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Geological Net Zero and the need for disaggregated accounting for carbon sinks

  • Myles R Allen*
  • , David J Frame
  • , Pierre Friedlingstein
  • , Nathan P Gillett
  • , Giacomo Grassi
  • , Jonathan M Gregory
  • , William Hare
  • , Jo House
  • , Chris Huntingford
  • , Stuart Jenkins
  • , Chris D Jones
  • , Reto Knutti
  • , Jason A Lowe
  • , H Damon Matthews
  • , Malte Meinshausen
  • , Nicolai Meinshausen
  • , Glen P Peters
  • , Gian-Kasper Plattner
  • , Sarah Raper
  • , Joeri Rogelj
  • Peter A Stott, Susan Solomon, Thomas F Stocker, Andrew J Weaver, Kirsten Zickfeld
*Corresponding author for this work

Research output: Contribution to journalReview article (Academic Journal)peer-review

79 Citations (Scopus)

Abstract

Achieving net-zero global emissions of carbon dioxide (CO 2), with declining emissions of other greenhouse gases, is widely expected to halt global warming. CO 2 emissions will continue to drive warming until fully balanced by active anthropogenic CO 2 removals. For practical reasons, however, many greenhouse gas accounting systems allow some 'passive' CO 2 uptake, such as enhanced vegetation growth owing to CO 2 fertilization, to be included as removals in the definition of net anthropogenic emissions. By including passive CO 2 uptake, nominal net-zero emissions would not halt global warming, undermining the Paris Agreement. Here we discuss measures to address this problem, to ensure residual fossil fuel use does not cause further global warming: land management categories should be disaggregated in emissions reporting and targets to better separate the role of passive CO 2 uptake; where possible, claimed removals should be additional to passive uptake; and targets should acknowledge the need for Geological Net Zero, meaning one tonne of CO 2 permanently restored to the solid Earth for every tonne still generated from fossil sources. We also argue that scientific understanding of Net Zero provides a basis for allocating responsibility for the protection of passive carbon sinks during and after the transition to Geological Net Zero.
Original languageEnglish
Article number29
Pages (from-to)343-350
Number of pages8
JournalNature
Volume638
Issue number8050
Early online date18 Nov 2024
DOIs
Publication statusPublished - 13 Feb 2025

Bibliographical note

Publisher Copyright:
© Springer Nature Limited 2024.

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