Species-specific relationships between net primary productivity and forest age for subtropical China

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Abstract

The relationship between net primary productivity (NPP) and forest age varies among forest species, yet there were no available NPP-Age relationships established for various forest species in subtropical China for use in forest carbon modeling. This study explored the NPP-Age relationships for seven forest species in subtropical China using field survey data from the Strategic Priority Project of Carbon Budget (SPPCB), National Forest Inventory (NFI) Type I (NFI-I), and Type II (NFI-II) data. Forest species included Pinus massoniana (P. massoniana), Cunninghamia lanceolata (C. lanceolata), Eucalyptus robusta (Eucalyptus), Other Coniferous Forests (OCF), Softwood Broadleaf (SWB), Hardwood Broadleaf excluding Eucalyptus (HWB), and Mixed Forests (MF). Based on these three datasets, we were able to derive subtropical forest species-specific NPP-Age relationships using the Semi-Empirical Model (SEM). Implementation of these species-specific relationships in the process-based Integrated Terrestrial Ecosystem Carbon Cycle (InTEC) model markedly improved above-ground biomass (AGB) simulations for subtropical forests relative to simulations driven by the previously published China-wide NPP-Age relationships. The greatest improvements were observed for P. massoniana, OCF, Eucalyptus, and SWB, where root-mean-square errors (RMSE) declined by 19.1 %-53.3 %. These species-specific NPP-Age relationships therefore provide a robust, spatially explicit basis for forest carbon modeling and management in subtropical China.

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Li, P., Shang, R., Chen, J. M., Zhang, H., Zhang, X., Zhao, G., … Zeng, H. (2025). Species-specific relationships between net primary productivity and forest age for subtropical China. Biogeosciences, 22(20), 5705–5721. https://doi.org/10.5194/bg-22-5705-2025

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