Related Experiment Video
Updated: Mar 21, 2026

Measurements of CO2 Fluxes at Non-Ideal Eddy Covariance Sites
Published on: June 24, 2019
Integrated Global Estimation of Terrestrial Carbon Efflux
Yves Uwiragiye1,2, Jing Wang3, Yuanyuan Huang4
1School of Resources and Environmental Engineering, Anhui University, Hefei, China.
None:
Carbon efflux (Cefflux) makes up 20% of total greenhouse gases emitted globally. Accurate global Cefflux is critical for projecting and responding to future global warming. However, current Cefflux estimates remain incomplete due to the omission of Cefflux released from the dissolution of inorganic carbon in calcareous soils (Cefflux-calcareous) and dissolution of lime in acidic soils (Cefflux-acidic). Here, we present a global terrestrial Cefflux that incorporates Cefflux-calcareous, Cefflux-acidic, and soil respiration. Using 7562 field measurements from 2481 publications and machine learning, this study revealed that Cefflux-acidic and Cefflux-calcareous contributed 0.29% and 0.09%, respectively, to an overall Cefflux of 96.52 Pg C year-1 (95% confidence interval, 91.2-101.9 Pg C year-1). Previous estimates of Cefflux from soil respiration underestimated 0.4% of Cefflux. Structural equation modelling (SEM) revealed that Cefflux was directly driven by heterotrophic respiration, autotrophic respiration, dissolution of soil inorganic carbon and liming, while being regulated indirectly by land productivity (gross primary productivity, roots and litter), soil properties (soil acidity and soil inorganic carbon content), and anthropogenic activities (nitrogen fertiliser application). Soil acidification must be viewed as a dual challenge impacting both crop yields and global warming threats. Therefore, the study emphasises the need to incorporate neutralising soil acidity into soil carbon dynamics models, which was previously overlooked.
Related Concept Videos
The Carbon Cycle
Estimation of the Physical Quantities
Global Climate Change
Calculation of Electric Flux
Carbon-dioxide Fixation

