核能利用与减排收益预期:来自部分利用核能国家经济轨迹的经验证据

IF 3.3 3区 工程技术 Q1 NUCLEAR SCIENCE & TECHNOLOGY Progress in Nuclear Energy Pub Date : 2024-11-13 DOI:10.1016/j.pnucene.2024.105526
Şeyma Bozkaya , Stephen Taiwo Onifade , Mahmut Sami Duran
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引用次数: 0

摘要

随着全球对清洁能源的需求日益增长,核能作为一种潜在的非化石能源,其环境友好的特性正在引起全世界的兴趣。因此,我们研究了核能利用是否显著推动了利用核能国家的碳减排。我们使用第二代技术进行了实证分析。分析中还检验了 EKC 理论,以及自然资源和经济增长对样本国家排放的影响。实证分析涵盖了从《世界能源统计评论》(Bp,2021 年)中获得的 2000 年至 2020 年 27 个核能使用国的数据。研究结果表明,核能和自然资源的使用都不能显著减少各国的碳排放量。此外,EKC 关于收入增长超过一定临界值后排放水平会降低的假设在各国都不成立。此外,因果关系分析表明,排放与核能使用之间存在单向因果关系。因此,这些研究结果突出表明,有必要就如何最大限度地减少与核能利用相关的间接碳足迹开展更多研究。
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Nuclear energy utilization and the expectations of emission-reduction gains: Empirical evidence from economic trajectory of selected utilizing states
As the global quest for clean energy grows, the environmentally friendly nature of nuclear energy as a potential non-fossil energy source is generating interest around the world. Therefore, we examine whether nuclear energy utilization has significantly driven carbon emission reduction among the utilizing states. Empirical analyses were conducted using second-generation techniques. The analyses conducted also incorporated testing the EKC theory, as well as examining the effects of natural resources and economic growth on emissions in the sample countries. The empirical analyses cover data from 2000 to 2020 for a total of 27 nuclear energy-using countries as obtained from the Statistical Review of World Energy (Bp, 2021). The findings show that neither the use of nuclear energy nor natural resources significantly reduces carbon emissions across the countries. Additionally, the EKC hypothesis of reduction in emission levels as income expands beyond a certain threshold does not hold for the countries. Moreover, the causality analysis shows that there is a one-way causality from emissions to nuclear energy use. These findings thus highlight the need for more research on how to minimize the indirect carbon footprint that is associated with nuclear energy utilization.
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来源期刊
Progress in Nuclear Energy
Progress in Nuclear Energy 工程技术-核科学技术
CiteScore
5.30
自引率
14.80%
发文量
331
审稿时长
3.5 months
期刊介绍: Progress in Nuclear Energy is an international review journal covering all aspects of nuclear science and engineering. In keeping with the maturity of nuclear power, articles on safety, siting and environmental problems are encouraged, as are those associated with economics and fuel management. However, basic physics and engineering will remain an important aspect of the editorial policy. Articles published are either of a review nature or present new material in more depth. They are aimed at researchers and technically-oriented managers working in the nuclear energy field. Please note the following: 1) PNE seeks high quality research papers which are medium to long in length. Short research papers should be submitted to the journal Annals in Nuclear Energy. 2) PNE reserves the right to reject papers which are based solely on routine application of computer codes used to produce reactor designs or explain existing reactor phenomena. Such papers, although worthy, are best left as laboratory reports whereas Progress in Nuclear Energy seeks papers of originality, which are archival in nature, in the fields of mathematical and experimental nuclear technology, including fission, fusion (blanket physics, radiation damage), safety, materials aspects, economics, etc. 3) Review papers, which may occasionally be invited, are particularly sought by the journal in these fields.
期刊最新文献
Contact phenomena between load-bearing skeletons of bowed fuel assemblies in PWRs with mixed cores Promoting regulatory acceptance of combined ion and neutron irradiation testing of nuclear reactor materials: Modeling and software considerations Application of the Krylov-Schur method in three-dimensional nuclear reactor discrete ordinates criticality calculations Nuclear energy utilization and the expectations of emission-reduction gains: Empirical evidence from economic trajectory of selected utilizing states Coupled neutronics, thermochemistry, corrosion modeling and sensitivity analyses for isotopic evolution in molten salt reactors
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