Effects of ambient and elevated atmospheric CO2 concentrations (350 and 700 μl l-1) on net carbon input into soil, the production of root-derived material and the subsequent microbial transformation were investigated. Perennial ryegrass plants (L. perenne L.) were labelled in a continuously labelled 14C-CO2 atmosphere to follow carbon flow through the plant and all soil compartments. After 115 days, root biomass was 41% greater at elevated CO2 than at ambient CO2 and this root biomass seemed to be the driving force for the increase of 14C-labelled carbon in all compartments examined, i.e. carbon in the soil solution, soil microbial biomass and soil residue. After incubation for 230 days at 14°C, roots grown at elevated CO2 decomposed slower...
It is uncertain whether elevated atmospheric CO2 will increase C storage in terrestrial ecosystems w...
It is uncertain whether elevated atmospheric CO2 will increase C storage in terrestrial ecosystems w...
The rhizosphere is one of the key fine-scale components of C cycles. This study was undertaken to im...
Effects of ambient and elevated atmospheric CO2 concentrations (350 and 700 μl l-1) on net carbon in...
Abstract Eects of ambient and elevated atmospheric CO 2 concentrations (350 and 700 ml l À1 ) on net...
The net flux of soil C is determined by the balance between soil C input and microbial decomposition...
The net flux of soil C is determined by the balance between soil C input and microbial decomposition...
Carbon input into the soil and decomposition processes under elevated CO2 are highly relevant for C ...
Carbon input into the soil and decomposition processes under elevated CO2 are highly relevant for C ...
Carbon input into the soil and decomposition processes under elevated CO2 are highly relevant for C ...
Elevated atmospheric CO2 may alter decomposition rates through changes in plant material quality and...
Elevated atmospheric CO2 may alter decomposition rates through changes in plant material quality and...
Elevated atmospheric CO2 may alter decomposition rates through changes in plant material quality and...
Alterations in microbial mineralization and nutrient cycling may control the long-term response of e...
There is considerable uncertainty about how rates of soil carbon (C) and nitrogen (N) cycling will c...
It is uncertain whether elevated atmospheric CO2 will increase C storage in terrestrial ecosystems w...
It is uncertain whether elevated atmospheric CO2 will increase C storage in terrestrial ecosystems w...
The rhizosphere is one of the key fine-scale components of C cycles. This study was undertaken to im...
Effects of ambient and elevated atmospheric CO2 concentrations (350 and 700 μl l-1) on net carbon in...
Abstract Eects of ambient and elevated atmospheric CO 2 concentrations (350 and 700 ml l À1 ) on net...
The net flux of soil C is determined by the balance between soil C input and microbial decomposition...
The net flux of soil C is determined by the balance between soil C input and microbial decomposition...
Carbon input into the soil and decomposition processes under elevated CO2 are highly relevant for C ...
Carbon input into the soil and decomposition processes under elevated CO2 are highly relevant for C ...
Carbon input into the soil and decomposition processes under elevated CO2 are highly relevant for C ...
Elevated atmospheric CO2 may alter decomposition rates through changes in plant material quality and...
Elevated atmospheric CO2 may alter decomposition rates through changes in plant material quality and...
Elevated atmospheric CO2 may alter decomposition rates through changes in plant material quality and...
Alterations in microbial mineralization and nutrient cycling may control the long-term response of e...
There is considerable uncertainty about how rates of soil carbon (C) and nitrogen (N) cycling will c...
It is uncertain whether elevated atmospheric CO2 will increase C storage in terrestrial ecosystems w...
It is uncertain whether elevated atmospheric CO2 will increase C storage in terrestrial ecosystems w...
The rhizosphere is one of the key fine-scale components of C cycles. This study was undertaken to im...