Moustakis, Yiannis; Wey, Hao-Wei; Nützel, Tobias; Oschlies, Andreas; Pongratz, Julia (2025): No compromise in efficiency from the co-application of a marine and a terrestrial CDR method. Nature Communications, 16: 4709. ISSN 2041-1723
Published Article
s41467-025-59982-x.pdf
Abstract
Modelled pathways consistent with the Paris Agreement goals to mitigate warming typically include the large-scale application of Carbon Dioxide Removal (CDR), which can include both land- and marine-based CDR methods. However, the Earth system responses and feedbacks to scaling up and/or combining different CDR methods remain understudied. Here, these are assessed by employing two Earth System Models, with a multifactorial setup of 42 emission-driven simulations covering the whole spectrum of Afforestation/Reforestation (0-927 Mha) and of Ocean Alkalinity Enhancement (0-18 Pmol) over the 21 st century. We show that global carbon flux responses scale linearly when different CDR methods are scaled up and/or combined, which suggests that the efficiency of CDR is insensitive to both the amount of CDR and the CDR portfolio composition. Therefore, combining CDR methods, which seems beneficial for diversifying risks and remaining below sustainability thresholds, does not compromise the efficiency of individual applications.
| Doc-Type: | Article (LMU) |
|---|---|
| Organisational unit (Faculties): | 20 Geosciences > Department of Geography |
| DFG subject classification of scientific disciplines: | Natural sciences |
| Date Deposited: | 15. Oct 2025 11:30 |
| Last Modified: | 15. Oct 2025 11:30 |
| URI: | https://oa-fund.ub.uni-muenchen.de/id/eprint/2107 |
| DFG: | Funded by the Deutsche Forschungsgemeinschaft (DFG, German Research Foundation) - 491502892 |
