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Synthesis of evidence yields high social cost of carbon due to structural model variation and uncertainties

Author

Listed:
  • Frances C. Moore

    (a Department of Environmental Science and Policy , University of California , Davis , CA 95616)

  • Moritz A. Drupp

    (d Department of Economics , University of Gothenburg , Göteborg 405 30 , Sweden)

  • James Rising

    (e School of Marine Science and Policy , University of Delaware , Newark , DE 19716)

  • Simon Dietz

    (g London School of Economics and Political Science , London WC2A 2AE , United Kingdom)

  • Ivan Rudik

    (h Dyson School of Applied Economics and Management , Cornell University , Ithaca , NY 14850)

  • Gernot Wagner

    (i Columbia Business School , New York , NY 10027)

Abstract

Estimating the cost to society from a ton of CO 2 —termed the social cost of carbon (SCC)—requires connecting a model of the climate system with a representation of the economic and social effects of changes in climate, and the aggregation of diverse, uncertain impacts across both time and space. A growing literature has examined the effect of fundamental structural elements of the models supporting SCC calculations. This work has accumulated in a piecemeal fashion, leaving their relative importance unclear. Here, we perform a comprehensive synthesis of the evidence on the SCC, combining 1,823 estimates of the SCC from 147 studies with a survey of authors of these studies. The distribution of published 2020 SCC values is wide and substantially right-skewed, showing evidence of a heavy right tail (truncated mean of $132). ANOVA reveals important roles for the inclusion of persistent damages, the representation of the Earth system, and distributional weighting. However, our survey reveals that experts believe the literature underestimates the SCC due to an undersampling of model structures, incomplete characterization of damages, and high discount rates. To address this imbalance, we train a random forest model on variation in the literature and use it to generate a synthetic SCC distribution that more closely matches expert assessments of appropriate model structure and discounting. This synthetic distribution has a mean of $283 per ton CO 2 for a 2020 pulse year (5% to 95% range: $32 to $874), higher than most official government estimates, including a 2023 update from the U.S. EPA.

Suggested Citation

  • Frances C. Moore & Moritz A. Drupp & James Rising & Simon Dietz & Ivan Rudik & Gernot Wagner, 2024. "Synthesis of evidence yields high social cost of carbon due to structural model variation and uncertainties," Proceedings of the National Academy of Sciences, Proceedings of the National Academy of Sciences, vol. 121(52), pages 2410733121-, December.
  • Handle: RePEc:nas:journl:v:121:y:2024:p:e2410733121
    DOI: 10.1073/pnas.2410733121
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    Cited by:

    1. Aggarwal, Raavi & Missbach, Leonard & Somanathan, E. & Steckel, Jan Christoph & Sterner, Thomas, 2025. "Negative health effects of carbon prices can outweigh the climate benefits in developing countries," EfD Discussion Paper 25-9, Environment for Development, University of Gothenburg.
    2. Frikk Nesje & Robert C. Schmidt & Moritz A. Drupp, 2025. "Designing Carbon Pricing Policies Across the Globe," Environmental & Resource Economics, Springer;European Association of Environmental and Resource Economists, vol. 88(12), pages 3585-3616, December.
    3. Kopits, Elizabeth & Kraynak, Daniel & Parthum, Bryan & Rennels, Lisa & Smith, David & Spink, Elizabeth & Griffiths, Charles & Perla, Joseph & Burns, Nshan & Howerton, Michael, 2025. "Economic Damages from Climate Change to U.S. Populations: Integrating Evidence from Recent Studies," National Center for Environmental Economics-NCEE Working Papers 368258, United States Environmental Protection Agency (EPA).
    4. Joxe Mari Barrutiabengoa & Agustín García & Rodrigo Falbo & Juan Rubio, 2025. "Global | Descifrando el impacto de los precios del carbono en la macroeconomía [Global | Unraveling the impact of a carbon price shock on macroeconomic variables]," Working Papers 25/04, BBVA Bank, Economic Research Department.
    5. Adrien Bilal & James H. Stock, 2025. "A Guide to Macroeconomics and Climate Change," NBER Working Papers 33567, National Bureau of Economic Research, Inc.
    6. Moritz A. Drupp & Zachary M. Turk & Ben Groom & Jonas Heckenhahn, 2025. "Global Evidence on the Income Elasticity of Willingness to Pay, Relative Price Changes and Public Natural Capital Values," Environmental & Resource Economics, Springer;European Association of Environmental and Resource Economists, vol. 88(12), pages 3765-3804, December.
    7. Jake T. W. Williams & Mbathio Dieng & Katy Bell & Scott McAlister & Rachael L. Morton, 2026. "Healthcare Costs and Carbon Emissions of Stage III Melanoma Surveillance Imaging," Applied Health Economics and Health Policy, Springer, vol. 24(1), pages 231-241, January.
    8. Adler, Nicole & Andreana, Gianmarco & De Jong, Gerben, 2026. "Estimating the societal value of airport slots," Transportation Research Part B: Methodological, Elsevier, vol. 206(C).
    9. Åsa Löfgren & Lassi Ahlvik & Inge den Bijgaart & Jessica Coria & Jūratė Jaraitė & Filip Johnsson & Johan Rootzén, 2024. "Green industrial policy for climate action in the basic materials industry," Climatic Change, Springer, vol. 177(9), pages 1-12, September.
    10. repec:rim:rimwps:25-01 is not listed on IDEAS
    11. Elizabeth Kopits & Daniel Kraynak & Bryan Parthum & Lisa Rennels & David Smith & Elizabeth Spink & Joseph Perla & Nshan Burns, 2025. "Economic Impacts of Climate Change in the United States: Integrating and Harmonizing Evidence from Recent Studies," Papers 2509.00212, arXiv.org.
    12. Thaller, Lotta & Harding, Anthony & Saldivia Gonzatti, Ignacio & Schwingshackl, Clemens & O'Sullivan, Michael & Pongratz, Julia & Rickels, Wilfried, 2026. "Country social cost of carbon estimates and their application to assess the natural land sink," Kiel Working Papers 2316, Kiel Institute for the World Economy.
    13. Tol, Richard S.J., 2025. "Meta-emulation: An application to the social cost of carbon," Energy Economics, Elsevier, vol. 152(C).
    14. repec:ces:ceswps:_11668 is not listed on IDEAS
    15. Harding, Anthony & Moreno-Cruz, Juan & Quaas, Martin & Rickels, Wilfried & Smulders, Sjak, 2025. "Distribution of climate damages in convergence-consistent growth projections," Energy Economics, Elsevier, vol. 149(C).
    16. Peter H. Howard & Thomas Sterner, 2025. "Methodology Matters: A Careful Meta-Analysis of Climate Damages," Environmental & Resource Economics, Springer;European Association of Environmental and Resource Economists, vol. 88(12), pages 3289-3327, December.
    17. Chauvet, Marcelle & Morana, Claudio & Silva, Murilo, 2026. "Extreme weather in Europe: Determinants and economic impact," European Economic Review, Elsevier, vol. 186(C).
    18. Edoardo Santoni & Margherita Scarlato & Nicolò Barbieri & Caterina Conigliani, 2025. "Heat and work-related injuries: How temperature measurement affects outcomes," SEEDS Working Papers 0225, SEEDS, Sustainability Environmental Economics and Dynamics Studies, revised Mar 2025.

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    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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