腐植质结构的图形分辨率

L. Scrano, Francesca Mottola, C. Stefanelli, Filomena Lelario, G. Bianco, S. Bufo
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摘要

近年来,先进的技术被用于获取天然有机质(NOM)的信息。然而,目前对腐殖质(HS)化学结构的认识仍然不完整。这些物质似乎是带电有机分子的过于复杂的混合物,它们的特性仍然是现代环境科学中最令人兴奋的挑战之一。了解NOM的化学组成对土壤和水性质的定义非常重要,因为它对许多分子和全球尺度过程的理解具有重大影响。利用FT- icr / MS (Thermo LTQ FT, 7 Tesla)在负电离模式下获得的腐植质萃取物(Suwannee River, Nordic Aquatic and Soil)质谱中的同源序列,采用二维图形化方法进行解析。电喷雾电离(ESI)与傅里叶变换离子回旋共振(FT-ICR / MS)提供的超高分辨率质谱相结合,具有很大的前景,因为它可以在分子尺度上概述NOM的组成和细节。NOM的高分辨率FT-ICR光谱可能非常复杂。这些光谱通常在每个标称质量处包含许多峰,在整个光谱中包含数千个峰。每个峰可以代表一种化学上不同的化合物。这种复杂性对结构解释的光谱研究提出了分析挑战。二维绘图方法,如Kendrick图和van Krevelen图,已经成功地应用于非常高分辨率的质谱,允许将峰从其在质量范围内的同源亲戚中分类到复杂的光谱中。在van Krevelen图中,在直线上发现了与官能团损失或增加有关的同源系列化合物之间的结构相似性对应的离子信号。我们发现了许多有趣的同源区域,并对三个腐植酸标准进行了比较。最后,我们识别了由Kendrick图得到的同源级数的结构关系。结果表明,与土壤提取样品(土壤fa和土壤ha)相比,Suwannee河和北欧水生样品中存在同源序列。特别是,与甲基化/去甲基化、氢化/脱氢、水化/脱水和氧化/还原过程相关的同源序列信号在土壤- fa van Krevelen图中较低。相反,在土壤- ha样品的所有同源序列中,差异并不明显。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Graphical resolution of  Humic structures

Advanced techniques have been recently used to obtain information on Natural Organic Matter (NOM). However, the current knowledge of the chemical structure of humic substances (HS) is still incomplete. These substances appear to be too complex mixtures of charged organic molecules, and their characterization remains one of the most stimulating challenges in modern environmental science. Knowledge of the chemical composition of NOM is of great importance for the definition of soil and water properties because it has a significant impact on the understanding of numerous molecular and global-scale processes.
This study aims to apply two-dimensional graphical methods to resolve homologous series in mass spectra of humic extracts (Suwannee River, Nordic Aquatic and Soil) obtained using FT-ICR / MS (Thermo LTQ FT, 7 Tesla) in negative ionization mode. Electrospray ionization (ESI) coupled with ultra-high resolution mass spectrometry offered by Fourier transformed ion cyclotron resonance (FT-ICR / MS) has emerged with great promise as it can provide an overview of the NOM composition and details on a molecular scale. NOM's very high-resolution FT-ICR spectra can be extremely complicated. These spectra usually contain many peaks at each nominal mass and thousands of peaks across the entire spectrum. Each peak can represent a chemically distinct compound. This complexity poses an analytical challenge to the study of spectra for structural interpretation. Two-dimensional graphing methods, such as Kendrick and van Krevelen graphs, have been successfully applied to very high-resolution mass spectra, allowing peaks to be sorted into complicated spectra from their homologous relatives across the mass range.
In van Krevelen plots, ionic signals corresponding to structural similarities between homologous series of compounds involved in the loss or gain of functional groups are found on straight lines. We identified many interesting homologous regions and compared the three humic standards with each other. Finally, we recognized the structural relationships of the homologous series obtained through Kendrick graphs.
The results showed homologous series in the Suwannee River and Nordic Aquatic samples compared to the soil-extracted samples (soil-FA and soil-HA). In particular, homologous series signals related to methylation/demethylation, hydrogenation/dehydrogenation, hydration/dehydration, and oxidation/reduction processes were lower in the soil-FA van Krevelen diagrams. On the contrary, the differences were not so evident in all the homologous series for the soil-HA samples.

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