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Global energy transitions and political systems

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  • Lee, Jungwoo
  • Yang, Jae-Suk

Abstract

Transitioning from one form of energy to another has led to social change in areas such as production methods, quality of life, and labor productivity. In addition, there is a relationship between this social change and the emergence of different types of political systems. Surprisingly, there are not many studies on the relationship between energy transitions and changes in political systems. The purpose of this paper is to demonstrate that the transition from one form of energy to another has historically determined the type of political system, and that this causal relationship has evolved through the ages. A three-stage approach was used in this study to examine this relationship in the past and present, and to predict coming changes in the future. The main finding is that from the foraging period to the oil age, energy has been a factor in determining political systems. However, with the expansion of energy trade between nations and the emergence of new technology options, the situation has been reversed: political systems have now become a determinant of energy transitions. Also, even democratic countries have been unwilling to transition to new forms of energy, preferring instead to maintain fossil fuel-based energy systems.

Suggested Citation

  • Lee, Jungwoo & Yang, Jae-Suk, 2019. "Global energy transitions and political systems," Renewable and Sustainable Energy Reviews, Elsevier, vol. 115(C).
  • Handle: RePEc:eee:rensus:v:115:y:2019:i:c:s1364032119305787
    DOI: 10.1016/j.rser.2019.109370
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    as
    1. Burke, Paul J., 2010. "Income, resources, and electricity mix," Energy Economics, Elsevier, vol. 32(3), pages 616-626, May.
    2. Edward Glaeser & Giacomo Ponzetto & Andrei Shleifer, 2007. "Why does democracy need education?," Journal of Economic Growth, Springer, vol. 12(2), pages 77-99, June.
    3. Taylor, Margaret, 2008. "Beyond technology-push and demand-pull: Lessons from California's solar policy," Energy Economics, Elsevier, vol. 30(6), pages 2829-2854, November.
    4. Laleman, Ruben & Albrecht, Johan, 2014. "Comparing push and pull measures for PV and wind in Europe," Renewable Energy, Elsevier, vol. 61(C), pages 33-37.
    5. Ron Adner & Rahul Kapoor, 2016. "Innovation ecosystems and the pace of substitution: Re-examining technology S-curves," Strategic Management Journal, Wiley Blackwell, vol. 37(4), pages 625-648, April.
    6. Kevin K. Tsui, 2011. "More Oil, Less Democracy: Evidence from Worldwide Crude Oil Discoveries," Economic Journal, Royal Economic Society, vol. 121(551), pages 89-115, March.
    7. Schaffer, Lena Maria & Bernauer, Thomas, 2014. "Explaining government choices for promoting renewable energy," Energy Policy, Elsevier, vol. 68(C), pages 15-27.
    8. Oren Levin-Waldman, 2003. "The Minimum Wage and the Cause of Democracy," Review of Social Economy, Taylor & Francis Journals, vol. 61(4), pages 487-510.
    9. Barker, Graeme, 2009. "The Agricultural Revolution in Prehistory: Why did Foragers become Farmers?," OUP Catalogue, Oxford University Press, number 9780199559954.
    10. Robert H. Chenhall & Frank Moers, 2007. "The Issue of Endogeneity within Theory-Based, Quantitative Management Accounting Research," European Accounting Review, Taylor & Francis Journals, vol. 16(1), pages 173-196.
    11. Pfeiffer, Birte & Mulder, Peter, 2013. "Explaining the diffusion of renewable energy technology in developing countries," Energy Economics, Elsevier, vol. 40(C), pages 285-296.
    12. Ek, Kristina & Söderholm, Patrik, 2010. "Technology learning in the presence of public R&D: The case of European wind power," Ecological Economics, Elsevier, vol. 69(12), pages 2356-2362, October.
    13. Wolfgang Lutz & Jesús Crespo Cuaresma & Mohammad Jalal Abbasi‐Shavazi, 2010. "Demography, Education, and Democracy: Global Trends and the Case of Iran," Population and Development Review, The Population Council, Inc., vol. 36(2), pages 253-281, June.
    14. David Moher & Alessandro Liberati & Jennifer Tetzlaff & Douglas G Altman & The PRISMA Group, 2009. "Preferred Reporting Items for Systematic Reviews and Meta-Analyses: The PRISMA Statement," PLOS Medicine, Public Library of Science, vol. 6(7), pages 1-6, July.
    15. Leonard Wantchekon, 2002. "Why do Resource Abundant Countries Have Authoritarian Governments?," Journal of African Development, African Finance and Economic Association (AFEA), vol. 5(2), pages 145-176.
    16. Grubler, Arnulf, 2012. "Energy transitions research: Insights and cautionary tales," Energy Policy, Elsevier, vol. 50(C), pages 8-16.
    17. Freeman, Chris & Louca, Francisco, 2002. "As Time Goes By: From the Industrial Revolutions to the Information Revolution," OUP Catalogue, Oxford University Press, number 9780199251056.
    18. Carl-Friedrich Schleussner & Joeri Rogelj & Michiel Schaeffer & Tabea Lissner & Rachel Licker & Erich M. Fischer & Reto Knutti & Anders Levermann & Katja Frieler & William Hare, 2016. "Science and policy characteristics of the Paris Agreement temperature goal," Nature Climate Change, Nature, vol. 6(9), pages 827-835, September.
    19. Toth, Ferenc L. & Rogner, Hans-Holger, 2006. "Oil and nuclear power: Past, present, and future," Energy Economics, Elsevier, vol. 28(1), pages 1-25, January.
    20. Albrecht, Johan & Laleman, Ruben & Vulsteke, Elien, 2015. "Balancing demand-pull and supply-push measures to support renewable electricity in Europe," Renewable and Sustainable Energy Reviews, Elsevier, vol. 49(C), pages 267-277.
    21. Klaassen, Ger & Miketa, Asami & Larsen, Katarina & Sundqvist, Thomas, 2005. "The impact of R&D on innovation for wind energy in Denmark, Germany and the United Kingdom," Ecological Economics, Elsevier, vol. 54(2-3), pages 227-240, August.
    22. Nemet, Gregory F., 2009. "Demand-pull, technology-push, and government-led incentives for non-incremental technical change," Research Policy, Elsevier, vol. 38(5), pages 700-709, June.
    23. Aflaki, Sam & Masini , Andrea, 2014. "Does Economic Growth Matter? Technology-Push, Demand-Pull and Endogenous Drivers of Innovation in the Renewable Energy Industry," HEC Research Papers Series 1070, HEC Paris.
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