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Using LCA to research carbon footprint for precast concrete piles during the building construction stage: A China study

机译:在建筑施工阶段使用LCA研究预制混凝土桩的碳足迹:中国研究

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Due to the rapid development of the construction industry, large construction projects consume a significant amount of energy, and emit large amounts of carbon dioxide into the atmosphere, which has received extensive attention from the society. According to statistics, 30% of the energy losses and 40% of the solid wastes of the construction industry are generated during the construction phase. In addition, 40% of the solid waste generated by the construction industry is generated during the construction phase. Therefore, it is an important large potential research value in the construction stage emission reduction. As a result, this study aims to investigate precast concrete pile products and their carbon footprint at the construction stage based on the life cycle assessment (LCA) method. Based on the Intergovernmental Panel on Climate Change (IPCC), the Chinese Life Cycle Database (CLCD) databases, a database of mechanical equipment carbon emission factors was compiled. The carbon footprint of precast concrete piles was divided into three sources: material transportation, construction equipment, and office area. The carbon footprint calculation model of precast concrete pile during the construction stage was established. Lastly, a detailed case study was conducted to verify the empirical findings. Pile foundation area, pile foundation cost, and pile foundation number were analyzed as independent variables, through SPSS(Statistical Product and Service Solutions) software for regression analysis. Based on research result, the carbon emissions of construction machinery reached 73% of the total carbon emissions during the construction of precast concrete piles, and the carbon emissions of pile drivers are more than half of the carbon emissions of construction machinery. And there is a strong linear relationship between the area of pile foundation, the cost of pile foundation and the number of pile foundation and the total carbon emission during the construction of precast concrete piles.This study contributes to the body of knowledge by providing the carbon footprint calculation and establishing the trend of carbon emissions for precast concrete pile construction. In addition to that, the findings of this study can be used to improve construction management plans and select energy-saving technologies. The results can also provide a theoretical support for the formulation of regulations and emission reduction policies based on building energy conservation and carbon emission reduction. (C) 2019 Elsevier Ltd. All rights reserved.
机译:由于建筑业的飞速发展,大型建筑工程消耗大量的能源,并向大气中排放大量的二氧化碳,引起了社会的广泛关注。据统计,建筑行业在建筑阶段产生了30%的能量损失和40%的固体废物。此外,建筑行业产生的固体废物中有40%是在施工阶段产生的。因此,在施工阶段的减排中具有重要的重要的潜在研究价值。因此,本研究旨在根据生命周期评估(LCA)方法研究预制混凝土桩产品及其在施工阶段的碳足迹。在政府间气候变化专门委员会(IPCC),中国生命周期数据库(CLCD)数据库的基础上,建立了机械设备碳排放因子数据库。预制混凝土桩的碳足迹分为三个来源:物料运输,建筑设备和办公区域。建立了预制混凝土桩施工期碳足迹计算模型。最后,进行了详细的案例研究以验证经验结果。通过SPSS(统计产品和服务解决方案)软件对桩基础面积,桩基础成本和桩基础数量进行自变量分析,进行回归分析。根据研究结果,在预制混凝土桩施工过程中,工程机械的碳排放量占总碳排放量的73%,打桩机的碳排放量占工程机械碳排放量的一半以上。并且在预制混凝土桩的施工过程中,桩基础的面积,桩基础的成本和桩基础的数量与总碳排放量之间存在很强的线性关系。计算足迹并确定预制混凝土桩施工的碳排放趋势。除此之外,本研究的结果可用于改进施工管理计划和选择节能技术。研究结果也可为基于建筑节能和碳减排的法规和减排政策的制定提供理论支持。 (C)2019 Elsevier Ltd.保留所有权利。

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