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Quantification of building embodied energy in China using an input-output-based hybrid LCA model

机译:使用基于投入产出的混合LCA模型对中国建筑的体现能源进行量化

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In China, a substantial amount of building embodied energy has been consumed as a result of rapid urbanization and the corresponding enormous construction workload. However, it is difficult for conventional life cycle assessment (LCA) models to completely and precisely quantify the embodied energy of a building. To solve this problem, this study develops an input-output (I-O)-based hybrid LCA model. In the model, sensitivity analysis is used to identify the key linkages between sectors that significantly affect the building embodied energy; subsequently, the significant energy paths are extracted. In addition, more reliable process analysis data are used as a substitute for partial energy path data. Using China's 20101-0 table and process analysis data of primary construction materials, the building embodied energy in China in 2010 was quantified to be 1.3528 x 109 t of coal equivalent using the developed I-O hybrid LCA model. Based on the identification of the most intensive energy flows, various measures are proposed to limit the building embodied energy in China. A comparison of the results from different LCA models indicates that the I-O hybrid LCA not only ensures a complete assessment boundary but also improves the reliability of the results by substituting the energy path data with more precise physical process analysis data. (C) 2015 Elsevier B.V. All rights reserved.
机译:在中国,由于城市化的快速发展和相应的巨大建筑工作量,已经消耗了大量的建筑体现能源。但是,传统的生命周期评估(LCA)模型很难完全准确地量化建筑物的内在能量。为解决此问题,本研究开发了一种基于输入-输出(I-O)的混合LCA模型。在该模型中,使用敏感性分析来确定对建筑所体现的能量有重大影响的部门之间的关键联系;随后,提取重要的能量路径。另外,更可靠的过程分析数据被用作部分能量路径数据的替代。利用中国的20101-0表和主要建筑材料的过程分析数据,使用已开发的I-O混合LCA模型,将2010年中国的建筑物体现的能量量化为1.3528 x 109吨煤当量。在确定最密集的能量流的基础上,提出了各种措施来限制中国建筑的体现能量。对来自不同LCA模型的结果进行的比较表明,I-O混合LCA不仅确保了完整的评估边界,而且通过将能量路径数据替换为更精确的物理过程分析数据来提高了结果的可靠性。 (C)2015 Elsevier B.V.保留所有权利。

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