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C-13 CPMAS-NMR spectroscopy for characterization of soil organic carbon in terra rossa

机译:C-13 CPMAS-NMR光谱,用于Terra Rossa中土壤有机碳的表征

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Large amounts of Fe(III) oxides in terra rossa is a strong limiting factor for using solid state NMR spectroscopy in studying its soil organic carbon (SOC) composition and structure. The intense paramagnetic source of signal depression, which is originated by the high magnetic moment of the unpaired electron, can broaden NMR signals up to several kHz. In order to demonstrate the feasibility of SOC characterisation in samples with large amount of paramagnetic species, we characterised three terra rossa soils from different pedoenviroments. To remove selectively Fe(III) compounds (i.e. crystalline, amorphous, bound to SOC, etc.), we employed different soil purification procedures. This approach allowed us to determine the main functional groups, in most cases "masked" in the NMR spectra of bulk soils, and to characterize in detail the SOC composition in terra rossa. Furthermore, it was possible to assess indirectly Fe(III) organization within the heterogeneous organic domain. Finally, we found that in the case of SOC, the C-13 CPMAS-NMR spectrum of bulk terra rossa soil, i.e. without any purification, can be in some cases used to describe the rough chemical composition of SOC, most likely when Fe(III) is compartmentalized far away from SOC.
机译:Terra Rossa中的大量Fe(III)氧化物是使用固态NMR光谱研究其土壤有机碳(SoC)组成和结构的强烈限制因素。信号凹陷的强神经光源,其源于未配对电子的高磁矩,可以扩大NMR信号,直至几kHz。为了证明具有大量顺磁性物种的样品中SOC表征的可行性,我们从不同的脱毒剂中表征了三个Terra Rossa土壤。选择性地除去Fe(III)化合物(即结晶,无定形,与SoC的结合等),我们采用不同的土壤净化程序。这种方法使我们能够确定主要官能团,在大多数情况下在散装土壤的NMR光谱中“掩盖”,并详细描述Terra Rossa中的SOC组成。此外,可以在非均相有机结构域内评估间接Fe(III)组织。最后,我们发现,在SOC的情况下,散装Terra Rossa土壤的C-13 CPMAS-NMR谱,即没有任何纯化,可以在某些情况下用于描述SoC的粗糙化学成分,最有可能在Fe( III)距离SOC的距离。

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