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CO2 mitigation potential in China's building construction industry: A comparison of energy performance

机译:中国建筑行业的二氧化碳减排潜力:能源绩效的比较

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Building construction is a leading industry in China's economy and is also important in the fight against climate change mitigation. This paper fills the research gap by investigating the relationship between CO2 mitigation potential and energy performance in the building construction industry using a counterfactual analysis approach. A commonly used method is adopted to calculate energy-related CO2 emissions in the building construction industry and a newly proposed total-factor non-radial directional distance function is conducted to calculate energy performance. Further, they are connected through a logarithmic mean Divisia index decomposition analysis. The empirical results show that: (i) CO2 emissions in China's building construction industry are increasing rapidly and electricity consumption has become the main source of emissions. (ii) Energy intensity decline is the major contributor to CO2 mitigation. (iii) There exists a large room for energy intensity decline and more than 10% of the CO2 emissions could be reduced if the average energy intensity could achieve the level of the best performing provinces. (iv) The coastal regions show better energy performance than the interior regions and there is a significant tendency towards divergence of energy performance among provinces. It is thus necessary to encourage technology diffusion and mandate minimum energy performance standards. (C) 2015 Elsevier Ltd. All rights reserved.
机译:房屋建筑是中国经济的主导产业,在与缓解气候变化的斗争中也很重要。本文通过使用反事实分析方法研究建筑施工行业中二氧化碳减排潜力与能源绩效之间的关系,填补了研究空白。采用一种常用的方法来计算建筑行业中与能源有关的二氧化碳排放量,并采用新提出的全因子非径向方向距离函数来计算能源性能。此外,它们通过对数均值Divisia指数分解分析进行连接。实证结果表明:(i)中国建筑业的二氧化碳排放量正在迅速增加,电力消耗已成为主要的排放源。 (ii)能源强度下降是减少二氧化碳排放的主要因素。 (iii)能源强度下降的空间很大,如果平均能源强度能够达到表现最好的省份的水平,则可以减少超过10%的二氧化碳排放。 (iv)沿海地区的能源表现要好于内陆地区,各省之间的能源表现有很大的差异。因此,有必要鼓励技术推广并强制规定最低能效标准。 (C)2015 Elsevier Ltd.保留所有权利。

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