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Modeling Economy-wide vs Sectoral Climate Policies Using Combined Aggregate-Sectoral Models

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  • William Pizer
  • Dallas Burtraw
  • Winston Harrington
  • Richard Newell
  • James Sanchirico

Abstract

Economic analyses of climate change policies frequently focus on reductions of energy-related carbon dioxide emissions via market-based, economy-wide policies. The current course of environment and energy policy debate in the United States, however, suggests an alternative outcome: sectorbased and/or inefficiently designed policies. This paper uses a collection of specialized, sector-based models in conjunction with a computable general equilibrium model of the economy to examine and compare these policies at an aggregate level. We examine the relative cost of different policies designed to achieve the same quantity of emission reductions. We find that excluding a limited number of sectors from an economy-wide policy does not significantly raise costs. Focusing policy solely on the electricity and transportation sectors doubles costs, however, and using non-market policies can raise cost by a factor of ten. These results are driven in part by, and are sensitive to, our modeling of pre-existing tax distortions.

Suggested Citation

  • William Pizer & Dallas Burtraw & Winston Harrington & Richard Newell & James Sanchirico, 2006. "Modeling Economy-wide vs Sectoral Climate Policies Using Combined Aggregate-Sectoral Models," The Energy Journal, International Association for Energy Economics, vol. 0(Number 3), pages 135-168.
  • Handle: RePEc:aen:journl:2006v27-03-a08
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    1. Ballard, Charles L. & Fullerton, Don & Shoven, John B. & Whalley, John, 2009. "A General Equilibrium Model for Tax Policy Evaluation," National Bureau of Economic Research Books, University of Chicago Press, number 9780226036335, August.
    2. Charles L. Ballard & Don Fullerton & John B. Shoven & John Whalley, 1985. "Introduction to "A General Equilibrium Model for Tax Policy Evaluation"," NBER Chapters, in: A General Equilibrium Model for Tax Policy Evaluation, pages 1-5, National Bureau of Economic Research, Inc.
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    Cited by:

    1. Nabernegg, Stefan & Bednar-Friedl, Birgit & Muñoz, Pablo & Titz, Michaela & Vogel, Johanna, 2019. "National Policies for Global Emission Reductions: Effectiveness of Carbon Emission Reductions in International Supply Chains," Ecological Economics, Elsevier, vol. 158(C), pages 146-157.
    2. Barker, Terry & Ekins, Paul & Foxon, Tim, 2007. "Macroeconomic effects of efficiency policies for energy-intensive industries: The case of the UK Climate Change Agreements, 2000-2010," Energy Economics, Elsevier, vol. 29(4), pages 760-778, July.
    3. Xavier Labandeira, Pedro Linares and Miguel Rodriguez, 2009. "An Integrated Approach to Simulate the impacts of Carbon Emissions Trading Schemes," The Energy Journal, International Association for Energy Economics, vol. 0(Special I).
    4. Kiuila, O. & Rutherford, T.F., 2013. "The cost of reducing CO2 emissions: Integrating abatement technologies into economic modeling," Ecological Economics, Elsevier, vol. 87(C), pages 62-71.
    5. Palmer, Karen & Burtraw, Dallas & Paul, Anthony, 2009. "Allowance Allocation in a CO2 Emissions Cap-and-Trade Program for the Electricity Sector in California," RFF Working Paper Series dp-09-41, Resources for the Future.
    6. Carraro, Carlo & Aldy, Joseph & Pizer, William A. & Akimoto, Keigo & Tavoni, Massimo & Aleluia Reis, Lara, 2018. "Learning from Nationally Determined Contributions," CEPR Discussion Papers 12757, C.E.P.R. Discussion Papers.
    7. Baccianti, Claudio, 2021. "Essays in economic growth and climate policy," Other publications TiSEM e5415454-40c2-4154-991e-6, Tilburg University, School of Economics and Management.
    8. Burtraw, Dallas, 2007. "State Efforts to Cap the Commons: Regulating Sources or Consumers?," RFF Working Paper Series dp-07-49, Resources for the Future.
    9. Kailin Kroetz & James N. Sanchirico & Daniel K. Lew, 2015. "Efficiency Costs of Social Objectives in Tradable Permit Programs," Journal of the Association of Environmental and Resource Economists, University of Chicago Press, vol. 2(3), pages 339-366.
    10. Gilbert E. Metcalf, 2007. "Federal Tax Policy Towards Energy," NBER Chapters, in: Tax Policy and the Economy, Volume 21, pages 145-184, National Bureau of Economic Research, Inc.
    11. Joseph E. Aldy & William A. Pizer, 2009. "Issues in Designing U.S. Climate Change Policy," The Energy Journal, International Association for Energy Economics, vol. 0(Number 3), pages 179-210.
    12. Banzhaf, H. Spencer & Chupp, B. Andrew, 2012. "Fiscal federalism and interjurisdictional externalities: New results and an application to US Air pollution," Journal of Public Economics, Elsevier, vol. 96(5), pages 449-464.
    13. Verbruggen, Aviel & Fischedick, Manfred & Moomaw, William & Weir, Tony & Nadaï, Alain & Nilsson, Lars J. & Nyboer, John & Sathaye, Jayant, 2010. "Renewable energy costs, potentials, barriers: Conceptual issues," Energy Policy, Elsevier, vol. 38(2), pages 850-861, February.

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