Global soil methane uptake inferred from global field measurements
<p>Soil methane (CH<sub>4</sub>) uptake is an important sink in the global methane budget. However, both the magnitude and the dynamics of global soil CH<sub>4</sub> uptake remain highly uncertain. Here, by compiling an extensive data set of 6899 site-months of soil CH<sub>4</sub> fluxes observed at 682 sites, we use a machine-learning algorithm (Random Forest) to provide a data-driven estimate of global soil CH<sub>4</sub> uptake each month from 1981 to 2018. Varying the combination of predictors, we construct 9 different simulations for three landcover types (Forests, Grasslands, Croplands). The dataset uploaded is the mean of 9 simulations after calculating the area-weighted average of CH<sub>4 </sub>flux of three landcover types.</p>
ShareScore
32/100
Overall dataset sharing score
Score breakdown
These five areas show where the dataset supports — or may limit — practical reuse.
- Stewardship
- 8
- Harmonization
- 4
- Access
- 16
- Reuse readiness
- 0
- Engagement
- 4