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Energy efficiency, rebound effects and the environmental Kuznets Curve

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  • Turner, Karen
  • Hanley, Nick

Abstract

Technological change is one factor used to justify the existence of an Environmental Kuznets Curve, and technological improvements have been argued to be a key factor in mitigating the impacts of economic growth on environmental quality. In this paper we use a CGE model of the Scottish economy to consider the factors influencing the impacts of one form of technological change-improvements in energy efficiency-on absolute levels of CO2 emissions, on the carbon intensity of the economy (CO2 emissions relative to real GDP), and the per capita EKC relationship. These factors include the elasticity of substitution between energy and non-energy inputs, responses in the labour market and the structure of the economy. Our results demonstrate the key role played by the general equilibrium price elasticity of demand for energy, and the relative influence of different factors on this parameter.

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Bibliographic Info

Article provided by Elsevier in its journal Energy Economics.

Volume (Year): 33 (2011)
Issue (Month): 5 (September)
Pages: 709-720

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Handle: RePEc:eee:eneeco:v:33:y:2011:i:5:p:709-720

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Web page: http://www.elsevier.com/locate/eneco

Related research

Keywords: Computable general equilibrium models Technical progress Energy efficiency Rebound effects Environmental Kuznets Curve;

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Citations

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Cited by:
  1. Fujii, Hidemichi & Managi, Shunsuke, 2013. "Which industry is greener? An empirical study of nine industries in OECD countries," Energy Policy, Elsevier, vol. 57(C), pages 381-388.
  2. Rabindra Nepal & Tooraj Jamasb, 2013. "Energy Efficiency in Market versus Planned Economies: Evidence from Transition Countries," Energy Economics and Management Group Working Papers 8-2013, School of Economics, University of Queensland, Australia.
  3. Can Tansel TUGCU, 2013. "Disaggregate Energy Consumption and Total Factor Productivity: A Cointegration and Causality Analysis for the Turkish Economy," International Journal of Energy Economics and Policy, Econjournals, vol. 3(3), pages 307-314.
  4. Turner, Karen, 2012. "'Rebound' effects from increased energy efficiency: a time to pause and reflect," Stirling Economics Discussion Papers 2012-15, University of Stirling, Division of Economics.
  5. Mahmood, Arshad & Marpaung, Charles O.P., 2014. "Carbon pricing and energy efficiency improvement -- why to miss the interaction for developing economies? An illustrative CGE based application to the Pakistan case," Energy Policy, Elsevier, vol. 67(C), pages 87-103.
  6. Fujii, Hidemichi & Managi, Shunsuke, 2012. "Which Industry is Greener? Empirical Study for Nine Industries in OECD Countries," MPRA Paper 44229, University Library of Munich, Germany.
  7. Tang, Xu & Snowden, Simon & Höök, Mikael, 2013. "Analysis of energy embodied in the international trade of UK," Energy Policy, Elsevier, vol. 57(C), pages 418-428.
  8. Wang, H. & Zhou, P. & Zhou, D.Q., 2012. "An empirical study of direct rebound effect for passenger transport in urban China," Energy Economics, Elsevier, vol. 34(2), pages 452-460.
  9. Kaika, Dimitra & Zervas, Efthimios, 2013. "The Environmental Kuznets Curve (EKC) theory—Part A: Concept, causes and the CO2 emissions case," Energy Policy, Elsevier, vol. 62(C), pages 1392-1402.
  10. Zanin, Luca & Marra, Giampiero, 2012. "Assessing the functional relationship between CO2 emissions and economic development using an additive mixed model approach," Economic Modelling, Elsevier, vol. 29(4), pages 1328-1337.

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