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Input-output and process LCAs in the building sector: are the results compatible with each other?

机译:建筑行业的投入产出和过程LCAs:结果是否相互兼容?

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摘要

Buildings are a major contributor to climate change. Use phase has traditionally been the focus area, but the importance of construction-phase has increased with the emergence of energy-efficient buildings. Life-cycle assessment (LCA) is arguably the best method to assess and analyze the emissions caused by buildings. However, within LCA there are two very different approaches - process LCA and input-output (IO) LCA - which lead to different results. When looking at the scale of published LCA results, it is evident that IO LCAs are placed at the top end, and process LCAs at the bottom end. It is thus questionable whether LCA can provide data that can be used for decision-making and policy formation. This study takes a step toward filling this gap by presenting a comparison of process and IO LCA results of the pre-use phase of a residential concrete element building in Finland. Exactly the same scope is utilized in order to maximize comparability. The results depict how the two main LCA methods produce significantly different results. The implications of acknowledging this are discussed. The results fall in midway between the extremes published using the two methods but still deviate from each other by a multiplier of almost 2.
机译:建筑物是导致气候变化的主要因素。传统上,使用阶段一直是重点关注的领域,但是随着节能建筑的出现,施工阶段的重要性日益提高。生命周期评估(LCA)无疑是评估和分析建筑物排放物的最佳方法。但是,在LCA中,有两种截然不同的方法-处理LCA和输入输出(IO)LCA-导致不同的结果。当查看已发布的LCA结果的规模时,很明显,IO LCA位于顶端,而处理LCA位于底端。因此,LCA是否可以提供可用于决策和政策制定的数据值得怀疑。通过比较芬兰住宅混凝土元件建筑物的使用前阶段的过程和IO LCA结果,本研究迈出了填补这一空白的一步。为了最大化可比性,使用了完全相同的范围。结果描述了两种主要的LCA方法如何产生明显不同的结果。讨论了确认这一点的含义。结果介于两种方法发布的极端值之间,但仍相差近2倍。

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