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A Stylized Applied Energy-Economy Model for France

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  • Fanny Henriet
  • Nicolas Maggiar
  • Katheline Schubert

Abstract

We build, calibrate and simulate a stylized energy-economy model designed to evaluate the magnitude of carbon tax that would allow the French economy to reduce by a factor of four its CO2 emissions at a forty-year horizon. We estimate the substitution possibilities between fossil energy and other factors for households and firms. We build two versions of the model, the first with exogenous technical progress, and the second with an endogenization of the direction of technical progress. We show that if the energy-saving technical progress rate remains at its recent historical value, the magnitude of the carbon tax is quite unrealistic. When the direction of technical progress responds endogenously to economic incentives, CO2 emissions can be reduced by more than that allowed by the substitution possibilities, but not by a factor of four. To achieve this, an additional instrument is needed, namely a subsidy to fossil energy-saving research. The redirection of technical progress, which is a driver of energy transition, comes at a small cost in terms of the overall growth rate of the economy. Keywords: CGE model, Energy, Environment, Carbon tax

Suggested Citation

  • Fanny Henriet & Nicolas Maggiar & Katheline Schubert, 2014. "A Stylized Applied Energy-Economy Model for France," The Energy Journal, , vol. 35(4), pages 1-38, October.
  • Handle: RePEc:sae:enejou:v:35:y:2014:i:4:p:1-38
    DOI: 10.5547/01956574.35.4.1
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    1. Daron Acemoglu & Philippe Aghion & Leonardo Bursztyn & David Hemous, 2012. "The Environment and Directed Technical Change," American Economic Review, American Economic Association, vol. 102(1), pages 131-166, February.
    2. Patrick Criqui, Peter Russ and Daniel Deybe, 2006. "Impacts of Multi-gas Strategies for Greenhouse Gas Emission Abatement: Insights from a Partial Equilibrium Model," The Energy Journal, International Association for Energy Economics, vol. 0(Special I), pages 251-274.
    3. Olivier Sassi & Renaud Crassous & Jean-Charles Hourcade & Vincent Gitz & Henri Waisman & Celine Guivarch, 2010. "IMACLIM-R: a modelling framework to simulate sustainable development pathways," International Journal of Global Environmental Issues, Inderscience Enterprises Ltd, vol. 10(1/2), pages 5-24.
    4. Masao Ogaki & Carmen M. Reinhart, 1998. "Measuring Intertemporal Substitution: The Role of Durable Goods," Journal of Political Economy, University of Chicago Press, vol. 106(5), pages 1078-1098, October.
    5. Rajeev Dhawan & Karsten Jeske, 2008. "Energy Price Shocks and the Macroeconomy: The Role of Consumer Durables," Journal of Money, Credit and Banking, Blackwell Publishing, vol. 40(7), pages 1357-1377, October.
    6. Antoine Dechezleprêtre & Matthieu Glachant & Ivan Haščič & Nick Johnstone & Yann Ménière, 2011. "Invention and Transfer of Climate Change--Mitigation Technologies: A Global Analysis," Review of Environmental Economics and Policy, Association of Environmental and Resource Economists, vol. 5(1), pages 109-130, Winter.
    7. Patrick Fève & Julien Matheron & Jean-Guillaume Sahuc, 2010. "La TVA sociale : bonne ou mauvaise idée ?," Economie & Prévision, La Documentation Française, vol. 0(2), pages 1-19.
    8. Fernández-Villaverde, Jesús & Krueger, Dirk, 2011. "Consumption And Saving Over The Life Cycle: How Important Are Consumer Durables?," Macroeconomic Dynamics, Cambridge University Press, vol. 15(5), pages 725-770, November.
    9. Smulders, Sjak & de Nooij, Michiel, 2003. "The impact of energy conservation on technology and economic growth," Resource and Energy Economics, Elsevier, vol. 25(1), pages 59-79, February.
    10. Adjemian, Stéphane & Bastani, Houtan & Juillard, Michel & Karamé, Fréderic & Maih, Junior & Mihoubi, Ferhat & Mutschler, Willi & Perendia, George & Pfeifer, Johannes & Ratto, Marco & Villemot, Sébasti, 2011. "Dynare: Reference Manual Version 4," Dynare Working Papers 1, CEPREMAP, revised Mar 2021.
    11. Alain L. Bernard & Marc Vielle, 1998. "La structure du modèle GEMINI-E3," Économie et Prévision, Programme National Persée, vol. 136(5), pages 19-32.
    12. Popp, David, 2004. "ENTICE: endogenous technological change in the DICE model of global warming," Journal of Environmental Economics and Management, Elsevier, vol. 48(1), pages 742-768, July.
    13. Gene M. Grossman & Elhanan Helpman, 1993. "Innovation and Growth in the Global Economy," MIT Press Books, The MIT Press, edition 1, volume 1, number 0262570971, April.
    14. van der Werf, Edwin, 2008. "Production functions for climate policy modeling: An empirical analysis," Energy Economics, Elsevier, vol. 30(6), pages 2964-2979, November.
    15. Yann Ménière & Antoine Dechezleprêtre & Matthieu Glachant & Ivan Hascic & N. Johnstone, 2011. "Invention and transfer of climate change mitigation technologies: a study drawing on patent data," Post-Print hal-00869795, HAL.
    16. Patrick Criqui & Peter Russ & Daniel Deybe, 2006. "Impacts of multi-gas strategies for greenhouse gas emission abatement: insights from a partial equilibrium model," Post-Print halshs-00121488, HAL.
    17. Antoine Dechezleprêtre & Matthieu Glachant & Ivan Haščič & Nick Johnstone & Yann Ménière, 2011. "Invention and Transfer of Climate Change--Mitigation Technologies: A Global Analysis," Review of Environmental Economics and Policy, Association of Environmental and Resource Economists, vol. 5(1), pages 109-130, Winter.
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    Cited by:

    1. Corbier, Darius & Gonand, Frédéric, 2024. "A hybrid electricity-economy model to assess the aggregate impacts of low-carbon transition: An application to France," Ecological Economics, Elsevier, vol. 216(C).
    2. Pascal da Costa, 2014. "Semi-Endogenous Growth and Pollution: No Double Dividend in the Long Term," Working Papers hal-00994904, HAL.
    3. Veronica ACURIO VASCONEZ, 2020. "What if Oil was Less Substitutable?," Working Papers of BETA 2020-08, Bureau d'Economie Théorique et Appliquée, UDS, Strasbourg.
    4. Verónica Acurio Vásconez, 2015. "What if oil is less substitutable? A New-Keynesian Model with Oil, Price and Wage Stickiness including Capital Accumulation," Post-Print halshs-01167027, HAL.
    5. Pascal da Costa & Wenhui Tian, 2015. "A Sectoral Prospective Analysis of CO2 Emissions in China, USA and France, 2010-2050," Working Papers hal-01026302, HAL.
    6. Antoine Devulder & Noëmie Lisack, 2020. "Carbon Tax in a Production Network: Propagation and Sectoral Incidence," Working papers 760, Banque de France.
    7. Fanny Henriet & Nicolas Maggiar & Katheline Schubert, 2016. "La France peut-elle atteindre l’objectif du Facteur 4 ? Une évaluation à l’aide d’un modèle stylisé énergie-économie," Economie & Prévision, La Documentation Française, vol. 0(1), pages 1-21.

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    More about this item

    Keywords

    CGE model; Energy; Environment; Carbon tax;
    All these keywords.

    JEL classification:

    • F0 - International Economics - - General

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