Through increases in net primary production (NPP), elevated CO2 is hypothesizes to increase the amount of plant litter entering the soil. The fate of this extra carbon on the forest floor or in mineral soil is currently not clear. Moreover, increased rates of NPP can be maintained only if forests can escape nitrogen limitation. In a Free atmospheric CO2 Enrichment (FACE) experiment near Bangor, Wales, 4 ambient CO2 and 4 FACE plots were planted with patches of Betula pendula, Alnus glutinosa and Fagus sylvatica on a former arable field. Four years after establishment, only a shallow L forest floor litter layer had formed due to intensive bioturbation. Total soil C and N contents increased irrespective of treatment and species as a result o...
Free air CO2 enrichment (FACE) experiments in aggrading forests and plantations have demonstrated si...
The accumulation of anthropogenic CO 2 in the Earth’s atmosphere, and hence the rate of climate war...
Enhanced plant biomass accumulation in response to elevated atmospheric CO2 concentration could damp...
Through increases in net primary production (NPP), elevated CO2 is hypothesizes to increase the amou...
Through increases in net primary production (NPP), elevated CO2 is hypothesized to increase the amou...
Through increases in net primary production (NPP), elevated CO2 is hypothesized to increase the amou...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/117164/1/eap20031361508.pd
Sustained increased productivity of trees growing in elevated CO2 depends in part on their stoichiom...
Forest ecosystems are important sinks for rising concentrations of atmospheric CO2. In previous rese...
Free air CO2 enrichment (FACE) experiments in aggrading temperate forests and plantations have been ...
It is uncertain whether elevated atmospheric CO 2 will increase C storage in terrestrial ecosystems ...
Our ability to predict whether elevated atmospheric CO_2 will alter the cycling of C and N in terres...
International audienceFree air CO2 enrichment (FACE) experiments in aggrading forests and plantation...
Despite the importance of nitrogen (N) limitation of forest carbon (C) sequestration at rising atmos...
Nitrogen availability in terrestrial ecosystems strongly influences plant productivity and nutrient ...
Free air CO2 enrichment (FACE) experiments in aggrading forests and plantations have demonstrated si...
The accumulation of anthropogenic CO 2 in the Earth’s atmosphere, and hence the rate of climate war...
Enhanced plant biomass accumulation in response to elevated atmospheric CO2 concentration could damp...
Through increases in net primary production (NPP), elevated CO2 is hypothesizes to increase the amou...
Through increases in net primary production (NPP), elevated CO2 is hypothesized to increase the amou...
Through increases in net primary production (NPP), elevated CO2 is hypothesized to increase the amou...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/117164/1/eap20031361508.pd
Sustained increased productivity of trees growing in elevated CO2 depends in part on their stoichiom...
Forest ecosystems are important sinks for rising concentrations of atmospheric CO2. In previous rese...
Free air CO2 enrichment (FACE) experiments in aggrading temperate forests and plantations have been ...
It is uncertain whether elevated atmospheric CO 2 will increase C storage in terrestrial ecosystems ...
Our ability to predict whether elevated atmospheric CO_2 will alter the cycling of C and N in terres...
International audienceFree air CO2 enrichment (FACE) experiments in aggrading forests and plantation...
Despite the importance of nitrogen (N) limitation of forest carbon (C) sequestration at rising atmos...
Nitrogen availability in terrestrial ecosystems strongly influences plant productivity and nutrient ...
Free air CO2 enrichment (FACE) experiments in aggrading forests and plantations have demonstrated si...
The accumulation of anthropogenic CO 2 in the Earth’s atmosphere, and hence the rate of climate war...
Enhanced plant biomass accumulation in response to elevated atmospheric CO2 concentration could damp...