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Assessing the role of technology in global manufacturing energy intensity change: A production-theoretical decomposition analysis

机译:评估技术在全球制造能源强度变化中的作用:一种生产理论分解分析

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Decoupling manufacturing production from energy use is essential to mitigating global climate change. Production technology plays a fundamental role in manufacturing and affects energy use patterns. Assessing the impact of technology on manufacturing energy use is valuable for the design of effective measures to decouple the manufacturing industry. However, heterogeneous technologies and varying input allocation across manufacturing sectors impose challenges on this assessment. This study develops a two-stage production-theoretical decomposition analysis model that can examine energy use from a production systems perspective while accounting for sectoral heterogeneity and factor substitution. Furthermore, the proposed model is applied to empirically study the determinants of manufacturing energy intensity changes of 41 major economies during 2005-2014. The results show that the decreasing aggregate intensity in the decade was sourced primarily from the developed economies. Capital-energy substitution and technological progress contributed largely to the intensity improvement, while poor technical performance in production and energy utilization formed the primary barrier. Varying patterns of determinants are identified from the temporal, regional, and sectoral perspectives. Detailed results with discussions and policy implications are presented.
机译:从能源使用去耦制造生产对于减轻全球气候变化至关重要。生产技术在制造中起着基本作用,并影响能源使用模式。评估技术对制造能源使用的影响对于将制造业解耦的有效措施设计有价值。然而,在制造业的异质技术和不同的输入分配对该评估施加挑战。本研究开发了一种两级生产理论分解分析模型,可以从生产系统的角度检查能源使用,同时占部门异质性和因子替代。此外,拟议的模型适用于经验研究2005 - 2014年41个主要经济体的制造能源强度变化的决定因素。结果表明,十年的总体强度降低,主要来自发达经济体。资本能量替代和技术进步在很大程度上贡献了强度改善,而生产和能源利用的技术性能差形成了主要屏障。从时间,区域和部门视角鉴定不同决定因素的不同模式。展示了讨论和政策影响的详细结果。

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