Convergence in energy self-sufficiency: the role of renewable energy, fossil fuel rents, energy efficiency and gross domestic product per capita

IF 9 1区 工程技术 Q1 ENERGY & FUELS
Mehmet Pinar
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引用次数: 0

Abstract

Increasing energy self-sufficiency and energy security are essential for countries to promote sustainable development. Analyzing convergence in energy self-sufficiency is crucial for designing policies to address energy security challenges. This paper examines convergence in energy self-sufficiency (measured by the ratio of total primary energy production to total primary energy consumption) across 159 countries from 1993 to 2022. The club convergence algorithm is used to assess whether all countries converge in energy self-sufficiency. The findings indicate that there is no overall convergence across all countries, but distinct convergence clubs exist. Additionally, the analysis reveals varying numbers of convergence clubs in energy self-sufficiency across different geographical regions. Furthermore, conditional beta convergence analyses are conducted using system generalized methods of moments (GMM) to identify the key determinants of energy self-sufficiency. A Probit model is also employed to examine the factors that increase the likelihood of belonging to a high-energy self-sufficiency club. The results suggest that countries with higher fossil fuel rents, greater renewable energy production, and improved energy efficiency tend to increase their energy self-sufficiency and belong to the final convergence club with higher energy self-sufficiency.
能源自给自足的趋同:可再生能源、化石燃料租金、能源效率和人均国内生产总值的作用
提高能源自给和能源安全是各国促进可持续发展的根本。分析能源自给的趋同对于制定应对能源安全挑战的政策至关重要。本文考察了1993年至2022年159个国家能源自给自足(以一次能源生产总量与一次能源消费总量的比例衡量)的趋同程度。俱乐部收敛算法用于评估各国在能源自给自足方面是否收敛。研究结果表明,所有国家都没有整体趋同,但存在不同的趋同俱乐部。此外,分析还揭示了不同地理区域能源自给自足趋同俱乐部的数量不同。此外,使用系统广义矩量方法(GMM)进行条件贝塔收敛分析,以确定能源自给的关键决定因素。Probit模型也被用来检验增加加入高能量自给自足俱乐部的可能性的因素。研究结果表明,化石燃料租金较高、可再生能源产量较高、能源效率较高的国家倾向于提高能源自给率,属于能源自给率较高的最终收敛俱乐部。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Energy
Energy 工程技术-能源与燃料
CiteScore
15.30
自引率
14.40%
发文量
0
审稿时长
14.2 weeks
期刊介绍: Energy is a multidisciplinary, international journal that publishes research and analysis in the field of energy engineering. Our aim is to become a leading peer-reviewed platform and a trusted source of information for energy-related topics. The journal covers a range of areas including mechanical engineering, thermal sciences, and energy analysis. We are particularly interested in research on energy modelling, prediction, integrated energy systems, planning, and management. Additionally, we welcome papers on energy conservation, efficiency, biomass and bioenergy, renewable energy, electricity supply and demand, energy storage, buildings, and economic and policy issues. These topics should align with our broader multidisciplinary focus.
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