Human activities are increasing the concentrations of atmospheric carbon dioxide ([CO2]) and tropospheric ozone ([O3]), potentially leading to changes in the quantity and chemical quality of leaf litter inputs to forest soils. Because the quality and quantity of labile and recalcitrant carbon (C) compounds influence forest productivity through changes in soil organic matter content, characterizing changes in leaf litter in response to environmental change is critical to understanding the effects of global change on forests. We assessed the independent and combined effects of elevated [CO2] and elevated [O3] on foliar litter production and chemistry in aspen (Populus tremuloides Michx.) and birch–(Betula papyrifera Marsh.) aspen communities ...
As human activity continues to increase CO2 and O3, broad expanses of north temperate forests will b...
We hypothesized that changes in plant growth resulting from atmospheric CO 2 and O 3 enrichment woul...
As human activity continues to increase CO2 and O3, broad expanses of north temperate forests will b...
Human activities are increasing the concentrations of atmospheric carbon dioxide ([CO2]) and troposp...
We examined the effects of elevated CO2 and O3 and their interaction on leaf litter chemistry and de...
Atmospheric chemical composition affects foliar chemical composition, which in turn influences the d...
Rising atmospheric carbon dioxide (CO2) concentration ([CO 2]) could alter terrestrial carbon (C) cy...
It has been hypothesized that greater production of total nonstructural carbohydrates (TNC) in folia...
It has been hypothesized that greater production of total nonstructural carbohydrates (TNC) in folia...
Nitrogen cycling in northern temperate forest ecosystems could change under increasing atmospheric C...
The effect of elevated atmospheric CO2 and nutrient supply on elemental composition and decompositio...
• Concentrations of atmospheric CO2 and tropospheric ozone (O3) are rising concurrently in the atmos...
Rising atmospheric CO2 may stimulate future forest productivity, possibly increasing carbon storage ...
Elevated atmospheric CO <sub>2</sub> has the potential to change the composition and dynamics of soi...
Increases in tree biomass may be an important sink for CO2 as the atmospheric concentration continue...
As human activity continues to increase CO2 and O3, broad expanses of north temperate forests will b...
We hypothesized that changes in plant growth resulting from atmospheric CO 2 and O 3 enrichment woul...
As human activity continues to increase CO2 and O3, broad expanses of north temperate forests will b...
Human activities are increasing the concentrations of atmospheric carbon dioxide ([CO2]) and troposp...
We examined the effects of elevated CO2 and O3 and their interaction on leaf litter chemistry and de...
Atmospheric chemical composition affects foliar chemical composition, which in turn influences the d...
Rising atmospheric carbon dioxide (CO2) concentration ([CO 2]) could alter terrestrial carbon (C) cy...
It has been hypothesized that greater production of total nonstructural carbohydrates (TNC) in folia...
It has been hypothesized that greater production of total nonstructural carbohydrates (TNC) in folia...
Nitrogen cycling in northern temperate forest ecosystems could change under increasing atmospheric C...
The effect of elevated atmospheric CO2 and nutrient supply on elemental composition and decompositio...
• Concentrations of atmospheric CO2 and tropospheric ozone (O3) are rising concurrently in the atmos...
Rising atmospheric CO2 may stimulate future forest productivity, possibly increasing carbon storage ...
Elevated atmospheric CO <sub>2</sub> has the potential to change the composition and dynamics of soi...
Increases in tree biomass may be an important sink for CO2 as the atmospheric concentration continue...
As human activity continues to increase CO2 and O3, broad expanses of north temperate forests will b...
We hypothesized that changes in plant growth resulting from atmospheric CO 2 and O 3 enrichment woul...
As human activity continues to increase CO2 and O3, broad expanses of north temperate forests will b...