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Fossil CO2 emissions in the post-COVID-19 era

Author

Listed:
  • Corinne Le Quéré

    (University of East Anglia
    University of East Anglia)

  • Glen P. Peters

    (CICERO Center for International Climate Research)

  • Pierre Friedlingstein

    (University of Exeter
    LMD/IPSL, École Normale Supérieure/PSL Université, CNRS, École Polytechnique, Sorbonne Université)

  • Robbie M. Andrew

    (CICERO Center for International Climate Research)

  • Josep G. Canadell

    (CSIRO Oceans and Atmosphere)

  • Steven J. Davis

    (University of California, Irvine)

  • Robert B. Jackson

    (Stanford University
    Stanford University
    Stanford University)

  • Matthew W. Jones

    (University of East Anglia
    University of East Anglia)

Abstract

Five years after the adoption of the Paris Climate Agreement, growth in global CO2 emissions has begun to falter. The pervasive disruptions from the COVID-19 pandemic have radically altered the trajectory of global CO2 emissions. Contradictory effects of the post-COVID-19 investments in fossil fuel-based infrastructure and the recent strengthening of climate targets must be addressed with new policy choices to sustain a decline in global emissions in the post-COVID-19 era.

Suggested Citation

  • Corinne Le Quéré & Glen P. Peters & Pierre Friedlingstein & Robbie M. Andrew & Josep G. Canadell & Steven J. Davis & Robert B. Jackson & Matthew W. Jones, 2021. "Fossil CO2 emissions in the post-COVID-19 era," Nature Climate Change, Nature, vol. 11(3), pages 197-199, March.
  • Handle: RePEc:nat:natcli:v:11:y:2021:i:3:d:10.1038_s41558-021-01001-0
    DOI: 10.1038/s41558-021-01001-0
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    Cited by:

    1. López, Luis-Antonio & Arce, Guadalupe & Cadarso, María-Ángeles & Ortiz, Mateo & Zafrilla, Jorge, 2023. "The global dissemination to multinationals of the carbon emissions ruling on Shell," Structural Change and Economic Dynamics, Elsevier, vol. 65(C), pages 406-416.
    2. N. E. Terent’ev, 2021. "Climate Change as a Factor in the Development of Companies: Corporate Strategies and Guidelines for State Industrial Policy," Studies on Russian Economic Development, Springer, vol. 32(5), pages 485-491, September.
    3. Cassetti, Gabriele & Boitier, Baptiste & Elia, Alessia & Le Mouël, Pierre & Gargiulo, Maurizio & Zagamé, Paul & Nikas, Alexandros & Koasidis, Konstantinos & Doukas, Haris & Chiodi, Alessandro, 2023. "The interplay among COVID-19 economic recovery, behavioural changes, and the European Green Deal: An energy-economic modelling perspective," Energy, Elsevier, vol. 263(PC).
    4. Peng, Wei & Xin, Baogui & Xie, Lei, 2023. "Optimal strategies for production plan and carbon emission reduction in a hydrogen supply chain under cap-and-trade policy," Renewable Energy, Elsevier, vol. 215(C).
    5. Pedro R. R. Rochedo & Panagiotis Fragkos & Rafael Garaffa & Lilia Caiado Couto & Luiz Bernardo Baptista & Bruno S. L. Cunha & Roberto Schaeffer & Alexandre Szklo, 2021. "Is Green Recovery Enough? Analysing the Impacts of Post-COVID-19 Economic Packages," Energies, MDPI, vol. 14(17), pages 1-19, September.
    6. Zaheer Allam & Ayyoob Sharifi & Damien Giurco & Samantha A. Sharpe, 2021. "On the Theoretical Conceptualisations, Knowledge Structures and Trends of Green New Deals," Sustainability, MDPI, vol. 13(22), pages 1-25, November.
    7. Behnam Zakeri & Katsia Paulavets & Leonardo Barreto-Gomez & Luis Gomez Echeverri & Shonali Pachauri & Benigna Boza-Kiss & Caroline Zimm & Joeri Rogelj & Felix Creutzig & Diana Ürge-Vorsatz & David G. , 2022. "Pandemic, War, and Global Energy Transitions," Energies, MDPI, vol. 15(17), pages 1-23, August.
    8. Muhammad Jawad Sajid & Ernesto D. R. Santibanez Gonzalez, 2021. "The Impact of Direct and Indirect COVID-19 Related Demand Shocks on Sectoral CO 2 Emissions: Evidence from Major Asia Pacific Countries," Sustainability, MDPI, vol. 13(16), pages 1-19, August.
    9. Mišík, Matúš & Nosko, Andrej, 2023. "Post-pandemic lessons for EU energy and climate policy after the Russian invasion of Ukraine: Introduction to a special issue on EU green recovery in the post-Covid-19 period," Energy Policy, Elsevier, vol. 177(C).
    10. Fakudze, Sandile & Zhang, Yu & Wei, Yingyuan & Li, Yueh-Heng & Chen, Jianqiang & Wang, Jiaxin & Han, Jiangang, 2023. "Taguchi-optimized oxy-combustion of hydrochar/coal blends for CO2 capture and maximized combustion performance," Energy, Elsevier, vol. 267(C).
    11. He, J.Y. & Chan, P.W. & Li, Q.S. & Lee, C.W., 2022. "Characterizing coastal wind energy resources based on sodar and microwave radiometer observations," Renewable and Sustainable Energy Reviews, Elsevier, vol. 163(C).

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