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Comparing Life Cycle Assessment Databases for Estimating Carbon Emissions of Prefabricated Buildings

机译:比较生命周期评估数据库来估算预制建筑物的碳排放量

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The use of prefabrication for buildings has been found to lead to benefits including improved efficiency in the construction processes, and reduced waste and environmental effects over a building's life cycle. Studies of buildings' life cycle carbon emissions (LCCa) have been conducted, but the unavailability of reliable data restricts the estimation of accurate LCCa of prefabricated buildings, making it difficult to compare the results using databases with different backgrounds. This paper aims to examine the differences among the existing databases for estimating prefabricated buildings' LCCa. In total, 17 databases focused on construction life cycle assessment (LCA) were analyzed and three databases were compared on prefabricated building component level. Facades, kitchens and staircases of a high-rise prefabricated building in Hong Kong were selected for detailed comparison. The results show that the carbon emissions calculated using "ecoinvent" and the "ETH-ESU 96" databases are similar while the results calculated using "IDEMAT 2001" are different. The differences among the three databases are mainly caused by three reasons: the lack of enough data on construction materials, the differences in the geographical representativeness of the material extraction and electricity generation, and the inconsistent LCA system boundaries used in these databases. Based on these findings, actions are suggested to improve the comparability of different databases, namely, developing a uniform communication system for LCA databases, enriching the open LCA databases, and achieving the consistency of LCA system boundaries. This paper provides a starting point to select a suitable database for prefabricated buildings' LCCa. It also presents an effective method to overcome the barriers to achieving comparability among different databases and benchmark the carbon emissions calculated using different databases.
机译:已经发现使用预制件的预制措施导致施工过程中提高效率,并在建筑物的生命周期中降低了废物和环境影响。已经进行了建筑物生命周期碳排放(LCCA)的研究,但可靠数据的不可用性限制了预制建筑准确LCCA的估计,使得难以将结果与不同背景的数据库进行比较。本文旨在检验现有数据库中的差异,以估算预制建筑物的LCCA。共有17个专注于施工生命周期评估(LCA)的数据库,并在预制建筑组件水平上进行了三个数据库。选择在香港的高层预制建筑的外墙,厨房和楼梯进行详细比较。结果表明,使用“EcoInvent”和“Eth-esu 96”数据库计算的碳排放是类似的,而使用“Idemat 2001”计算的结果是不同的。三个数据库之间的差异主要是由于三种原因:缺乏足够的建筑材料数据,材料提取和发电的地理代表性的差异,以及这些数据库中使用的不一致的LCA系统边界。基于这些发现,建议采取行动来提高不同数据库的可比性,即开发LCA数据库的统一通信系统,丰富开放式LCA数据库,并实现LCA系统边界的一致性。本文提供了为预制建筑物的LCCA选择合适数据库的起点。它还呈现了一种有效的方法,克服了实现不同数据库之间的可比性的障碍,并基准使用不同数据库计算的碳排放。

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