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木质素磺酸盐的分子水平表征:高分辨率质谱方法。

Molecular-level characterization of lignosulfonates: high-resolution mass spectrometry approach.

作者信息

Pikovskoi Ilya I, Ilyin Anton V, Kosyakov Dmitry S

机构信息

Laboratory of Natural Compounds Chemistry and Bioanalytics, Core Facility Center "Arktika", M.V. Lomonosov Northern (Arctic) Federal University, Northern Dvina Emb. 17, 163002, Arkhangelsk, Russia.

出版信息

Anal Bioanal Chem. 2025 Aug 23. doi: 10.1007/s00216-025-06037-1.

Abstract

Lignosulfonates (LSs), a large-scale by-product of sulfite pulping, are currently the most widely produced and utilized lignin derivative. Like other lignins, LSs are characterized by an extremely complex irregular structure, and their distinctive feature is the presence of sulfo groups in the side chains of the phenylpropane structural units. The present study, for the first time, proposes a mass spectrometric (Orbitrap) methodology for characterizing the chemical composition of LSs based on the use of negative ion mode atmospheric pressure ionization techniques and chemometric approaches to the data treatment. The LS ionization efficiency increases in the series ESI<APCI<APPI with a substantial change in the selectivity toward sulfonated or nonsulfonated species which can be detected mainly in ESI and APCI ionization modes, respectively. 1,4-Dioxane or ammonia-doped APPI-HRMS enables the reliable detection of >1000 LS oligomers of both CHO- and CHOS-classes in the widest molecular weight range (up to 1.2 kDa). For complex MS and MS/MS (broadband collision induced dissociation) data processing, the filtering methods based on a modified Kendrick mass defect analysis and van Krevelen elemental ratios visualization were introduced. These allow rapid distinguishing between typical lignin structures, sulfonated oligomers with different sulfonation and unsaturation degree, and impurity components. The developed approach was successfully tested on the both reagent-grade and real technical LS samples and can be further used to trace the processes of chemical modification of lignin in sulfite pulping and rapid characterization of LS preparations for various industrial applications.

摘要

木质素磺酸盐(LSs)是亚硫酸盐制浆的大规模副产品,是目前生产和利用最为广泛的木质素衍生物。与其他木质素一样,LSs具有极其复杂的不规则结构,其独特之处在于在苯丙烷结构单元的侧链中存在磺酸基团。本研究首次提出了一种质谱(轨道阱)方法,用于基于负离子模式大气压电离技术和化学计量学数据处理方法来表征LSs的化学成分。LS的电离效率在ESI<APCI<APPI序列中增加,对磺化或非磺化物种的选择性有显著变化,磺化物种主要在ESI电离模式下检测到,非磺化物种主要在APCI电离模式下检测到。1,4 -二氧六环或氨掺杂的APPI - HRMS能够在最宽的分子量范围(高达1.2 kDa)内可靠地检测1000多种CHO类和CHOS类的LS低聚物。对于复杂的质谱和串联质谱(宽带碰撞诱导解离)数据处理,引入了基于改进的肯德里克质量亏损分析和范克雷维伦元素比可视化的滤波方法。这些方法能够快速区分典型的木质素结构、具有不同磺化度和不饱和度的磺化低聚物以及杂质成分。所开发的方法已在试剂级和实际工业级LS样品上成功测试,并可进一步用于追踪亚硫酸盐制浆中木质素的化学改性过程以及快速表征用于各种工业应用的LS制剂。

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