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Ancillary Benefits of Reduced Air Pollution in the United States from Moderate Greenhouse Gas Mitigation Policies in the Electricity Sector

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  • Burtraw, Dallas
  • Krupnick, Alan J.
  • Palmer, Karen L.
  • Paul, Anthony
  • Toman, Michael
  • Bloyd, Cary

Abstract

This paper considers how moderate actions to slow atmospheric accumulation of greenhouse gases from fossil fuel use also could reduce conventional air pollutants in the United States. The benefits that result would be "ancillary" to greenhouse gas abatement. Moreover, the benefits would tend to accrue locally and in the near term, while benefits from reduced climate change mostly accrue globally and over a time frame of several decades or longer. The previous literature suggests that changes in nitrogen oxides (NOx) would be the most important consequence of moderate carbon policies. We calculate these changes in a detailed electricity model linked to an integrated assessment framework to value changes in human health. A tax of $25 per metric ton of carbon emissions would yield NOx related health benefits of about $8 per metric ton of carbon reduced in the year 2010 (1997 dollars). Additional savings accrue from reduced investment in NOx and SO2 abatement in order to comply with emission caps. These savings sum to $4-$7 per ton of carbon reduced. Total ancillary benefits of a $25 carbon tax are estimated to be $12-$14, which appear to justify the costs of a $25 tax, although marginal benefits are less than marginal costs. At a tax of $75 per ton carbon, greater health benefits and abatement cost savings are achieved but the value of ancillary benefits per ton of carbon reductions remains roughly constant at about $12.

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  • Burtraw, Dallas & Krupnick, Alan J. & Palmer, Karen L. & Paul, Anthony & Toman, Michael & Bloyd, Cary, 2001. "Ancillary Benefits of Reduced Air Pollution in the United States from Moderate Greenhouse Gas Mitigation Policies in the Electricity Sector," Discussion Papers 10664, Resources for the Future.
  • Handle: RePEc:ags:rffdps:10664
    DOI: 10.22004/ag.econ.10664
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    1. Krupnick, Alan J. & Burtraw, Dallas, 1996. "The social costs of electricity: Do the numbers add up?," Resource and Energy Economics, Elsevier, vol. 18(4), pages 423-466, December.
    2. Janusz R. Mrozek & Laura O. Taylor, 2002. "What determines the value of life? a meta-analysis," Journal of Policy Analysis and Management, John Wiley & Sons, Ltd., vol. 21(2), pages 253-270.
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    5. Dallas Burtraw & Alan Krupnick & Erin Mansur & David Austin & Deirdre Farrell, 1998. "Costs And Benefits Of Reducing Air Pollutants Related To Acid Rain," Contemporary Economic Policy, Western Economic Association International, vol. 16(4), pages 379-400, October.
    6. Krupnick, Alan & Alberini, Anna & Cropper, Maureen & Simon, Nathalie & O'Brien, Bernie & Goeree, Ron & Heintzelman, Martin, 2002. "Age, Health and the Willingness to Pay for Mortality Risk Reductions: A Contingent Valuation Survey of Ontario Residents," Journal of Risk and Uncertainty, Springer, vol. 24(2), pages 161-186, March.
    7. Ekins, Paul, 1996. "How large a carbon tax is justified by the secondary benefits of CO2 abatement?," Resource and Energy Economics, Elsevier, vol. 18(2), pages 161-187, June.
    8. Lawrence Goulder, 1995. "Environmental taxation and the double dividend: A reader's guide," International Tax and Public Finance, Springer;International Institute of Public Finance, vol. 2(2), pages 157-183, August.
    9. Burtraw, Dallas & Krupnick, Alan & Austin, David & Farrell, Deirdre & Mansur, Erin, 1997. "The Costs and Benefits of Reducing Acid Rain," RFF Working Paper Series dp-97-31-rev, Resources for the Future.
    10. Boyd Roy & Krutilla Kerry & Viscusi W. Kip, 1995. "Energy Taxation as a Policy Instrument to Reduce CO2 Emissions: A Net Benefit Analysis," Journal of Environmental Economics and Management, Elsevier, vol. 29(1), pages 1-24, July.
    11. Anna Alberini & Alan Krupnick & Maureen Cropper & Nathalie Simon & Joseph Cook, 2002. "The Willingness to Pay for Mortality Risk Reductions: A Comparison of the United States and Canada," CESifo Working Paper Series 668, CESifo.
    12. Banzhaf, H. Spencer & Desvousges, William H. & Johnson, F. Reed, 1996. "Assessing the externalities of electricity generation in the Midwest," Resource and Energy Economics, Elsevier, vol. 18(4), pages 395-421, December.
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    14. Burtraw, Dallas & Palmer, Karen & Bharvirkar, Ranjit & Paul, Anthony, 2001. "The Effect of Allowance Allocation on the Cost of Carbon Emission Trading," RFF Working Paper Series dp-01-30-, Resources for the Future.
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    Cited by:

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    2. Rubbelke, Dirk T.G., 2006. "Climate policy in developing countries and conditional transfers," Energy Policy, Elsevier, vol. 34(13), pages 1600-1610, September.
    3. Pizer, William A. & Burtraw, Dallas & Harrington, Winston & Newell, Richard G. & Sanchirico, James N., 2005. "Modeling Economywide versus Sectoral Climate Policies Using Combined Aggregate-Sectoral Models," Discussion Papers 10502, Resources for the Future.
    4. Chuku Chuku, 2010. "Pursuing an integrated development and climate policy framework in Africa: options for mainstreaming," Mitigation and Adaptation Strategies for Global Change, Springer, vol. 15(1), pages 41-52, January.
    5. Aurélie Slechten & Vincenzo Verardi, 2016. "Measuring the Impact of Multiple Air Pollution Agreements on Global CO2 Emissions," Land Economics, University of Wisconsin Press, vol. 92(3), pages 534-554.
    6. Désirée Vandenberghe & Johan Albrecht, 2018. "Tackling the chronic disease burden: are there co-benefits from climate policy measures?," The European Journal of Health Economics, Springer;Deutsche Gesellschaft für Gesundheitsökonomie (DGGÖ), vol. 19(9), pages 1259-1283, December.
    7. Erin T. Mansur, 2007. "Do Oligopolists Pollute Less? Evidence From A Restructured Electricity Market," Journal of Industrial Economics, Wiley Blackwell, vol. 55(4), pages 661-689, December.

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    More about this item

    Keywords

    Environmental Economics and Policy;

    JEL classification:

    • H23 - Public Economics - - Taxation, Subsidies, and Revenue - - - Externalities; Redistributive Effects; Environmental Taxes and Subsidies
    • I18 - Health, Education, and Welfare - - Health - - - Government Policy; Regulation; Public Health
    • Q48 - Agricultural and Natural Resource Economics; Environmental and Ecological Economics - - Energy - - - Government Policy

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