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Regional estimates of the transient climate response to cumulative CO2 emissions

Author

Listed:
  • Martin Leduc

    (Concordia University, Planning and Environment
    Ouranos, 550 Sherbrooke West, West Tower, 19th floor)

  • H. Damon Matthews

    (Concordia University, Planning and Environment)

  • Ramón de Elía

    (Ouranos, 550 Sherbrooke West, West Tower, 19th floor)

Abstract

An analysis of the regional climate response to cumulative CO2 emissions establishes a clear quantitative link between the total amount of CO2 emitted and the magnitude of local climate warming.

Suggested Citation

  • Martin Leduc & H. Damon Matthews & Ramón de Elía, 2016. "Regional estimates of the transient climate response to cumulative CO2 emissions," Nature Climate Change, Nature, vol. 6(5), pages 474-478, May.
  • Handle: RePEc:nat:natcli:v:6:y:2016:i:5:d:10.1038_nclimate2913
    DOI: 10.1038/nclimate2913
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    Citations

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    Cited by:

    1. William Brock & Anastasios Xepapadeas, 2019. "Regional Climate Change Policy Under Positive Feedbacks and Strategic Interactions," Environmental & Resource Economics, Springer;European Association of Environmental and Resource Economists, vol. 72(1), pages 51-75, January.
    2. Yongyang Cai & William Brock & Anastasios Xepapadeas, 2023. "Climate Change Impact on Economic Growth: Regional Climate Policy under Cooperation and Noncooperation," Journal of the Association of Environmental and Resource Economists, University of Chicago Press, vol. 10(3), pages 569-605.
    3. William Brock & Anastasios Xepapadeas, 2022. "Emerging infectious diseases and the economy: climate change, natural world preservation, and containment policies," DEOS Working Papers 2208, Athens University of Economics and Business.
    4. Liang Chen & Juan J. Dolado & Jesús Gonzalo & Andrey Ramos, 2023. "Heterogeneous predictive association of CO2 with global warming," Economica, London School of Economics and Political Science, vol. 90(360), pages 1397-1421, October.
    5. Hongbo Duan & Gupeng Zhang & Shouyang Wang & Ying Fan, 2018. "Balancing China’s climate damage risk against emission control costs," Mitigation and Adaptation Strategies for Global Change, Springer, vol. 23(3), pages 387-403, March.
    6. Anderson, Evan W. & Brock, William & Sanstad, Alan H., 2016. "Robust Consumption and Energy Decisions," 2017 Allied Social Sciences Association (ASSA) Annual Meeting, January 6-8, 2017, Chicago, Illinois 250117, Agricultural and Applied Economics Association.
    7. Carlini, Federico & Christensen, Bent Jesper & Datta Gupta, Nabanita & Santucci de Magistris, Paolo, 2023. "Climate, wind energy, and CO2 emissions from energy production in Denmark," Energy Economics, Elsevier, vol. 125(C).
    8. Christos Karydas & Anastasios Xepapadeas, 2019. "Climate change risks: pricing and portfolio allocation," CER-ETH Economics working paper series 19/327, CER-ETH - Center of Economic Research (CER-ETH) at ETH Zurich.
    9. Burak Alparslan Eroğlu & J. Isaac Miller & Taner Yiğit, 2022. "Time-varying cointegration and the Kalman filter," Econometric Reviews, Taylor & Francis Journals, vol. 41(1), pages 1-21, January.
    10. William Brock & Anastasios Xepapadeas, 2022. "Climate Change, Natural World Preservation and the Emergence and Containment of Infectious Diseases," DEOS Working Papers 2232, Athens University of Economics and Business.
    11. William Brock & Anastasios Xepapadeas, 2019. "Regional Climate Policy under Deep Uncertainty: Robust Control, Hot Spots and Learning," DEOS Working Papers 1903, Athens University of Economics and Business.
    12. Brock, William & Xepapadeas, Anastasios, 2021. "Regional climate policy under deep uncertainty: robust control and distributional concerns," Environment and Development Economics, Cambridge University Press, vol. 26(3), pages 211-238, June.
    13. Brock, W. & Xepapadeas, A., 2017. "Climate change policy under polar amplification," European Economic Review, Elsevier, vol. 99(C), pages 93-112.
    14. William Brock & Anastasios Xepapadeas, 2020. "Climate change policy under spatial heat transport and polar amplification," Chapters, in: Graciela Chichilnisky & Armon Rezai (ed.), Handbook on the Economics of Climate Change, chapter 7, pages 127-166, Edward Elgar Publishing.
    15. William Brock & Anastasios Xepapadeas, 2020. "Spatial Environmental and Resource Economics," DEOS Working Papers 2002, Athens University of Economics and Business.
    16. George Economides & Anastasios Xepapadeas, 2018. "Monetary policy under climate change," Working Papers 247, Bank of Greece.
    17. Bent Jesper Christensen & Nabanita Datta Gupta & Paolo Santucci de Magistris, 2021. "Measuring the impact of clean energy production on CO2 abatement in Denmark: Upper bound estimation and forecasting," Journal of the Royal Statistical Society Series A, Royal Statistical Society, vol. 184(1), pages 118-149, January.
    18. William Brock & Anastasios Xepapadeas, 2023. "Natural world preservation and infectious diseases: Land-use, climate change and innovation," DEOS Working Papers 2319, Athens University of Economics and Business.
    19. Federico Divina & Miguel García Torres & Francisco A. Goméz Vela & José Luis Vázquez Noguera, 2019. "A Comparative Study of Time Series Forecasting Methods for Short Term Electric Energy Consumption Prediction in Smart Buildings," Energies, MDPI, vol. 12(10), pages 1-23, May.
    20. Longhui Li & Yue Zhang & Tianjun Zhou & Kaicun Wang & Can Wang & Tao Wang & Linwang Yuan & Kangxin An & Chenghu Zhou & Guonian Lü, 2022. "Mitigation of China’s carbon neutrality to global warming," Nature Communications, Nature, vol. 13(1), pages 1-7, December.
    21. William Brock & Anastasios Xepapadeas, 2019. "Regional Climate Policy under Deep Uncertainty," DEOS Working Papers 1901, Athens University of Economics and Business.
    22. Karydas, Christos & Xepapadeas, Anastasios, 2022. "Climate change financial risks: Implications for asset pricing and interest rates," Journal of Financial Stability, Elsevier, vol. 63(C).
    23. Brogan M. Stewart & Sarah E. Turner & H. Damon Matthews, 2020. "Climate change impacts on potential future ranges of non-human primate species," Climatic Change, Springer, vol. 162(4), pages 2301-2318, October.

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