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Data from: Phosphorus alleviation of nitrogen-suppressed methane sink in global grasslands

<p>Grassland ecosystems account for more than 10% of the global CH<sub>4</sub> sink in soils. A 4-year field experiment found that addition of P alone did not affect CH<sub>4</sub> uptake and experimental addition of N alone significantly suppressed CH<sub>4</sub> uptake, while concurrent N and P additions suppressed CH<sub>4</sub> uptake to a lesser degree. A meta-analysis including 382 data points in global grasslands corroborated these findings. Global extrapolation with an empirical modeling approach estimated that contemporary N addition suppresses CH<sub>4</sub> sink in global grassland by 11.4% and concurrent N and P deposition alleviates this suppression to 5.8%. The P alleviation of N-suppressed CH<sub>4</sub> sink is primarily attributed to substrate competition, defined as the competition between ammonium and CH<sub>4</sub> for the methane monooxygenase enzyme. The N and P impacts on CH<sub>4</sub> uptake indicate that projected increases in N and P depositions might substantially affect CH<sub>4</sub> uptake and alter the global CH<sub>4</sub> cycle.</p>

ShareScore

32/100

Overall dataset sharing score

Score breakdown

These five areas show where the dataset supports — or may limit — practical reuse.

Stewardship
4
Harmonization
12
Access
12
Reuse readiness
0
Engagement
4

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