A new analytical approach (Thermally Based Separation, TBS) for the characterisation of inorganic (IC) and organic (OC) carbon pools in alluvial soils has been tested. The method does not involve any chemical pre-treatment of samples and relies on different thermal stabilities of IC and OC pools, which can be accurately determined with an EA-IRMS analytical system. Elemental (C, g/kg) and isotopic (δ13C, ‰) carbon data were used to check the reliability of the TBS method by calculating the mass balances using the measured IC and OC fractions and total carbon (TC). TBS was applied to 7 soil samples from the Padanian alluvial plain (NE Italy) that were collected from different depths and characterised by textural/geochemical heterogeneity. Th...
To quantify and evermore qualify carbon in soils have become highly timely task in landscape ecology...
Soil organic matter (SOM) plays an important role in physical, chemical and biological properties of...
Carbon (C) in soils persists on a range of timescales depending on physical, chemical, and biologica...
A new analytical approach (Thermally Based Separation, TBS) for the characterisation of inorganic (I...
In the last years several authors applied the thermal speciation techniques to different...
The quantification of soil carbon pools is a pressing topic both for the agriculture productivity an...
Elemental and isotopic analyses of carbon in environmental matrices usually integrate multiple sourc...
Elemental and isotopic analyses of carbon in environmental matrices usually integrate multiple sourc...
The quantification of organic (OC) and inorganic carbon (IC) in soils provides an essential tool for...
The presented study is in the framework of the project SaveSOC2, promoted by the Emilia-Romagna regi...
Labile soil dissolved organic carbon (DOC) and heat-extracted carbon (HEC) are sensitive indicators ...
Stable carbon isotopes are a powerful tool to assess the origin and dynamics of carbon in soils. How...
Carbon and nitrogen elemental (C-N, wt%) and isotopic (δ13C-δ15N, ‰) investigation has been carried ...
Soil respiration tests and abundance of particulate organic matter (POM) are considered as classical...
Soils store twice the amount of carbon that is found in atmosphere and vegetation combined. They act...
To quantify and evermore qualify carbon in soils have become highly timely task in landscape ecology...
Soil organic matter (SOM) plays an important role in physical, chemical and biological properties of...
Carbon (C) in soils persists on a range of timescales depending on physical, chemical, and biologica...
A new analytical approach (Thermally Based Separation, TBS) for the characterisation of inorganic (I...
In the last years several authors applied the thermal speciation techniques to different...
The quantification of soil carbon pools is a pressing topic both for the agriculture productivity an...
Elemental and isotopic analyses of carbon in environmental matrices usually integrate multiple sourc...
Elemental and isotopic analyses of carbon in environmental matrices usually integrate multiple sourc...
The quantification of organic (OC) and inorganic carbon (IC) in soils provides an essential tool for...
The presented study is in the framework of the project SaveSOC2, promoted by the Emilia-Romagna regi...
Labile soil dissolved organic carbon (DOC) and heat-extracted carbon (HEC) are sensitive indicators ...
Stable carbon isotopes are a powerful tool to assess the origin and dynamics of carbon in soils. How...
Carbon and nitrogen elemental (C-N, wt%) and isotopic (δ13C-δ15N, ‰) investigation has been carried ...
Soil respiration tests and abundance of particulate organic matter (POM) are considered as classical...
Soils store twice the amount of carbon that is found in atmosphere and vegetation combined. They act...
To quantify and evermore qualify carbon in soils have become highly timely task in landscape ecology...
Soil organic matter (SOM) plays an important role in physical, chemical and biological properties of...
Carbon (C) in soils persists on a range of timescales depending on physical, chemical, and biologica...