The effects of elevated CO2 on ecosystem element stocks are equivocal, in part because cumulative effects of CO2 on element pools are difficult to detect. We conducted a complete above and belowground inventory of non-nitrogen macro- and micronutrient stocks in a subtropical woodland exposed to twice-ambient CO2 concentrations for 11 years. We analyzed a suite of nutrient elements and metals important for nutrient cycling in soils to a depth of ∼2 m, in leaves and stems of the dominant oaks, in fine and coarse roots, and in litter. In conjunction with large biomass stimulation, elevated CO2 increased oak stem stocks of Na, Mg, P, K, V, Zn and Mo, and the aboveground pool of K and S. Elevated CO2 increased root pools of most elements, except...
Abstract. The effects of elevated CO2 on nutrient cycling and selected belowground processes in the ...
Leaf mineral concentrations of co-occurring Erica arborea, Juniperus communis and Myrtus communis we...
Uncertainty surrounds belowground plant responses to rising atmospheric CO2 because roots are diffic...
The effects of elevated CO2 on ecosystem element stocks are equivocal, in part because cumulative ef...
·Rising atmospheric carbon dioxide (CO2) could alter the carbon (C) and nitrogen (N) content of ecos...
Rising atmospheric CO2 concentrations may alter the nitrogen (N) content of ecosystems by changing N...
Rising atmospheric CO2 concentrations may alter the nitrogen (N) content of ecosystems by changing N...
Atmospheric carbon dioxide levels are increasing and predicted to double this century. The implicati...
The levels of atmospheric CO2 are rising and this affects the growth of plants and the ecosystems in...
International audienceNitrogen availability in terrestrial ecosystems strongly influences plant prod...
Uncertainty surrounds belowground plant responses to rising atmospheric CO2 because roots are diffic...
Increased forest growth in response to rising atmospheric concentrations of CO2 may mitigate a porti...
We determined the direct effects of atmospheric CO, concentration ([CO,]) on leaf gas exchange, phen...
It is uncertain whether elevated atmospheric CO 2 will increase C storage in terrestrial ecosystems ...
Uncertainty surrounds belowground plant responses to rising atmospheric CO2 because roots are diffic...
Abstract. The effects of elevated CO2 on nutrient cycling and selected belowground processes in the ...
Leaf mineral concentrations of co-occurring Erica arborea, Juniperus communis and Myrtus communis we...
Uncertainty surrounds belowground plant responses to rising atmospheric CO2 because roots are diffic...
The effects of elevated CO2 on ecosystem element stocks are equivocal, in part because cumulative ef...
·Rising atmospheric carbon dioxide (CO2) could alter the carbon (C) and nitrogen (N) content of ecos...
Rising atmospheric CO2 concentrations may alter the nitrogen (N) content of ecosystems by changing N...
Rising atmospheric CO2 concentrations may alter the nitrogen (N) content of ecosystems by changing N...
Atmospheric carbon dioxide levels are increasing and predicted to double this century. The implicati...
The levels of atmospheric CO2 are rising and this affects the growth of plants and the ecosystems in...
International audienceNitrogen availability in terrestrial ecosystems strongly influences plant prod...
Uncertainty surrounds belowground plant responses to rising atmospheric CO2 because roots are diffic...
Increased forest growth in response to rising atmospheric concentrations of CO2 may mitigate a porti...
We determined the direct effects of atmospheric CO, concentration ([CO,]) on leaf gas exchange, phen...
It is uncertain whether elevated atmospheric CO 2 will increase C storage in terrestrial ecosystems ...
Uncertainty surrounds belowground plant responses to rising atmospheric CO2 because roots are diffic...
Abstract. The effects of elevated CO2 on nutrient cycling and selected belowground processes in the ...
Leaf mineral concentrations of co-occurring Erica arborea, Juniperus communis and Myrtus communis we...
Uncertainty surrounds belowground plant responses to rising atmospheric CO2 because roots are diffic...