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Discounting for Climate Change

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  • Yohe, Gary W.
  • Tol, Richard S. J.
  • Anthoff, David

Abstract

It is well-known that the discount rate is crucially important for estimating the social cost of carbon, a standard indicator for the seriousness of climate change and desirable level of climate policy. The Ramsey equation for the discount rate has three components: the pure rate of time preference, a measure of relative risk aversion, and the rate of growth of per capita consumption. Much of the attention on the appropriate discount rate for long-term environmental problems has focussed on the role played by the pure rate of time preference in this formulation. We show that the other two elements are numerically just as important in considerations of anthropogenic climate change. The elasticity of the marginal utility with respect to consumption is particularly important because it assumes three roles: consumption smoothing over time, risk aversion, and inequity aversion. Given the large uncertainties about climate change and widely asymmetric impacts, the assumed rates of risk and inequity aversion can be expected to play significant roles. The consumption growth rate plays multiple roles, as well. It is one of the determinants of the discount rate, and one of the drivers of emissions and hence climate change. We also find that the impacts of climate change grow slower than income, so the effective discount rate is higher than the real discount rate. Moreover, the differential growth rate between rich and poor countries determines the time evolution of the size of the equity weights. As there are a number of crucial but uncertain parameters, it is no surprise that one can obtain almost any estimate of the social cost of carbon. We even show that, for a low pure rate of time preference, the estimate of the social cost of carbon is indeed arbitrary - as one can exclude neither large positive nor large negative impacts in the very long run. However, if we probabilistically constrain the parameters to values that are implied by observed behaviour, we find that the expected social cost of carbon, corrected for uncertainty and inequity, is approximate 60 US dollar per metric tonne of carbon (or roughly $17 per tonne of CO2) under the assumption that catastrophic risk is zero.

Suggested Citation

  • Yohe, Gary W. & Tol, Richard S. J. & Anthoff, David, 2009. "Discounting for Climate Change," Economics - The Open-Access, Open-Assessment E-Journal (2007-2020), Kiel Institute for the World Economy (IfW Kiel), vol. 3, pages 1-22.
  • Handle: RePEc:zbw:ifweej:7609
    DOI: 10.5018/economics-ejournal.ja.2009-24
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    1. How to discount time for climate change policies
      by Economic Logician in Economic Logic on 2009-07-30 19:55:00

