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Spatiotemporal Dynamics of Ecological Total-Factor Energy Efficiency and Their Drivers in China at the Prefecture Level

机译:中国地域层面生态总因子能效的时空动态及其驱动因素

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摘要

Improvement of ecological total-factor energy efficiency (ETFEE) is crucial for transformation of China’s economic growth pattern, energy conservation and emissions abatement. Here we combined the epsilon-based measure (EBM) and the Global Malmquist-Luenberger (GML) productivity index to evaluate ETFEE and ecological total-factor energy productivity (ETFEP) and its decompositions for 283 prefecture-level cities in China between 2003 and 2013. A spatial econometric model is used to investigate factors influencing ETFEE and ETFEP. Results indicated that ETFEE, ETFEP and corresponding trends differ significantly depending on whether environmental constraints are considered. No convergence trend was found in ETFEE between prefecture-level cities. Technical progress plays the largest role in increasing ETFEP growth. Pure efficiency change and scale efficiency change, however, are the main hindering factors. Boosting cumulative technological progress, cumulative scale efficiency growth rate and cumulative pure efficiency growth rate are important means of increasing ETFEP. I also found that areas with high levels of economic development do not completely overlap with areas of high ETFEE. Surprisingly, the fiscal expenditure on scientific undertakings and technological spillover effects from foreign direct investment (FDI) have not substantially increased ETFEE. Whereas increased industrialization hinders the improvement of ETFEE. Furthermore, reducing per capita energy consumption help boost ETFEE. In addition, endowment advantages of factors of production have a positive overall effect on improving ETFEE. Lastly, important policy implications are inferred.
机译:生态全要素能源效率(ETFEE)的提高对于中国经济增长方式的转变,节能和减排至关重要。在这里,我们结合了基于ε的测度(EBM)和全球Malmquist-Luenberger(GML)生产率指数,以评估2003年至2013年间中国283个地级市的ETFEE和生态全要素能源生产率(ETFEP)及其分解。使用空间计量经济模型来研究影响ETFEE和ETFEP的因素。结果表明,根据是否考虑环境限制,ETFEE,ETFEP和相应的趋势存在显着差异。在地级市之间,ETFEE没有发现趋同趋势。技术进步在增加ETFEP增长中起着最大的作用。但是,纯效率变化和规模效率变化是主要的阻碍因素。促进累积技术进步,累积规模效率增长率和累积纯效率增长率是增加ETFEP的重要手段。我还发现,经济发展水平高的地区与ETFEE高的地区并不完全重叠。令人惊讶的是,外国直接投资(FDI)在科学事业和技术溢出效应方面的财政支出并未大幅增加ETFEE。而工业化程度的提高阻碍了ETFEE的发展。此外,减少人均能耗有助于提高ETFEE。此外,生产要素的advantages赋优势对改善ETFEE具有积极的总体影响。最后,推断出重要的政策含义。

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