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Global hourly NEP, NPP, GPP and heterotrophic respiration for 2010-2025 based on LPJ-GUESS (generated in 2026)

Collection
10.18160/7JE9-RP6B (target, metadata)

The product is generated in 2026. LPJ-GUESS (version 4.0, revision 6562) is forced with hourly ERA5 climate datasets to simulate global terrestrial CO2 flux at a resolution of 0.5 degree. LPJ-GUESS is a process-based dynamic global vegetation model, it uses time series data (e.g. climate forcing and atmospheric carbon dioxide concentrations with WMO CO2 X2019 scale) as input to simulate the effects of environmental change on vegetation structure and composition in terms of global plant functional types (PFTs), soil hydrology and biogeochemistry (Smith et al., 2001, https://web.nateko.lu.se/lpj-guess/). This simulation models natural fluxes, such as those from vegetation and soil under climate change, via natural processes such as biomass allocation, growth, reproduction, establishment, mortality, and disturbance. This means it does not include anthropogenic activities, such as forest management or agricultural management. The positive value means CO2 uptake from the atmosphere, and the negative value means CO2 release to the atmosphere.

2026
ICOS ERIC - Carbon Portal
Terrestrial Ecosystems, Land Biogeochemistry, Land Surface, Carbon cycle
Wu, Z., 2026. Global hourly NEP, NPP, GPP and heterotrophic respiration for 2010-2025 based on LPJ-GUESS (generated in 2026). https://doi.org/10.18160/7JE9-RP6B
BibTex
@misc{https://doi.org/10.18160/7je9-rp6b,
  doi = {10.18160/7JE9-RP6B},
  url = {https://meta.icos-cp.eu/collections/f6O_G0nGkC7Adz6uI3j96ibj},
  author = {Wu, Zhendong},
  keywords = {Terrestrial Ecosystems, Land Biogeochemistry, Land Surface, Carbon cycle},
  title = {Global hourly NEP, NPP, GPP and heterotrophic respiration for 2010-2025 based on LPJ-GUESS (generated in 2026)},
  publisher = {ICOS ERIC - Carbon Portal},
  year = {2026},
  copyright = {Creative Commons Attribution 4.0 International}
}
RIS
TY  - GEN
T1  - Global hourly NEP, NPP, GPP and heterotrophic respiration for 2010-2025 based on LPJ-GUESS (generated in 2026)
AU  - Wu, Zhendong
DO  - 10.18160/7JE9-RP6B
UR  - https://meta.icos-cp.eu/collections/f6O_G0nGkC7Adz6uI3j96ibj
AB  - The product is generated in 2026. LPJ-GUESS (version 4.0, revision 6562) is forced with hourly ERA5 climate datasets to simulate global terrestrial CO2 flux at a resolution of 0.5 degree. LPJ-GUESS is a process-based dynamic global vegetation model, it uses time series data (e.g. climate forcing and atmospheric carbon dioxide concentrations with WMO CO2 X2019 scale) as input to simulate the effects of environmental change on vegetation structure and composition in terms of global plant functional types (PFTs), soil hydrology and biogeochemistry (Smith et al., 2001, https://web.nateko.lu.se/lpj-guess/). This simulation models natural fluxes, such as those from vegetation and soil under climate change, via natural processes such as biomass allocation, growth, reproduction, establishment, mortality, and disturbance. This means it does not include anthropogenic activities, such as forest management or agricultural management. The positive value means CO2 uptake from the atmosphere, and the negative value means CO2 release to the atmosphere.
KW  - Terrestrial Ecosystems
KW  - Land Biogeochemistry
KW  - Land Surface
KW  - Carbon cycle
PY  - 2026
PB  - ICOS ERIC - Carbon Portal
ER  -

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