Qing Zhu
0000-0003-2441-944X
30 papers found
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Weaker land–climate feedbacks from nutrient uptake during photosynthesis-inactive periods
Global Soil Consumption of Atmospheric Carbon Monoxide: An Analysis Using a Process-Based Biogeochemistry Model
Root traits explain observed tundra vegetation nitrogen uptake patterns: Implications for trait‐based land models
Improved modelling of soil nitrogen losses
Multiple soil nutrient competition between plants, microbes, and mineral surfaces: model development, parameterization, and example applications in several tropical forests
Supplementary material to "Multiple soil nutrient competition between plants, microbes, and mineral surfaces: model development, parameterization, and example applications in several tropical forests"
Constraining terrestrial ecosystem CO<sub>2</sub> fluxes by integrating models of biogeochemistry and atmospheric transport and data of surface carbon fluxes and atmospheric CO<sub>2</sub> concentrations
Constraining terrestrial ecosystem CO2 fluxes by integrating models of biogeochemistry and atmospheric transport and data of surface carbon fluxes and atmospheric CO2 concentrations
Influences of calibration data length and data period on model parameterization and quantification of terrestrial ecosystem carbon dynamics
Modeling the effects of organic nitrogen uptake by plants on the carbon cycling of boreal forest and tundra ecosystems
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