Partitioning of the quantities of C lost by leaf litter through decomposition into (i) CO2 efflux to the atmosphere and (ii) C input to soil organic matter (SOM) is essential in order to develop a deeper understanding of the litter-soil biogeochemical continuum. However, this is a challenging task due to the occurrence of many different processes contributing to litter biomass loss. With the aim of quantifying different fluxes of C lost by leaf litter decomposition, a field experiment was performed at a short rotation coppice poplar plantation in central Italy. Populus nigra leaf litter, enriched in 13C (δ13C ∼ +160‰) was placed within collars to decompose in direct contact with the soil (δ13C ∼ -26‰) for 11 months. CO2 efflux from within t...
We show the potentiality of coupling together different compound-specific isotopic analyses in a lab...
Microbial communities in soil A horizons derive their carbon from several potential sources: organic...
Decomposition of leaf litter and its incorporation into the mineral soil are key components of the C...
Partitioning of the quantities of C lost by leaf litter through decomposition into (i) CO2 efflux to...
Partitioning of the quantities of C lost by leaf litter through decomposition into (i) CO2 efflux to...
During microbial breakdown of leaf litter a fraction of the C lost by the litter is not released to ...
During microbial breakdown of leaf litter a fraction of the C lost by the litter is not released to ...
During microbial breakdown of leaf litter a fraction of the C lost by the litter is not released to ...
We show the potentiality of coupling together different compound-specific isotopic analyses in a lab...
During microbial breakdown of leaf litter a fraction of the C lost by the litter is not released to ...
We show the potentiality of coupling together different compound-specific isotopic analyses in a lab...
We show the potentiality of coupling together different compound-specific isotopic analyses in a lab...
We show the potentiality of coupling together different compound-specific isotopic analyses in a lab...
Decomposition of leaf litter and its incorporation into the mineral soil are key components of the C...
We show the potentiality of coupling together different compound-specific isotopic analyses in a lab...
We show the potentiality of coupling together different compound-specific isotopic analyses in a lab...
Microbial communities in soil A horizons derive their carbon from several potential sources: organic...
Decomposition of leaf litter and its incorporation into the mineral soil are key components of the C...
Partitioning of the quantities of C lost by leaf litter through decomposition into (i) CO2 efflux to...
Partitioning of the quantities of C lost by leaf litter through decomposition into (i) CO2 efflux to...
During microbial breakdown of leaf litter a fraction of the C lost by the litter is not released to ...
During microbial breakdown of leaf litter a fraction of the C lost by the litter is not released to ...
During microbial breakdown of leaf litter a fraction of the C lost by the litter is not released to ...
We show the potentiality of coupling together different compound-specific isotopic analyses in a lab...
During microbial breakdown of leaf litter a fraction of the C lost by the litter is not released to ...
We show the potentiality of coupling together different compound-specific isotopic analyses in a lab...
We show the potentiality of coupling together different compound-specific isotopic analyses in a lab...
We show the potentiality of coupling together different compound-specific isotopic analyses in a lab...
Decomposition of leaf litter and its incorporation into the mineral soil are key components of the C...
We show the potentiality of coupling together different compound-specific isotopic analyses in a lab...
We show the potentiality of coupling together different compound-specific isotopic analyses in a lab...
Microbial communities in soil A horizons derive their carbon from several potential sources: organic...
Decomposition of leaf litter and its incorporation into the mineral soil are key components of the C...