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1. CarbonSense: A Multimodal Dataset and Baseline for Carbon Flux Modelling

2. Decadal increases in carbon uptake offset by respiratory losses across northern permafrost ecosystems

4. Characterizing Performance of Freshwater Wetland Methane Models Across Time Scales at FLUXNET‐CH4 Sites Using Wavelet Analyses

5. Upscaling Wetland Methane Emissions From the FLUXNET‐CH4 Eddy Covariance Network (UpCH4 v1.0): Model Development, Network Assessment, and Budget Comparison

6. Arctic soil methane sink increases with drier conditions and higher ecosystem respiration

7. Causality guided machine learning model on wetland CH4 emissions across global wetlands

8. Increase in gross primary production of boreal forests balanced out by increase in ecosystem respiration

10. The ABCflux database: Arctic–boreal CO2 flux observations and ancillary information aggregated to monthly time steps across terrestrial ecosystems

11. Earlier snowmelt may lead to late season declines in plant productivity and carbon sequestration in Arctic tundra ecosystems

12. Gap-filling eddy covariance methane fluxes: Comparison of machine learning model predictions and uncertainties at FLUXNET-CH4 wetlands

13. Identifying dominant environmental predictors of freshwater wetland methane fluxes across diurnal to seasonal time scales

14. Representativeness of Eddy-Covariance flux footprints for areas surrounding AmeriFlux sites

15. Substantial hysteresis in emergent temperature sensitivity of global wetland CH4 emissions.

17. FLUXNET-CH4: a global, multi-ecosystem dataset and analysis of methane seasonality from freshwater wetlands

18. Large loss of CO2 in winter observed across the northern permafrost region

21. Supplementary material to "WetCH4: A Machine Learning-based Upscaling of Methane Fluxes of Northern Wetlands during 2016–2022"

22. WetCH4: A Machine Learning-based Upscaling of Methane Fluxes of Northern Wetlands during 2016–2022

23. Albedo‐Induced Global Warming Potential Following Disturbances in Global Temperate and Boreal Forests

25. Vegetation type is an important predictor of the arctic summer land surface energy budget

27. FLUXNET-CH4 Synthesis Activity: Objectives, Observations, and Future Directions FLUXNET-CH4 Synthesis Activity: Objectives, Observations, and Future Directions

32. Missing pieces to modeling the Arctic-Boreal puzzle

35. Climate-change refugia in boreal North America : what, where, and for how long?

40. Reviews and syntheses: Australian vegetation phenology: new insights from satellite remote sensing and digital repeat photography

42. Increasing contribution of peatlands to boreal evapotranspiration in a warming climate

43. Greenness indices from digital cameras predict the timing and seasonal dynamics of canopy‐scale photosynthesis

46. Simulating net ecosystem exchange under seasonal snow cover at an Arctic tundra site.

47. Environmental controls of winter soil carbon dioxide fluxes in boreal and tundra environments.

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