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Embodied carbon emissions of office building: A case study of China's 78 office buildings

机译:办公楼的碳排放量:以中国78栋办公楼为例

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A CO2 emission in construction materialization stage is the key research point of architectural life cycle assessment, which is concentrated in emission time and in absolute emission Volume. To build a calculation model for CO2 emissions in the materialization stage of office buildings, it should take into consideration the CO2 emissions generated from production and transportation of construction materials and equipment as well as the CO2 emissions generated from the construction process. By this calculation model, the CO2 emissions are analyzed and calculated of 78 office buildings in construction materialization stage. On average, the CO2 emissions in construction materialization stage are 326.75 kg - CO2/m(2) 111; with the increase of building height, CO2 emissions per unit area increase significantly and the CO2 emissions per unit area of super-high-rise buildings are 1.5 times that of the multi-storey buildings; the CO2 emissions of Civil Engineering account for 75% of the whole construction materialization stage; And the carbon emissions of steel, concrete, mortar and wall materials reach over 80% of the Civil Engineering. The storeys of the building and the consumption of construction materials are taken as two independent variables to set up a prediction model for CO2 emissions of office buildings in materialization stage. By statistical analysis and comparison, it can be found that the prediction formula using steel reinforcement, concrete and wall materials as independent variables can better predicate CO2 emissions in the construction materialization stage. (C) 2015 Elsevier Ltd. All rights reserved.
机译:建筑物化阶段的CO 2排放是建筑生命周期评估的关键研究重点,其集中在排放时间和绝对排放量上。要建立办公楼物化阶段的二氧化碳排放量计算模型,应考虑到建筑材料和设备的生产和运输产生的二氧化碳排放量以及施工过程中产生的二氧化碳排放量。通过该计算模型,对78个处于物化阶段的办公楼的CO2排放量进行了分析计算。平均而言,建筑物化阶段的CO2排放量为326.75 kg-CO2 / m(2)111;随着建筑高度的增加,单位面积的二氧化碳排放量显着增加,超高层建筑的单位面积二氧化碳排放量是多层建筑的1.5倍。土木工程的二氧化碳排放量占整个建筑实现阶段的75%;钢材,混凝土,砂浆和墙壁材料的碳排放量达到土木工程的80%以上。以建筑物的层数和建筑材料的消耗量为两个独立变量,建立了物化阶段办公楼二氧化碳排放量预测模型。通过统计分析和比较,可以发现以钢筋,混凝土和墙体材料为自变量的预测公式可以更好地预测建筑物化阶段的二氧化碳排放量。 (C)2015 Elsevier Ltd.保留所有权利。

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