首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Development and performance evaluation of a novel dynamic headspace vacuum transfer 'In Trap' extraction method for volatile compounds and comparison with headspace solid-phase microextraction and headspace in-tube extraction
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Development and performance evaluation of a novel dynamic headspace vacuum transfer 'In Trap' extraction method for volatile compounds and comparison with headspace solid-phase microextraction and headspace in-tube extraction

机译:一种新型动态顶空真空转移“陷阱”挥发性化合物的开发和性能评价及顶空固相微萃取和顶空萃取的比较

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摘要

Headspace in-tube extraction (HS-ITEX) and solid phase microextraction (HS-SPME) sampling, followed by gas chromatography-mass spectrometry (GC-MS), are widely used to analyze volatile compounds in various food matrices. While the extraction efficiency of volatile compounds from foodstuffs is crucial for obtaining relevant results, these efficiency of these extraction methods limited by their long extraction times and requirements for large sample quantity. This study reports on the development and application of a new extraction technique based on HS-ITEX hardware, which improves the extraction rate and capacity by operating under reduced pressure, called Dynamic Headspace Vacuum Transfer In-Trap Extraction (DHS-VTT). The results of the study indicate that DHS-VTT improves the extraction of the target compounds. The area of the mass spectrometer signal for each compound can be up to 450 times more intense than the HS-SPME and HS-ITEX techniques performed in the same experimental conditions of extraction temperature and time. DHS-VTT runs in automated mode, making it possible to work with smaller sample quantity and also favors the HS extraction of all volatile compounds. In addition, the necessary modifications to the installation were cheap and the life of an ITEX trap is up to 10 times longer than an SPME fibre. (C) 2019 The Authors. Published by Elsevier B.V.
机译:顶空管萃取(HS-ITEX)和固相微萃取(HS-SPME)取样,其次是气相色谱 - 质谱(GC-MS),广泛用于分析各种食物基质中的挥发性化合物。虽然来自食品的挥发性化合物的提取效率对于获得相关结果至关重要,但这些提取方法的这些效率受到它们的长萃取时间和大样本量的要求。本研究报告了基于HS-ITEX硬件的新提取技术的开发和应用,通过减压操作提高了提取率和容量,称为动态顶空真空转移陷阱萃取(DHS-VTT)。该研究的结果表明DHS-VTT改善了靶化合物的提取。每个化合物的质谱仪信号的区域可以比在提取温度和时间的相同实验条件下进行的HS-SPME和HS-SPME和HS-ITEX技术更强烈的450倍。 DHS-VTT以自动化模式运行,使得可以使用较小的样品数量,并且还有利于所有挥发性化合物的HS提取。此外,对安装的必要修改是便宜的,ITEX陷阱的寿命高达SPME纤维的10倍。 (c)2019年作者。由elsevier b.v出版。

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