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Industrial structure, technological progress and CO2 emissions in China: Analysis based on the STIRPAT framework

机译:中国产业结构,技术进步和二氧化碳排放量:基于芯片框架的分析

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摘要

Using data for 30 provincial panels in China from the period 1997-2014, this study analyzes the impact of multi-dimensional industrial structures and technological progress on carbon emissions in the STIRPAT framework. A spatial autocorrelation test demonstrated that there were significant positive global spatial correlations and local spatial agglomerations among the regions that were assessed. The dynamic spatial regression results show that industrial structure rationalization, industrial structural transformation and industrial structural upgrading significantly reduced carbon emissions. Industrial structural transformation provided the greatest contribution to carbon emissions. Technological progress was also conducive to reducing carbon emissions. Furthermore, efficiency improvements and technological innovation reduced carbon emissions, and efficiency improvements played a relatively greater role. There was an inverted U-shaped relationship between regional affluence and carbon emissions. The energy consumption structure, population and urbanization had significantly positive effects on carbon dioxide emissions, but the impact of foreign direct investments on carbon reduction was insignificant. Finally, some policy recommendations are given.
机译:从1997 - 2014年期间,在中国使用数据,从1997 - 2014年期间,分析了多维产业结构的影响和技术进步对芯片框架的碳排放。空间自相关测试证明,评估的区域中存在显着的全局空间相关和局部空间聚集。动态空间回归结果表明,产业结构合理化,产业结构转型和产业结构升级显着降低了碳排放。工业结构转型为碳排放提供了最大的贡献。技术进步也有利于减少碳排放。此外,效率提高和技术创新降低了碳排放,效率改善发挥了相对更大的作用。区域富裕和碳排放之间存在倒U形关系。能源消耗结构,人口和城市化对二氧化碳排放具有显着积极的影响,但外国直接投资对碳还原的影响是微不足道的。最后,给出了一些政策建议。

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