Global carbon sequestration through continental chemical weathering in a climatic change context

Publication date

2021-12

Authors

Lechuga-Crespo, Juan Luis
Sauvage, Sabine
Ruiz-Romera, Estilita
van Vliet, Michelle T.H.ORCID 0000-0002-2597-8422ISNI 0000000419499980
Probst, Jean Luc
Fabre, Clément
Sánchez-Pérez, José Miguel

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by

Abstract

This study simulates carbon dioxide (CO2) sequestration in 300 major world river basins (about 70% of global surface area) through carbonates dissolution and silicate hydrolysis. For each river basin, the daily timescale impacts under the RCP 2.6 and RCP 8.5 climate scenarios were assessed relative to a historical baseline (1969–1999) using a cascade of models accounting for the hydrological evolution under climate change scenarios. Here we show that the global temporal evolution of the CO2 uptake presents a general increase in the annual amount of CO2 consumed from 0.247 ± 0.045 Pg C year−1 to 0.261 and 0.273 ± 0.054 Pg C year−1, respectively for RCP 2.6 and RCP 8.5. Despite showing a general increase in the global daily carbon sequestration, both climate scenarios show a decrease between June and August. Such projected changes have been mapped and evaluated against changes in hydrology, identifying hot spots and moments for the annual and seasonal periods.

Keywords

General, SDG 13 - Climate Action

Citation

Lechuga-Crespo, J L, Sauvage, S, Ruiz-Romera, E, van Vliet, M T H, Probst, J L, Fabre, C & Sánchez-Pérez, J M 2021, 'Global carbon sequestration through continental chemical weathering in a climatic change context', Scientific Reports, vol. 11, no. 1, 23588, pp. 1-8. https://doi.org/10.1038/s41598-021-02891-y