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首页> 外文期刊>Organic Geochemistry: A Publication of the International Association of Geochemistry and Cosmochemistry >Investigation of humic acid N with X-ray photoelectron spectroscopy: Effect of acid hydrolysis and comparison with N-15 cross polarization/magic angle spinning nuclear magnetic resonance spectroscopy
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Investigation of humic acid N with X-ray photoelectron spectroscopy: Effect of acid hydrolysis and comparison with N-15 cross polarization/magic angle spinning nuclear magnetic resonance spectroscopy

机译:用X射线光电子能谱研究腐殖酸N:酸水解的影响以及与N-15交叉极化/魔角旋转核磁共振谱的比较

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摘要

Nitrogen in humic substances has an important function as a reservoir of plant nutrient. To elucidate the stability of humic acid N in soil with respect to chemical structure, X-ray photoelectron spectroscopy (XPS) and N-15 cross polarization/magic angle spinning nuclear magnetic resonance (CPMAS NMR) spectroscopy were applied to humic acids with various degrees of humification. The composition of the non-hydrolyzable fraction of humic acid N remaining after step-wise acid hydrolysis was also investigated by XPS. The proportion of non-hydrolyzable N in aromatic N (including imine, heterocyclic C=N, and aromatic amine), 26.2 +/- 5.4%, was greater than that in peptide bond N or primary amine N, 4.2 - 21.5%. However, peptide bond N was the dominant species in the non-hydrolyzable humic acid N, 58.7 - 79.5%, and aromatic N and primary amine N accounted for 12.2 - 22.3% and 5.6 - 19.8%, respectively. The proportions of heterocyclic N, peptide/amide N, guanidine/aniline N, and free amino N in total N, estimated by N-15 CPMAS NMR, were 5 - 21%, 59 - 83%, 4 - 8%, and 3 - 12%. The relative concentration of peptide/amide N estimated by N-15 CPMAS NMR correlated negatively with the degree of humification that was estimated from two variables indicating the degree of darkening. In general, significant differences between the proportion of peptide/amide N (or peptide bond N) in total N estimated by N-15 CPMAS NMR and XPS were not detected. The proportion of heterocyclic N in total N estimated by N-15 CPMAS NMR correlated positively with the degree of humification. The absence of significant differences between the proportions of aromatic N (XPS) and heterocyclic N (N-15 CPMAS NMR) in total N suggested that aromatic amines are minor constituents in humic acid N. Since pyrrolic N is not included in XPS measurements of aromatic N, it was considered that the relative concentration of heterocyclic C=N increases with increasing degree of humification. (c) 2005 Elsevier Ltd. All rights reserved.
机译:腐殖质中的氮具有重要的功能,可作为植物养分的储存库。为了阐明土壤中腐殖酸N在化学结构方面的稳定性,将X射线光电子能谱(XPS)和N-15交叉极化/魔角旋转核磁共振(CPMAS NMR)光谱应用于不同程度的腐殖酸谦卑。还通过XPS研究了在逐步酸水解之后残留的腐殖酸N的不可水解部分的组成。芳香族N(包括亚胺,杂环C = N和芳香族胺)中不可水解的N的比例为26.2 +/- 5.4%,大于肽键N或伯胺N的4.2-21.5%。然而,肽键N是不可水解腐殖酸N的主要种类,占58.7-79.5%,芳香族N和伯胺N分别占12.2-22.3%和5.6-19.8%。通过N-15 CPMAS NMR估算,杂环N,肽/酰胺N,胍/苯胺N和游离氨基N在总氮中的比例分别为5-21%,59-83%,4-8%和3 -12%通过N-15 CPMAS NMR估算的肽/酰胺N的相对浓度与从指示变暗程度的两个变量估算的腐化度呈负相关。通常,未检测到通过N-15 CPMAS NMR和XPS估算的总N中肽/酰胺N(或肽键N)的比例之间的显着差异。通过N-15 CPMAS NMR估算,杂环氮在总氮中的比例与腐殖化程度呈正相关。在总氮中芳香族N(XPS)和杂环N(N-15 CPMAS NMR)的比例之间没有显着差异,这表明芳香族胺是腐殖酸N中的次要成分。由于吡咯N不包括在XPS芳香族化合物测量中N,认为随着腐殖化程度的增加,杂环C = N的相对浓度增加。 (c)2005 Elsevier Ltd.保留所有权利。

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