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Exploring the driving forces of energy-related CO_2 emissions in China's construction industry by utilizing production-theoretical decomposition analysis

机译:利用生产理论分解分析探索中国建筑行业与能源有关的CO_2排放的驱动力

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摘要

The construction industry is one of the largest energy consumers and CO2 emitters in China. This paper primarily aimed to explore the driving forces of energy-related CO2 emissions (ECE) from the construction industry. Adopting a comprehensive decomposition approach, this study decomposes the changes in ECE into eight factors. The main results provide the following findings. (1) Industrial activity was the largest factor pushing the growth of CO2 emissions, driving up CO2 emissions in all years and contributing to a 174.65 Mt CO2 emissions increase in total. (2) In contrast, advances in industrial output technology represented the dominant factor inhibiting CO2 emissions, cumulatively reducing CO2 emissions by 99 Mt. (3) The effects of potential energy intensity changes and industrial output technical efficiency fluctuated in different years but exerted positive effects on CO2 emissions over the entire period. (4) Additionally, changes in spatial structure, energy-saving technology, and energy consumption structure as well as energy usage efficiency all contributed to emissions reductions to varying degrees. The CO2 emissions of the construction industry increased in all provinces, while emissions changes and their factor effects varied distinctly across provinces. (C) 2018 Elsevier Ltd. All rights reserved.
机译:建筑业是中国最大的能源消费和二氧化碳排放国之一。本文的主要目的是探讨建筑行业与能源有关的二氧化碳排放量(ECE)的驱动力。本研究采用综合分解方法,将欧洲经委会的变化分解为八个因素。主要结果提供以下发现。 (1)工业活动是推动CO2排放量增长,推动CO2排放量逐年增加并导致174.65 Mt CO2排放量总量增加的最大因素。 (2)相反,工业输出技术的进步代表了抑制CO2排放的主要因素,累计减少了99 Mt的CO2排放。 (3)潜在的能源强度变化和工业产出技术效率的影响在不同年份有所波动,但在整个时期内对CO2排放产生了积极影响。 (4)此外,空间结构,节能技术,能耗结构以及能源利用效率的变化都在不同程度上减少了排放。所有省份的建筑业二氧化碳排放量均有所增加,而各省份的排放量变化及其影响因素却有明显差异。 (C)2018 Elsevier Ltd.保留所有权利。

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