Energy intensity among European Union countries: the role of renewable energy, income and trade

B. Gyamfi, P. Kwakwa, T. Adebayo
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引用次数: 13

Abstract

Purpose The International Energy Agency states that the global energy intensity must reduce by 2.9% yearly before attaining Sustainable Development Goal 7.3 by 2030. However, the European Union (EU) seeking to attain a climate-neutral EU by 2050 shall require a substantial rate of reducing energy intensity. Consequently, this study aims to investigate how (clean) renewable energy, income, trade openness, technological innovation and nonrenewable energy consumption impact energy intensity for the EU countries. Design/methodology/approach The quantile regression, augmented mean group and causality techniques were used for analyses. Panel data for 26 EU nations over the 1990 and 2019 period was used. Findings The empirical evidence indicates that the variables have long-run equilibrium relationships. However, the analysis revealed that clean energy and income reduce energy intensity whiles trade, technological innovation and nonrenewable energy consumption increase energy intensity. An interactive term analysis shows that renewable energy and trade interact to reduce further, the negative effect of income on energy intensity. Causality results revealed a feedback connection between energy intensity and clean energy, income, trade liberalization as well as the interaction between income and trade liberalization. A one-way causality was obtained between energy intensity and technological innovation, nonrenewable energy consumption and the interaction between clean energy and income. Practical implications The results imply that EU countries stand to gain if more resources are committed to encouraging the production and consumption of cleaner/renewable energy. Advancement in policies that support renewable energy and facilitate green growth will help reduce energy intensity for the region. Trade policies that promote lower energy consumption should be strengthened. Originality/value The effect of renewable energy on energy intensity is assessed. The moderating impact of renewable energy and trade openness on the income–energy intensity relationship for the EU countries is examined. Moreover, this study uses the quantile estimation technique to assess the nonlinear effect of the explanatory variables on energy intensity.
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欧盟国家的能源强度:可再生能源的作用、收入和贸易
国际能源署指出,到2030年,全球能源强度必须每年降低2.9%,才能实现可持续发展目标7.3。然而,欧盟(EU)要想在2050年前实现气候中和,就必须大幅降低能源强度。因此,本研究旨在探讨(清洁)可再生能源、收入、贸易开放、技术创新和不可再生能源消费如何影响欧盟国家的能源强度。设计/方法/方法采用分位数回归、增广平均组和因果关系技术进行分析。使用了1990年至2019年期间26个欧盟国家的面板数据。实证结果表明,各变量之间存在长期均衡关系。然而,分析表明,清洁能源和收入降低了能源强度,而贸易、技术创新和不可再生能源消费增加了能源强度。一项相互作用项分析表明,可再生能源和贸易相互作用,进一步降低了收入对能源强度的负面影响。因果关系结果表明,能源强度与清洁能源、收入、贸易自由化之间存在反馈关系,收入与贸易自由化之间存在交互作用。能源强度与技术创新、不可再生能源消费、清洁能源与收入之间存在单向因果关系。实际意义研究结果表明,如果更多的资源致力于鼓励清洁/可再生能源的生产和消费,欧盟国家将会获益。推进支持可再生能源和促进绿色增长的政策将有助于降低该地区的能源强度。应加强促进降低能源消耗的贸易政策。原创性/价值评估可再生能源对能源强度的影响。研究了可再生能源和贸易开放对欧盟国家收入-能源强度关系的调节作用。此外,本研究使用分位数估计技术来评估解释变量对能源强度的非线性影响。
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来源期刊
CiteScore
6.80
自引率
22.60%
发文量
63
期刊介绍: The International Journal of Energy Sector Management aims to facilitate dissemination of research on issues relating to supply management (covering the entire supply chain of resource finding, extraction, production, treatment, conversion, transportation, distribution and retail supply), demand and usage management, waste management, customer and other stakeholder management, and solutions thereto. The journal covers all forms of energy (non-renewable and renewable), forms of supply (centralised or decentralised), ownership patterns (public or private, cooperative, joint, or any other), market structures (formal, informal, integrated, disintegrated, national, international, local, etc.) and degress of commoditisation (e.g. internationally traded, regionally traded, non-traded, etc.). The journal aims to cover a wide range of subjects relevant to the management of the energy sector, including but not limited to: Management of scarce resources (economic, financial, human and natural), projects, activities and concerns (e.g. regulatory, social and environmental aspects), technologies and knowledge Business strategy, policy and planning as well as decision support systems for energy sector management Business organisation, structure and environment, and changes thereto Globalisation and multi-cultural management Management of innovation, change and transition.
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