Regional and seasonal partitioning of water and temperature controls on global land carbon uptake variability.
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Where this comes from
- Record sourced from PubMed, PMID 35710906.
- Also identified by DOI 10.1038/s41467-022-31175-w and PMC identifier 9203577.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
Global fluctuations in annual land carbon uptake (NEE<sub>IAV</sub>) depend on water and temperature variability, yet debate remains about local and seasonal controls of the global dependences. Here, we quantify regional and seasonal contributions to the correlations of globally-averaged NEE<sub>IAV</sub> against terrestrial water storage (TWS) and temperature, and respective uncertainties, using three approaches: atmospheric inversions, process-based vegetation models, and data-driven models. The three approaches agree that the tropics contribute over 63% of the global correlations, but differ on the dominant driver of the global NEE<sub>IAV</sub>, because they disagree on seasonal temperature effects in the Northern Hemisphere (NH, >25°N). In the NH, inversions and process-based models show inter-seasonal compensation of temperature effects, inducing a global TWS dominance supported by observations. Data-driven models show weaker seasonal compensation, thereby estimating a global temperature dominance. We provide a roadmap to fully understand drivers of global NEE<sub>IAV</sub> and discuss their implications for future carbon-climate feedbacks.
Medical subject headings
- Carbon
- Water