#TerrestrialEcosystemModels
Hanliang Gui et al. evaluated the performance of nine #TerrestrialEcosystemModels in simulating #GrossPrimaryProductivityand its temporal stability (TS) assessed the capability of numerical models to simulate the TS of ecosystem carbon uptake.

#ClimateChange | #CarbonSinks

doi.org/10.1093/jpe/...
July 22, 2026 at 3:47 PM
Existing #TerrestrialEcosystemModels generally overestimate the carbon uptake stability due to insufficient characterization of vegetation phenology and physiological processes.

#GrossPrimaryProductivity | #ClimateChange | #CarbonSinks | #EcosystemStability | #RemoteSensing

doi.org/10.1093/jpe/...
May 17, 2026 at 4:59 PM
【🎉Latest accepted article】
Overestimated Carbon Uptake Stability Due to Inadequate Vegetation Dynamics in Ecosystem Models

#TerrestrialEcosystemModels | #GrossPrimary | #Productivity | #ClimateChange | #CarbonSinks | #EcosystemStability

@mapjournals.bsky.social

doi.org/10.1093/jpe/...
Overestimated Carbon Uptake Stability Due to Inadequate Vegetation Dynamics in Ecosystem Models
Abstract. Ecosystem temporal stability (TS) determines its ability to maintain structure, function, and services under external disturbances, playing a cri
doi.org
December 4, 2025 at 12:32 PM