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    2. Steve Newbold & Charles Griffiths & Christopher C. Moore & Ann Wolverton & Elizabeth Kopits, 2010. "The "Social Cost of Carbon" Made Simple," NCEE Working Paper Series 201007, National Center for Environmental Economics, U.S. Environmental Protection Agency, revised Aug 2010.
    3. Philippe Aghion & Antoine Dechezleprêtre & David Hémous & Ralf Martin & John Van Reenen, 2016. "Carbon Taxes, Path Dependency, and Directed Technical Change: Evidence from the Auto Industry," Journal of Political Economy, University of Chicago Press, vol. 124(1), pages 1-51.
    4. Asjad Naqvi, 2015. "Modeling Growth, Distribution, and the Environment in a Stock-Flow Consistent Framework. WWWforEurope Policy Paper No. 18," WIFO Studies, WIFO, number 57883.
    5. Tol, Richard S.J., 2013. "Targets for global climate policy: An overview," Journal of Economic Dynamics and Control, Elsevier, vol. 37(5), pages 911-928.
    6. Sferra, Fabio & Tavoni, Massimo, 2013. "Endogenous Participation in a Partial Climate Agreement with Open Entry: A Numerical Assessment," Climate Change and Sustainable Development 156486, Fondazione Eni Enrico Mattei (FEEM).
    7. Naqvi, Syed Ali Asjad, 2015. "Modeling Growth, Distribution, and the Environment in a Stock-Flow Consistent Framework," Ecological Economic Papers 2, WU Vienna University of Economics and Business.
    8. Kaplow Louis & Moyer Elisabeth & Weisbach David A, 2010. "The Social Evaluation of Intergenerational Policies and Its Application to Integrated Assessment Models of Climate Change," The B.E. Journal of Economic Analysis & Policy, De Gruyter, vol. 10(2), pages 1-34, November.
    9. Johan Eyckmans & Sam Fankhauser & Snorre Kverndokk, 2013. "Equity, Development Aid and Climate Finance," GRI Working Papers 123, Grantham Research Institute on Climate Change and the Environment.
    10. Malafry, Laurence & Brinca, Pedro, 2022. "Climate policy in an unequal world: Assessing the cost of risk on vulnerable households," Ecological Economics, Elsevier, vol. 194(C).
    11. Richard S. J. Tol, 2010. "International Inequity Aversion And The Social Cost Of Carbon," Climate Change Economics (CCE), World Scientific Publishing Co. Pte. Ltd., vol. 1(01), pages 21-32.
    12. David Anthoff & Johannes Emmerling, 2019. "Inequality and the Social Cost of Carbon," Journal of the Association of Environmental and Resource Economists, University of Chicago Press, vol. 6(2), pages 243-273.
    13. Mark Budolfson & Francis Dennig & Marc Fleurbaey & Asher Siebert & Robert H. Socolow, 2017. "The comparative importance for optimal climate policy of discounting, inequalities and catastrophes," Climatic Change, Springer, vol. 145(3), pages 481-494, December.
    14. Zhang, Hong & Jin, Gui & Zhang, Zhengyu, 2021. "Coupling system of carbon emission and social economy: A review," Technological Forecasting and Social Change, Elsevier, vol. 167(C).
    15. Richard S J Tol, 2018. "The Economic Impacts of Climate Change," Review of Environmental Economics and Policy, Association of Environmental and Resource Economists, vol. 12(1), pages 4-25.
    16. Narita, Daiju & Tol, Richard S. J. & Anthoff, David, 2009. "International Climate Policy and Regional Welfare Weights," Papers WP332, Economic and Social Research Institute (ESRI).
    17. Yongyang Cai & Kenneth L. Judd & Thomas S. Lontzek, 2013. "The Social Cost of Stochastic and Irreversible Climate Change," NBER Working Papers 18704, National Bureau of Economic Research, Inc.
    18. Richard S.J. Tol, 2021. "Estimates of the social cost of carbon have not changed over time," Working Paper Series 0821, Department of Economics, University of Sussex Business School.
    19. Bartolini, Stefano & Sarracino, Francesco, 2018. "Do People Care About Future Generations? Derived Preferences from Happiness Data," Ecological Economics, Elsevier, vol. 143(C), pages 253-275.
    20. Simon Dietz & David Maddison, 2009. "New Frontiers in the Economics of Climate Change," Environmental & Resource Economics, Springer;European Association of Environmental and Resource Economists, vol. 43(3), pages 295-306, July.
    21. Vongdalone Vongsikeo & William S. Breffle & Jenny L. Apriesnig & Brian D. Barkdoll, 2020. "The Economic Value of Carbon Sequestration through Tree Planting in Laos," Asian Development Policy Review, Asian Economic and Social Society, vol. 8(2), pages 102-111, June.
    22. Andy Reisinger, 2011. "Interdisciplinarity: are we there yet?," Climatic Change, Springer, vol. 108(1), pages 23-30, September.
    23. John Whitehead & Ben Poulter & Christopher Dumas & Okmyung Bin, 2009. "Measuring the economic effects of sea level rise on shore fishing," Mitigation and Adaptation Strategies for Global Change, Springer, vol. 14(8), pages 777-792, December.
    24. Stephan Lewandowsky & James Risbey & Michael Smithson & Ben Newell & John Hunter, 2014. "Scientific uncertainty and climate change: Part I. Uncertainty and unabated emissions," Climatic Change, Springer, vol. 124(1), pages 21-37, May.
    25. Richard S. J. Tol, 2021. "Estimates of the social cost of carbon have increased over time," Papers 2105.03656, arXiv.org, revised Aug 2022.

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    More about this item

    Keywords

    Social cost of carbon; climate change; pure time preference; risk aversion; inequity aversion; income elasticity; time horizon; uncertainty;
    All these keywords.

    JEL classification:

    • Q54 - Agricultural and Natural Resource Economics; Environmental and Ecological Economics - - Environmental Economics - - - Climate; Natural Disasters and their Management; Global Warming

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