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Life cycle analysis of energy consumption and CO2 emissions from a typical large office building in Tianjin, China

机译:中国天津一栋典型大型办公楼的能耗和二氧化碳排放的生命周期分析

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Tiejian Tower, a large public building in Tianjin, China, is one of the many energy-efficient buildings the country has built to reduce energy consumption and carbon dioxide (CO2) emissions. Based on first-hand data from the project and using an ecological input output table, the embodied energy and CO2 emissions for that building were estimated for its life cycle. Four scenarios were designed to assess the impacts of space heating and power mix, and sensitivity analysis was conducted to examine the major factors that can reduce CO2 emissions. The operational stage consumed more energy than any other stage, and contributed the most to CO2 emissions. The influence of energy-efficient equipment and their lifespan on energy consumption and CO2 emissions varied greatly. Policies that encourage construction of buildings with longer lifespans and promote energy-saving measures can reduce energy consumption and carbon emissions in the buildings sector. The state should also supervise the operation of large buildings, involve large public buildings in future emissions-trading systems, and consider the power mix while planning such buildings. (C) 2017 Elsevier Ltd. All rights reserved.
机译:铁建塔是中国天津市的大型公共建筑,是中国为减少能耗和减少二氧化碳排放而建造的众多节能建筑之一。基于该项目的第一手数据,并使用生态投入产出表,估算了该建筑物在其生命周期中所体现的能源和二氧化碳排放量。设计了四种方案来评估空间供暖和电力混合的影响,并进行了敏感性分析,以研究可减少CO2排放的主要因素。运营阶段比其他任何阶段消耗更多的能源,并且对二氧化碳排放的贡献最大。节能设备及其使用寿命对能耗和二氧化碳排放量的影响差异很大。鼓励建造使用寿命更长的建筑物并采取节能措施的政策可以减少建筑物部门的能耗和碳排放。国家还应监督大型建筑物的运行,将大型公共建筑物纳入未来的排放交易系统中,并在规划此类建筑物时考虑电力结构。 (C)2017 Elsevier Ltd.保留所有权利。

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