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Taxing Electricity Sector Carbon Emissions at Social Cost

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  • Paul, Anthony

    (Resources for the Future)

  • Beasley, Blair
  • Palmer, Karen

    (Resources for the Future)

Abstract

Concerns about budget deficits, tax reform, and climate change are fueling discussions about taxing carbon emissions to generate revenue and reduce greenhouse gas emissions. Imposing a carbon tax on electricity production based on the social cost of carbon (SCC) could generate between $21 and $82 billion in revenues in 2020 and would have important effects on electricity markets. The sources of emissions reductions in the sector depend on the level of the tax. A carbon tax based on lower SCC estimates reduces emissions by reducing demand and through the substitution of gas for coal, whereas taxes based on higher SCC estimates induce switching to wind and nuclear generation. The slow rate of growth of the SCC estimates means that any SCC-based carbon tax trajectory provides weaker long-run incentives for expanded renewable and nuclear generation than a cap-and-trade program that achieves an equivalent level of cumulative carbon dioxide emissions reductions. Taxing carbon at the SCC is welfare enhancing, but the SCC may not be the optimal tax rate. Classification-JEL: Q58, H23, H77

Suggested Citation

  • Paul, Anthony & Beasley, Blair & Palmer, Karen, 2013. "Taxing Electricity Sector Carbon Emissions at Social Cost," RFF Working Paper Series dp-13-23-rev, Resources for the Future.
  • Handle: RePEc:rff:dpaper:dp-13-23-rev
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    File URL: http://www.rff.org/RFF/documents/RFF-DP-13-23-REV.pdf
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    References listed on IDEAS

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    Cited by:

    1. Bahinipati, Chandra Sekhar & Sirohi, Rahul A & Rao, Sagarika S, 2022. "Technological Innovations, Behavioural Interventions, and Household Energy Conservation: Policy Insights and Lessons," Ecology, Economy and Society - the INSEE Journal, Indian Society of Ecological Economics (INSEE), vol. 5(01), January.
    2. Gordon, Hal & Burtraw, Dallas & Williams, Roberton, 2015. "A Microsimulation Model of the Distributional Impacts of Climate Policies," RFF Working Paper Series dp-14-40, Resources for the Future.
    3. Canning, Patrick & Rehkamp, Sarah & Waters, Arnold & Etemadnia, Hamideh, 2017. "The Role of Fossil Fuels in the U.S. Food System and the American Diet," Economic Research Report 262187, United States Department of Agriculture, Economic Research Service.
    4. David C. Warren & Zachary A. Wendling & Jacob Bower-Bir & Henry Fields & Kenneth R. Richards & Sanya Carley & Barry M. Rubin, 2015. "Estimating state and sub-state economic effects of a carbon dioxide tax policy: An application of a new multi-region energy-economy econometric model," Regional Science Policy & Practice, Wiley Blackwell, vol. 7(3), pages 119-139, August.
    5. Nick Macaluso & Sugandha Tuladhar & Jared Woollacott & James R. Mcfarland & Jared Creason & Jefferson Cole, 2018. "The Impact Of Carbon Taxation And Revenue Recycling On U.S. Industries," Climate Change Economics (CCE), World Scientific Publishing Co. Pte. Ltd., vol. 9(01), pages 1-41, February.
    6. Dallas Burtraw & Matt Woerman & Alan Krupnick, 2016. "Flexibility and Stringency in Greenhouse Gas Regulations," Environmental & Resource Economics, Springer;European Association of Environmental and Resource Economists, vol. 63(2), pages 225-248, February.

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    More about this item

    Keywords

    carbon tax; cap and trade; social cost of carbon; electricity; energy; climate;
    All these keywords.

    JEL classification:

    • Q58 - Agricultural and Natural Resource Economics; Environmental and Ecological Economics - - Environmental Economics - - - Environmental Economics: Government Policy
    • H23 - Public Economics - - Taxation, Subsidies, and Revenue - - - Externalities; Redistributive Effects; Environmental Taxes and Subsidies
    • H77 - Public Economics - - State and Local Government; Intergovernmental Relations - - - Intergovernmental Relations; Federalism

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