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利用顶空-气相色谱-离子迁移谱联用技术对单花蜜进行挥发性有机化合物分析鉴别。

Differentiation of Monofloral Honey Using Volatile Organic Compounds by HS-GCxIMS.

机构信息

Laboratory of Applied Instrumental Analytical Chemistry, Department Hamm 2, Hamm-Lippstadt University of Applied Sciences, 59063 Hamm, Germany.

G.A.S. Gesellschaft Für Analytische Sensorsysteme mbH, BioMedizinZentrum, 44227 Dortmund, Germany.

出版信息

Molecules. 2022 Nov 4;27(21):7554. doi: 10.3390/molecules27217554.

Abstract

Honey is a natural product and can be described by its botanical origin, determined by the plants from which the bees collect nectar. It significantly influences the taste of honey and is often used as a quality criterion. Unfortunately, this opens up the possibility of food fraud. Currently, various methods are used to check the authenticity of monofloral honey. The laborious, manual melissopalynology is considered an essential tool in the verification process. In this work, the volatile organic compounds obtained from the headspace of honey are used to prove their authenticity. The headspace of 58 honey samples was analyzed using a commercial easy-to-use gas chromatography-coupled ion mobility spectrometer with a headspace sampler (HS-GCxIMS). The honey samples were successfully differentiated by their six different botanical origins using specific markers with principal component analysis in combination with linear discriminant analysis. In addition, 15 honey-typical compounds were identified using measurements of reference compounds. Taking a previously published strategy, retention times of marker compounds were correlated with GC-coupled mass spectrometry (GC-MS) measurements to assist in the identification process.

摘要

蜂蜜是一种天然产物,可以根据蜜蜂采集花蜜的植物来源来描述其植物学起源。它显著影响蜂蜜的味道,通常被用作质量标准。不幸的是,这为食品欺诈打开了可能性。目前,使用各种方法来检查单花种蜂蜜的真实性。繁琐的、手动的花粉分析学被认为是验证过程中的基本工具。在这项工作中,从蜂蜜顶空部分获得的挥发性有机化合物被用来证明其真实性。使用带有顶空进样器的商用易用型气相色谱-离子迁移谱联用仪对 58 个蜂蜜样品的顶空部分进行了分析。通过主成分分析结合线性判别分析,使用特定标记物成功区分了来自六个不同植物学起源的蜂蜜样品。此外,使用参考化合物的测量值鉴定了 15 种蜂蜜典型化合物。采用先前发表的策略,将标记化合物的保留时间与气相色谱-质谱(GC-MS)测量相关联,以协助鉴定过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9af4/9658347/4dded24c7e62/molecules-27-07554-g001.jpg

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