综合二维气相色谱-质谱法在啤酒和葡萄酒VOC分析中的应用

Analytica Pub Date : 2023-08-15 DOI:10.3390/analytica4030026
Penghan Zhang, Maurizio Piergiovanni, P. Franceschi, F. Mattivi, U. Vrhovsek, S. Carlin
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引用次数: 0

摘要

为了满足消费者对多种风味发酵饮料的需求,并保证质量,重要的是表征挥发物及其与原料、微生物和发酵过程以及老化过程的关系。样品制备技术结合综合二维气相色谱(GC×GC)和质谱(MS)是鉴定和定量发酵饮料中各种挥发物的成熟技术。几篇文章讨论了GC×GC在发酵饮料挥发物测定中的应用及实验分析中面临的问题。这篇综述批判性地讨论了在发酵饮料挥发物研究的特定背景下GC×GC-MS工作流程的每个步骤,包括最常用的挥发物提取技术,GC×GC仪器设置和数据处理。讨论了新型采样技术在缩短制备时间和提高分析灵敏度方面的应用。对热和流量调制器的优缺点进行了评价,并重点介绍了使用极性-半极性配置来提高检测限的方法。报道并讨论了GC×GC参数优化的最相关的实验设计(DoE)策略以及数据处理程序。最后,对目前的技术状况和未来的观点进行了一些考虑,包括人工智能和化学计量学的关键作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of Comprehensive 2D Gas Chromatography Coupled with Mass Spectrometry in Beer and Wine VOC Analysis
To meet consumer demand for fermented beverages with a wide range of flavors, as well as for quality assurance, it is important to characterize volatiles and their relationships with raw materials, microbial and fermentation processes, and the aging process. Sample preparation techniques coupled with comprehensive 2D gas chromatography (GC×GC) and mass spectrometry (MS) are proven techniques for the identification and quantification of various volatiles in fermented beverages. A few articles discuss the application of GC×GC for the measurement of fermented beverage volatiles and the problems faced in the experimental analysis. This review critically discusses each step of GC×GC-MS workflow in the specific context of fermented beverage volatiles’ research, including the most frequently applied volatile extraction techniques, GC×GC instrument setup, and data handling. The application of novel sampling techniques to shorten preparation times and increase analytical sensitivity is discussed. The pros and cons of thermal and flow modulators are evaluated, and emphasis is given to the use of polar-semipolar configurations to enhance detection limits. The most relevant Design of Experiment (DoE) strategies for GC×GC parameter optimization as well as data processing procedures are reported and discussed. Finally, some consideration of the current state of the art and future perspective, including the crucial role of AI and chemometrics.
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CiteScore
1.80
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