可再生能源转型和技术创新如何促进碳生产力?来自中国的经验证据

IF 1.9 4区 工程技术 Q4 ENERGY & FUELS
Xiaohong Liu
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引用次数: 0

摘要

中国政府致力于实现 "双碳 "目标,提出从能源消耗双控转向碳排放双控。在此背景下,研究可再生能源转化(RET)和技术创新对碳生产率(CP)的影响具有重要的理论和现实意义。本研究基于 2004 年至 2021 年中国 30 个省份的面板数据,采用面板均值组(MG)估计方法,实证研究了可再生能源改造和技术创新对碳生产率的影响。为了进行稳健性检验,采用了普通最小二乘法进行估计。主要结论如下:首先,基于 MG 估计,可以发现 RET 对中国 CP 有显著的正向影响。然而,技术创新的系数被发现为显著负值,表明加强技术创新可以改善 CP。此外,研究结果表明,经济发展和产业升级对消费水平有积极影响。其次,异质性研究表明,中国东部和西部地区的可再生能源技术可以改善消费水平。西部地区的 RET 系数明显高于东部地区。东部和中部地区的技术创新系数显著为正,加强这两个地区的技术创新可以显著改善 CP;东部地区的技术创新系数高于中部地区。三个地区的国内生产总值(GDP)系数明显为正,加强经济发展可以提高这三个地区的 CP。最后,为提高 CP,建议推广可再生能源技术,增加研发投入,加强技术创新,注重高质量发展,因地制宜,因地制宜,因地制宜,因地制宜,因地制宜,因地制宜,因地制宜,因地制宜,因地制宜,因地制宜,因地制宜,因地制宜,因地制宜,因地制宜,因地制宜。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
How do renewable energy transformation and technological innovation promote carbon productivity? Empirical evidence from China
The Chinese government is committed to achieve the goal of “double carbon” and proposes to shift from double control of energy consumption to double control of carbon emissions. In this scenario, it is of great theoretical and practical significance to study the impact of renewable energy transformation (RET) and technological innovation on carbon productivity (CP). Based on panel data obtained from 30 provinces of China from 2004 to 2021, this study empirically investigated the influence of RET and technological innovation on CP by using panel mean group (MG) estimation. For robustness test, ordinary least squares estimation method was adopted. The main conclusions are as follows: First, based on MG estimation, it was observed that RET has significant positive impact on CP in China. However, the coefficient of technological innovation was found to be significantly negative, indicating that enhancing technological innovation can improve CP. Additionally, the findings showed that economic development and industrial upgradation had a positive impact on CP. Second, the heterogeneity study showed that the RET in the eastern and western regions of China can improve CP. The coefficient of RET in the western region was significantly higher than that in the eastern region. The technological innovation coefficients in the eastern and central regions were significantly positive and enhancing technological innovation in these two regions can considerably improve CP; the technological innovation coefficient in the eastern region was higher than that in the central region. The Gross Domestic Product (GDP) coefficients of the three regions were significantly positive and enhancing economic development can increase CP in these three regions. Finally, to improve CP, it is suggested to promote RET, increase investment in research and development, enhance technological innovation, emphasize high-quality development, prioritize adapting to local conditions, and implement region-appropriate policies and measures.
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来源期刊
Journal of Renewable and Sustainable Energy
Journal of Renewable and Sustainable Energy ENERGY & FUELS-ENERGY & FUELS
CiteScore
4.30
自引率
12.00%
发文量
122
审稿时长
4.2 months
期刊介绍: The Journal of Renewable and Sustainable Energy (JRSE) is an interdisciplinary, peer-reviewed journal covering all areas of renewable and sustainable energy relevant to the physical science and engineering communities. The interdisciplinary approach of the publication ensures that the editors draw from researchers worldwide in a diverse range of fields. Topics covered include: Renewable energy economics and policy Renewable energy resource assessment Solar energy: photovoltaics, solar thermal energy, solar energy for fuels Wind energy: wind farms, rotors and blades, on- and offshore wind conditions, aerodynamics, fluid dynamics Bioenergy: biofuels, biomass conversion, artificial photosynthesis Distributed energy generation: rooftop PV, distributed fuel cells, distributed wind, micro-hydrogen power generation Power distribution & systems modeling: power electronics and controls, smart grid Energy efficient buildings: smart windows, PV, wind, power management Energy conversion: flexoelectric, piezoelectric, thermoelectric, other technologies Energy storage: batteries, supercapacitors, hydrogen storage, other fuels Fuel cells: proton exchange membrane cells, solid oxide cells, hybrid fuel cells, other Marine and hydroelectric energy: dams, tides, waves, other Transportation: alternative vehicle technologies, plug-in technologies, other Geothermal energy
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