Old carbon routed from land to the atmosphere by global river systems.

Dean, Joshua F; Coxon, Gemma; Zheng, Yanchen; Bishop, Jack; Garnett, Mark H; Bastviken, David; Galy, Valier; Spencer, Robert G M et al. · Nature · 2025

basic_science · Level V

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Abstract

Rivers and streams are an important pathway in the global carbon cycle, releasing carbon dioxide (CO<sub>2</sub>) and methane (CH<sub>4</sub>) from their water surfaces to the atmosphere<sup>1,2</sup>. Until now, CO<sub>2</sub> and CH<sub>4</sub> emitted from rivers were thought to be predominantly derived from recent (sub-decadal) biomass production and, thus, part of ecosystem respiration<sup>3-6</sup>. Here we combine new and published measurements to create a global database of the radiocarbon content of river dissolved inorganic carbon (DIC), CO<sub>2</sub> and CH<sub>4</sub>. Isotopic mass balance of our database suggests that 59 ± 17% of global river CO<sub>2</sub> emissions are derived from old carbon (millennial or older), the release of which is linked to river catchment lithology and biome. This previously unrecognized release of old, pre-industrial-aged carbon to the atmosphere from long-term soil, sediment and geologic carbon stores through lateral hydrological routing equates to 1.2 ± 0.3 Pg C year<sup>-1</sup>, similar in magnitude to terrestrial net ecosystem exchange. A consequence of this flux is a greater than expected net loss of carbon from aged organic matter stores on land. This requires a reassessment of the fate of anthropogenic carbon in terrestrial systems and in global carbon cycle budgets and models.

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