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Evaluation of regional metafrontier total factor carbon emission performance in China's construction industry: Analysis based on modified non-radial directional distance function

机译:中国建筑业区域元碳总系数因数因数碳排放性能评价:基于改进的非径向距离函数的分析

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We establish a metafrontier total factor carbon emission performance index (NMTCPI) of 30 provinces' construction industry in China during 2004-2017. In order to avoid the problem of two efficiency decomposition terms which includes the best practice gap ratio and technical gap ratio greater than 1, the non-radial directional distance function is modified. The results are concluded as follows: (1) Carbon emissions efficiency in China's construction industry is at low level and grows rapidly during 2004-2017, the potential for CO2 emission reduction is huge. (2) Decomposition analysis reveals that the increase of NMTCPI principally attributed to technical progress. Technical efficiency has gone through a process of first decline and then rise, which means that the construction industry has changed from extensive development to a low-carbon development model. However, the regional technology gap continues to widen after 2011. (3) Different regions have different driving forces. The improvement of carbon emission efficiency in the eastern region comes from the narrowing technical gap and technical progress, while the increase of carbon emission efficiency in the central and western regions is due to rapid technical progress. For most provinces in western group, the sharp decline in technical efficiency hinders the growth of carbon emission efficiency. (C) 2020 Elsevier Ltd. All rights reserved.
机译:2004 - 2017年,我们在中国建立了30个省份建筑业的Metafr之间的总因素碳排放性能指数(NMTCPI)。为了避免包括最佳实践间隙比和技术间隙比大于1的两个效率分解术语的问题,修改了非径向定向距离功能。结果结束如下:(1)中国建筑业的碳排放效率处于低水平,在2004 - 2017年期间迅速增长,二氧化碳排放减少巨大。 (2)分解分析表明,NMTCPI的增加主要归因于技术进步。技术效率经历了第一次下降的过程,然后上升,这意味着建筑业从广泛发展变为低碳发展模式。然而,2011年后,区域技术差距继续扩大。(3)不同地区有不同的驱动力。东部地区的碳排放效率的提高来自缩小技术差距和技术进步,而中西部地区的碳排放效率的增加是由于技术进步迅速。对于西部大多数省份,技术效率的急剧下降阻碍了碳排放效率的增长。 (c)2020 elestvier有限公司保留所有权利。

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