Soil organic matter (SOM) is an ubiquitous, complex material which is produced by the degradation of plant tissues and animal bodies. It is the major indicator of soil quality since it is directly involved in the maintenance of soil fertility, prevention of erosion and desert encroachment and provision of suitable environment for biological activity. Organic matter is an important driving force in environmental global change as it acts as both a source and sink of atmospheric carbon. However, SOM is subjected to rapid changes due to environmental transformations such as massive deforestations, fires, intensive land uses, temperature increases and so on. In the present work, a characterization of humic substances was done in order to obtain information about the transformation occurring to SOM as affected by temperature increases. For the first time variable temperature cross polarization magic angle spinning (CPMAS) 13C NMR spectroscopy was applied in combination with thermal analyses (TG and DSC) on environmentally relevant soil organic matter. The results show that the conformational changes occurring in humic substances as temperature is raised can be associated to melting of alkyl components connected with sublimation of some organic compounds. The simultaneous application of solid phase micro extraction GC-MS also allowed the identification of the components which were released by sublimation processes.

De Pasquale, C., Berns, A.E., Kucerik, J., Conte, P., Alonzo, G. (2009). Solid state nuclear magnetic resonance spectroscopy in the evaluation of soil organic matter changes following thermal variations. ??????? it.cilea.surplus.oa.citation.tipologie.CitationProceedings.prensentedAt ??????? European Geoscience Union General Assembly, Vienna.

Solid state nuclear magnetic resonance spectroscopy in the evaluation of soil organic matter changes following thermal variations

DE PASQUALE, Claudio;CONTE, Pellegrino;ALONZO, Giuseppe
2009-01-01

Abstract

Soil organic matter (SOM) is an ubiquitous, complex material which is produced by the degradation of plant tissues and animal bodies. It is the major indicator of soil quality since it is directly involved in the maintenance of soil fertility, prevention of erosion and desert encroachment and provision of suitable environment for biological activity. Organic matter is an important driving force in environmental global change as it acts as both a source and sink of atmospheric carbon. However, SOM is subjected to rapid changes due to environmental transformations such as massive deforestations, fires, intensive land uses, temperature increases and so on. In the present work, a characterization of humic substances was done in order to obtain information about the transformation occurring to SOM as affected by temperature increases. For the first time variable temperature cross polarization magic angle spinning (CPMAS) 13C NMR spectroscopy was applied in combination with thermal analyses (TG and DSC) on environmentally relevant soil organic matter. The results show that the conformational changes occurring in humic substances as temperature is raised can be associated to melting of alkyl components connected with sublimation of some organic compounds. The simultaneous application of solid phase micro extraction GC-MS also allowed the identification of the components which were released by sublimation processes.
2009
European Geoscience Union General Assembly
Vienna
19-24 Aprile 2009
2009
00
De Pasquale, C., Berns, A.E., Kucerik, J., Conte, P., Alonzo, G. (2009). Solid state nuclear magnetic resonance spectroscopy in the evaluation of soil organic matter changes following thermal variations. ??????? it.cilea.surplus.oa.citation.tipologie.CitationProceedings.prensentedAt ??????? European Geoscience Union General Assembly, Vienna.
Proceedings (atti dei congressi)
De Pasquale, C; Berns, A E; Kucerik, J; Conte, P; Alonzo, G
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10447/41413
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