| [1] | Gatti L. V., Gloor M., Miller J. B., et al. (2014). Drought sensitivity of Amazonian carbon balance revealed by atmospheric measurements. Nature 506:76−80. DOI:10.1038/nature12957 |
| [2] | Liu J., Bowman K. W., Schimel D. S., et al. (2017). Contrasting carbon cycle responses of the tropical continents to the 2015–2016 El Niño. Science 358:eaam5690. DOI:10.1126/science.aam5690 |
| [3] | Ke P., Ciais P., Sitch S., et al. (2024). Low latency carbon budget analysis reveals a large decline of the land carbon sink in 2023. Natl. Sci. Rev. 11:nwae367. DOI:10.1093/nsr/nwae367 |
| [4] | Jiang F., Wang H., Chen J. M., et al. (2021). Regional CO2 fluxes from 2010 to 2015 inferred from GOSAT XCO2 retrievals using a new version of the global carbon assimilation system. Atmos. Chem. Phys. 21:1963−1985. DOI:10.5194/acp-21-1963-2021 |
| [5] | Van Der Werf, Guido R., Randerson J. T., Giglio L., et al. (2017). Global fire emissions estimates during 1997–2016. Earth Syst. Sci. Data 9:697−720. DOI:10.5194/essd-9-697-2017 |
| [6] | Kaiser J. W., Heil A., Andreae M. O., et al. (2012). Biomass burning emissions estimated with a global fire assimilation system based on observed fire radiative power. Biogeosciences 9:527−554. DOI:10.5194/bg-9-527-2012 |
| [7] | Chen J. M., Ju W., Ciais P., et al. (2019). Vegetation structural change since 1981 significantly enhanced the terrestrial carbon sink. Nat. Commun. 10:4259. DOI:10.1038/s41467-019-12257-8 |
| [8] | Jacobson A. R., Schuldt K. N., Tans P., et al. (2023). CarbonTracker CT2022. NOAA global monitoring laboratory. DOI:10.25925/Z1GJ-3254 |
| [9] | Li X. and Xiao J. (2019). A global, 0.05-degree product of solar-induced chlorophyll fluorescence derived from OCO-2, MODIS, and reanalysis data. Remote Sens. 11:517. 517,DOI:10.3390/rs11050517 |
| [10] | Joiner J. and Yoshida Y. (2021). Global MODIS and FLUXNET-derived daily gross Primary production, V2. ORNL DAAC, Oak Ridge, Tennessee, USA. Earth Data 10. DOI:10.3334/ORNLDAAC/1835 |
| Dong G., Jiang F., Ju W., et al. (2025). Extreme fire emissions dominate the Amazonian land sink decline in 2024. The Innovation Geoscience 3:100173. https://doi.org/10.59717/j.xinn-geo.2025.100173 |
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Anomalies of climate factors and NBE as well as its constituent fluxes in the Amazon for 2024 relative to 2020–2022