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Assessing the energy productivity of China's textile industry under carbon emission constraints

机译:根据碳排放限制评估中国纺织业的能源生产率

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摘要

Data envelopment analysis (DEA) and the Biennial Malmquist-Luenberger (BML) productivity index are applied to measure and decompose traditional energy efficiency under the carbon emission constraints of China's textile industry for the period 2000-2012. It is found that: (1) overall, the average growth rates of technical improvement, labor, capital for energy substitution, and output structural change are positive, indicating that these are the main factors that improve energy productivity, with output structural change making the largest contribution; (2) the average growth rates of the energy structure effect and technical efficiency are negative, which indicates that the energy structure effect is the main factor hindering energy productivity growth and that the deterioration of the technical efficiency change can inhibit this growth; (3) energy productivity is generally higher in eastern China than in central and western China; and, (4) in the decomposition of energy efficiency, the difference in energy efficiency between eastern and western China is mainly due to structural effects. (C) 2019 Elsevier Ltd. All rights reserved.
机译:数据包络分析(DEA)和两年期Malmquist-Luenberger(BML)生产力指数适用于在2000 - 2012年期间中国纺织业碳排放制约下测量和分解传统能源效率。有人发现:(1)总体而言,技术改善的平均增长率,劳动力,能源替代的资本,以及产出结构变化是积极的,表明这些是提高能源生产率的主要因素,输出结构变化最大的贡献; (2)能源结构效应和技术效率的平均增长率为负,这表明能源结构效应是妨碍能源生产率的主要因素,并且技术效率变化的恶化可以抑制这种增长; (3)中国东部的能源生产率通常比中西部和西部地区更高; (4)在能效的分解中,东部和西部能源效率的差异主要是由于结构效应。 (c)2019 Elsevier Ltd.保留所有权利。

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