layers causes a reduction in environmental impacts for all 18 impact categories, as it replaces natural aggregate and avoids backfilling of mixed mineral waste and excavated earth through substitution effects. Transport distances and ferrous metal recovery were identified as hot spots. Sensitivity analyses show that only transport is a significant issue.Increasing the high-quality recycling of waste concrete in Germany is recommended in terms of environmental impacts. Lower-quality recycling is environmentally feasible only in cases where the avoided transport distances for natural aggregates and backfilling are significantly lower than the additional transport distances for high-quality recycling.
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德国拆除废物管理的后果生命周期评估
散装矿物废料(如建筑和拆除废料)是德国最大的废物流。尽管有路基层等高质量的回收途径,但废弃混凝土主要被回收到土方工程或无约束道路建设等低质量的回收途径中。本研究评估了在不久的将来增加废弃混凝土高质量回收利用的环境影响,为德国的公共采购提供决策支持。由于气候变化对决策者的重要性,本研究重点关注气候变化。生命周期评估(LCA)的背景数据来自 ecoinvent 3.9.1。使用 IPCC 2021 和 ReCiPe Midpoint (H) 在中点水平上进行影响评估。前景数据来自文献和专家访谈。根据本项生命周期评估的目标,我们采用了后果建模法来考虑材料流动系统的变化。提高废弃混凝土在路基层中的回收利用质量可减少所有 18 个影响类别的环境影响,因为它取代了天然骨料,并通过替代效应避免了混合矿物废料和挖掘土的回填。运输距离和黑色金属回收被确定为热点。敏感性分析表明,只有运输是一个重要问题。就环境影响而言,建议德国提高废弃混凝土的回收质量。只有在避免天然骨料和回填的运输距离大大低于高质量回收的额外运输距离的情况下,低质量回收在环境上才是可行的。
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