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Life cycle assessment of concrete structures with reuse and recycling strategies: A novel framework and case study

机译:重用和回收策略混凝土结构的生命周期评估:一种小说框架和案例研究

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摘要

In the construction industry, reuse and recycling strategies help reducing waste, saving energy and cutting down emissions by converting construction and demolition (C&D) waste into resources. This study proposes a novel framework to guide the life cycle assessment (LCA) of concrete structures with reuse and recycling strategies. The material flow in recycling strategies is clarified explicitly. A new definition of degradation rate is introduced to set a nonlinear allocation rule for reusable components based on the durability feature of concrete structures. Reusable rate and replacement percentage are adopted to provide a convenient way to adjust the type and level of the strategies. As a result, a unified system boundary and corresponding indicator functions can be established for various strategies, combing the closed-loop analysis and the open-loop analysis. In the case study, design for deconstruction (DfD) and recycled aggregate concrete (RAC) are taken as examples of reuse and recycling strategies, respectively. With the proposed framework, LCA of various strategy combinations are conducted considering the global warming potential (GWP) and abiotic depletion potential (ADP) indicators. Results show that the maximal environmental benefit of DfD is 1.8-2.8 times compared to that of RAC. When adopting DfD and RAC simultaneously, the environmental benefit level of each strategy will decline, whereas the overall benefits will be increased. LCA with the proposed framework avoids some assumptions in conventional LCA and provides more reliable results for various strategy combinations.
机译:在建筑行业,重用和回收策略帮助减少浪费,通过将建筑和拆迁(C&D)废物转化为资源,通过将垃圾(C&D)浪费减少浪费,节约能源和降低排放。本研究提出了一种新颖的框架,以指导混凝土结构的生命周期评估(LCA)与再利用和回收策略。解回策略中的材料流动明确阐明。引入了劣化率的新定义,以确定基于混凝土结构的耐久性特征的可重复使用组件的非线性分配规则。采用可重复使用的速率和更换百分比来提供调整策略类型和水平的便捷方式。结果,可以为各种策略建立统一的系统边界和相应的指示功能,梳理闭环分析和开环分析。在案例研究中,分别将解构(DFD)和再循环骨料混凝土(RAC)的设计分别作为重用和回收策略的例子。利用所提出的框架,考虑全球变暖潜力(GWP)和非生物耗尽潜力(ADP)指标进行各种策略组合的LCA。结果表明,与RAC相比,DFD的最大环境效益为1.8-2.8次。同时采用DFD和RAC时,每个策略的环境效益水平将下降,而总体效益将增加。 LCA与所提出的框架避免了传统LCA中的一些假设,并为各种策略组合提供了更可靠的结果。

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