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直接注射质谱技术在葡萄、葡萄酒和其他酒精饮料分析中的应用进展。

Advances in the Application of Direct Injection Mass Spectrometry Techniques to the Analysis of Grape, Wine and Other Alcoholic Beverages.

机构信息

Research and Innovation Centre, Edmund Mach Foundation, Via Edmund Mach, 1, 38010 San Michele all'Adige, Italy.

Institute of Sciences of Food Production, National Research Council (CNR) of Italy, c/o CS-DAT, 71122 Foggia, Italy.

出版信息

Molecules. 2023 Nov 17;28(22):7642. doi: 10.3390/molecules28227642.

Abstract

Direct injection mass spectrometry (DIMS) entails the direct introduction of a gaseous sample into a mass analyser without prior treatment or separation. DIMS techniques offer the opportunity to monitor processes in time, with limits of detection as low as 0.5 parts per trillion in volume (for a 1 s measurement time) while providing results with high informational content. This review provides insight into current and promising future developments of DIMS in the analysis of grape, wine and other alcoholic beverages. Thanks to its unique characteristics, DIMS allows the online monitoring of volatile organic compounds (VOCs) released by grapes during fermentative bioprocesses or by wine directly from the glass headspace or during drinking. A DIMS-based approach can also be adopted to perform quality control and high-throughput analysis, allowing us to characterise the volatile profile of large sample sets rapidly and in a comprehensive fashion. Furthermore, DIMS presents several characteristic elements of green analytical chemistry approaches, catalysing an interest linked to the development of sustainable paths in research and development activities in the field of viticulture and oenology.

摘要

直接进样质谱(DIMS)涉及将气态样品直接引入质谱仪,而无需事先进行处理或分离。DIMS 技术提供了实时监测过程的机会,其检测限低至每万亿分之 0.5(对于 1 秒测量时间),同时提供具有高信息量的结果。本文综述了 DIMS 在葡萄、葡萄酒和其他酒精饮料分析中的当前和有前途的未来发展。由于其独特的特点,DIMS 允许在线监测发酵生物过程中葡萄释放的挥发性有机化合物(VOCs),或者直接从酒杯顶空或饮酒过程中监测葡萄酒中的 VOCs。还可以采用基于 DIMS 的方法进行质量控制和高通量分析,使我们能够快速全面地描述大样本集的挥发性特征。此外,DIMS 呈现出绿色分析化学方法的几个特征元素,这激发了人们对葡萄栽培和酿酒学领域研究与开发活动中可持续发展路径的兴趣。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2477/10675140/06728c5b69fc/molecules-28-07642-g001a.jpg

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