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首页> 外文期刊>The Science of the Total Environment >Decomposition of CO_2 emission intensity in Chinese MIs through a development mode extended LMDI method combined with a production-theoretical approach
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Decomposition of CO_2 emission intensity in Chinese MIs through a development mode extended LMDI method combined with a production-theoretical approach

机译:发展模式扩展LMDI方法与生产理论相结合分解中国MIs的CO_2排放强度

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摘要

An improved understanding of the influence of development mode on carbon intensity (CI) can aid China's manufacturing industries (MIs) to reduce CI without affecting the development of Chinese MIs. To demonstrate the relationship between the development mode and CI well, this work provides the following contributions: (a) The driving factors of Chinese MIs' CI are decomposed by a development mode extended Logarithmic Mean Divisia Index method (LMDI)); (b) The impact of the factors of industrial development mode is analyzed by comprehensively by the extended LMDI combined with production -theoretical decomposition analysis (PDA). (c) The disparities of the driving factors in different industrial classifications are evaluated by applying the development mode extended LMDI combined with PDA in Chinese MIs between 2000 and 2015. Results showed that, (1) at the entire MIs' level, the effects of ratio of energy consumption to R&D (RI) and potential carbon intensity (PCI) were the two leading contributors to the CI decline in Chinese MIs. (2) In terms of the cumulative effects at the subsectoral level, PCI had the largest curbing effect on the CI of all subsectors, and investment intensity (II) had the greatest stimulating effect on the CI of all subsectors. (3) Among the three industrial classifications, the middle-end MIs experienced the largest carbon intensity decline from the 10th Five-Year Plan (FYP) to the 12th FYP, followed by the low- and high-end MIs. RI and PCI decreased the CI of Chinese MIs in all industrial classifications and economic development stages. Potential energy efficiency and II were the two major contributors to CI improvement in all industrial classifications and economic development stages. (C) 2019 Elsevier B.V. All rights reserved.
机译:更好地理解发展方式对碳强度(CI)的影响可以帮助中国的制造业(MI)降低CI,而不会影响中国MI的发展。为了很好地说明发展模式与CI的关系,这项工作提供了以下贡献:(a)通过发展模式扩展的对数平均除数指数法(LMDI)分解了中国MI的CI的驱动因素); (b)通过扩展的LMDI结合生产理论分解分析(PDA),综合分析了工业发展模式因素的影响。 (c)在2000年至2015年之间,通过采用扩展模式LMDI和PDA结合发展模型,评估了中国MIs中不同行业类别的驱动因素差异。结果表明,(1)在整个MIs层面上,能源消耗对研发的比率(RI)和潜在碳强度(PCI)是导致中国MI的CI下降的两个主要原因。 (2)就子行业层面的累积效应而言,PCI对所有子行业CI的抑制作用最大,投资强度(II)对所有子行业CI的刺激作用最大。 (3)在三个行业类别中,中低收入的碳排放强度从第十个五年计划(FYP)到第十二个五年计划的碳强度下降幅度最大,其次是低端和高端MI。 RI和PCI在所有行业分类和经济发展阶段均降低了中国MI的CI。在所有工业分类和经济发展阶段,潜在的能源效率和II是改善CI的两个主要因素。 (C)2019 Elsevier B.V.保留所有权利。

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