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Assessment of molecular diversity of lignin products by various ionization techniques and high-resolution mass spectrometry

机译:通过各种电离技术和高分辨率质谱法评估木质素产物的分子多样性

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摘要

Lignin is a highly complex, plant-derived natural biomass component the analysis of which requires significant demands on the analytical platform. Fourier transform ion cyclotron mass spectrometry (FT-ICR MS) has been shown to be able to readily assess the complexity of lignin and lignin degradation products by assigning tens of thousands of compounds with elemental formulae. Nevertheless, many experimental and instrumental parameters introduce discrimination towards certain components, which limits the comprehensive MS analysis. As a result, a complete characterization of the lignome remains a challenge. The present study investigated a degraded lignin sample using FT-ICR MS and compared several atmospheric pressure ionization methods, e.g., electrospray ionization, atmospheric-pressure chemical ionization, and atmospheric-pressure photoioniza-tion. The results clearly show that the number of heteroatoms (e.g., N, S, P) in the sample greatly increases the chemical diversity of lignin, while at the same time also providing potentially useful biomarkers. We demonstrate here that FT-ICR MS was able to directly isolate isotopically pure single components from the ultra-complex mixture for subsequent structural analysis, without the time-consuming chromatographic separation. Capsule: Various ionization techniques coupled to FT-ICR MS provide a powerful tool to assess the lignome coverage.
机译:木质素是一种高度复杂的,植物来源的天然生物质成分,对其分析需要对分析平台有重大要求。傅立叶变换离子回旋加速器质谱(FT-ICR MS)已显示出能够通过为成千上万个化合物指定元素式来轻松评估木质素和木质素降解产物的复杂性。然而,许多实验和仪器参数对某些成分引入了歧视,这限制了全面的MS分析。结果,木质素的完整表征仍然是挑战。本研究使用FT-ICR MS研究了降解的木质素样品,并比较了几种大气压电离方法,例如电喷雾电离,大气压化学电离和大气压光电离。结果清楚地表明,样品中杂原子(例如N,S,P)的数量大大增加了木质素的化学多样性,同时还提供了潜在有用的生物标记。我们在这里证明FT-ICR MS能够直接从超复杂混合物中分离出同位素纯的单一组分,用于后续的结构分析,而无需进行费时的色谱分离。胶囊:结合FT-ICR MS的各种电离技术为评估木质素覆盖率提供了强大的工具。

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