Analyzing the mechanism between nuclear energy consumption and carbon emissions: Fresh insights from novel bootstrap rolling-window approach

Author:

Irfan Muhammad123ORCID,Sunday Adebayo Tomiwa4,Cai Jinyang15ORCID,Dördüncü Hazar6,Shahzad Farrukh7

Affiliation:

1. School of Management and Economics, Beijing Institute of Technology, Beijing, China

2. Center for Energy and Environmental Policy Research, Beijing Institute of Technology, Beijing, China

3. Department of Business Administration, ILMA University, Karachi, Pakistan

4. Department of Economics, Faculty of Economics and Administrative Sciences, Cyprus International University, Haspolat, Turkey

5. Yangtze Delta Region Academy of Beijing Institute of Technology, Jiaxing, China

6. Faculty of Economics, Administrative and Social Sciences, Department of International Trade and Logistics, Nisantasi University, Istanbul, Turkey

7. School of Economics and Management, Guangdong University of Petrochemical Technology, Maonan, Maoming, China

Abstract

This research utilizes a bootstrap rolling-window (BRW) causality test to explore the causal interrelationship between nuclear energy consumption (NUC) and carbon dioxide emissions (CO2) in 6 developed countries from 1980 to 2020. When there are structural shifts in the full-sample time series, empirical research exploring causality between two-time series generates erroneous conclusions. On the other hand, the BRW method allows researchers to find potential time-varying causality between time series using sub-sample data. The outcomes of the BRW causality test disclosed the following results: (i) a unidirectional negative causality from NUC to CO2 without feedback was found for Japan; (ii) a negative causality at sup-sample periods from NUC to CO2 surfaced at the sub-sample period while a positive causality surfaced from NUC to CO2 in sub-sample period for the United States of America (USA) and France; (iii) a negative feedback causality between NUC and CO2 was found For Canada; (iv) a positive unidirectional causality surfaced from NUC to CO2 was found for Germany, which implies that consumption of NUC worsens the environment in the sub-sampled period. The results may have policy consequences for the selected developed countries regarding NUC and CO2 nexus.

Publisher

SAGE Publications

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Environmental Engineering

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