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When does a carbon tax on fossil fuels stimulate biofuels?

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  • Timilsina, Govinda R.
  • Csordás, Stefan
  • Mevel, Simon

Abstract

A carbon tax is an efficient economic instrument to reduce emissions of carbon dioxide released from fossil fuel burning. If designed properly, it could also help significantly to promote renewable energy. Using a multi-sector, multi-country computable general equilibrium model this study investigates under what circumstances a carbon tax would help stimulate penetration of biofuels into the energy supply mix for road transportation in various countries and regions around the world. This study shows that a carbon tax cum biofuel subsidy policy, where a carbon tax is introduced to fossil fuels and part of the tax revenue is used to finance the biofuel subsidy, would significantly help stimulate market penetration of biofuels. On the other hand, a carbon tax alone policy, where the entire tax revenue is recycled to households through a lump-sum transfer, does not help stimulate biofuels significantly even at higher tax rates. Although the carbon tax cum subsidy policy would cause higher loss in economic output at the global level as compared to the carbon tax alone policy, the incremental loss is relatively small. The key policy insight drawn from the study is that if a carbon tax were to be implemented in an economy for the purpose of climate change mitigation, recycling part of its revenue to finance biofuel subsidies would significantly help stimulate biofuels.

Suggested Citation

  • Timilsina, Govinda R. & Csordás, Stefan & Mevel, Simon, 2011. "When does a carbon tax on fossil fuels stimulate biofuels?," Ecological Economics, Elsevier, vol. 70(12), pages 2400-2415.
  • Handle: RePEc:eee:ecolec:v:70:y:2011:i:12:p:2400-2415
    DOI: 10.1016/j.ecolecon.2011.07.022
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    1. Ian W.H. Parry & Roberton C. Williams III & Lawrence H. Goulder, 2002. "When Can Carbon Abatement Policies Increase Welfare? The Fundamental Role of Distorted Factor Markets," Chapters, in: Lawrence H. Goulder (ed.), Environmental Policy Making in Economies with Prior Tax Distortions, chapter 25, pages 471-503, Edward Elgar Publishing.
    2. Schneider, Uwe A. & McCarl, Bruce A., 2005. "Implications of a Carbon-Based Energy Tax for U.S. Agriculture," Agricultural and Resource Economics Review, Cambridge University Press, vol. 34(2), pages 265-279, October.
    3. Terry Barker & S. Serban Scrieciu & Tim Foxon, 2008. "Achieving the G8 50% target: modelling induced and accelerated technological change using the macro-econometric model E3MG," Climate Policy, Taylor & Francis Journals, vol. 8(sup1), pages 30-45, December.
    4. Lee, Huey-Lin & Hertel, Thomas & Rose, Steven & Avetisyan, Misak, 2008. "An Integrated Global Land Use Data Base for CGE Analysis of Climate Policy Options," GTAP Working Papers 2603, Center for Global Trade Analysis, Department of Agricultural Economics, Purdue University.
    5. Govinda R. Timilsina & John C. Beghin & Dominique van der Mensbrugghe & Simon Mevel, 2012. "The impacts of biofuels targets on land‐use change and food supply: A global CGE assessment," Agricultural Economics, International Association of Agricultural Economists, vol. 43(3), pages 315-332, May.
    6. Lee, Huey-Lin & Hertel, Thomas & Rose, Steven & Avetisyan, Misak, 2008. "An Integrated Global Land Use Data Base for CGE Analysis of Climate Policy Options," GTAP Working Papers 2603, Center for Global Trade Analysis, Department of Agricultural Economics, Purdue University.
    7. Y. Surry, 1993. "The Constant Difference Of Elasticities Function With Applications To The Ec Animal Feed Sector," Journal of Agricultural Economics, Wiley Blackwell, vol. 44(1), pages 110-125, January.
    8. Lawrence H. Goulder & Ian W.H. Parry & Roberton C. Williams III & Dallas Burtraw, 2002. "The Cost-Effectiveness of Alternative Instruments for Environmental Protection in a Second-Best Setting," Chapters, in: Lawrence H. Goulder (ed.), Environmental Policy Making in Economies with Prior Tax Distortions, chapter 27, pages 523-554, Edward Elgar Publishing.
    9. Birur, Dileep & Hertel, Thomas & Tyner, Wally, 2008. "Impact of Biofuel Production on World Agricultural Markets: A Computable General Equilibrium Analysis," GTAP Working Papers 2413, Center for Global Trade Analysis, Department of Agricultural Economics, Purdue University.
    10. Searchinger, Timothy & Heimlich, Ralph & Houghton, R. A. & Dong, Fengxia & Elobeid, Amani & Fabiosa, Jacinto F. & Tokgoz, Simla & Hayes, Dermot J. & Yu, Hun-Hsiang, 2008. "Use of U.S. Croplands for Biofuels Increases Greenhouse Gases Through Emissions from Land-Use Change," Staff General Research Papers Archive 12881, Iowa State University, Department of Economics.
    11. Timilsina, Govinda R. & Shrestha, Ashish, 2010. "Biofuels : markets, targets and impacts," Policy Research Working Paper Series 5364, The World Bank.
    12. Uwe Schneider & Bruce McCarl, 2003. "Economic Potential of Biomass Based Fuels for Greenhouse Gas Emission Mitigation," Environmental & Resource Economics, Springer;European Association of Environmental and Resource Economists, vol. 24(4), pages 291-312, April.
    13. Weber, Michael & Barth, Volker & Hasselmann, Klaus, 2005. "A multi-actor dynamic integrated assessment model (MADIAM) of induced technological change and sustainable economic growth," Ecological Economics, Elsevier, vol. 54(2-3), pages 306-327, August.
    14. Edenhofer, Ottmar & Bauer, Nico & Kriegler, Elmar, 2005. "The impact of technological change on climate protection and welfare: Insights from the model MIND," Ecological Economics, Elsevier, vol. 54(2-3), pages 277-292, August.
    15. Thomas W. Hertel & Wallace E. Tyner & Dileep K. Birur, 2010. "The Global Impacts of Biofuel Mandates," The Energy Journal, International Association for Energy Economics, vol. 0(Number 1), pages 75-100.
    16. Huang, Hsin & van Tongeren, Frank & Dewbre, Joe Dewbre, Joe & van Meijl, Hans, 2004. "A New Representation of Agricultural Production Technology in GTAP," Conference papers 330233, Purdue University, Center for Global Trade Analysis, Global Trade Analysis Project.
    17. Martin Banse & Hans van Meijl & Andrzej Tabeau & Geert Woltjer, 2008. "Will EU biofuel policies affect global agricultural markets?," European Review of Agricultural Economics, Oxford University Press and the European Agricultural and Applied Economics Publications Foundation, vol. 35(2), pages 117-141, June.
    18. Robert K. Kaufmann, 2004. "The Mechanisms for Autonomous Energy Efficiency Increases: A Cointegration Analysis of the US Energy/GDP Ratio," The Energy Journal, International Association for Energy Economics, vol. 0(Number 1), pages 63-86.
    19. Yves Surry, 1993. "The constant difference of elasticities function with applications to the EC animal feed sector," Post-Print hal-01600456, HAL.
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