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一种适用于热不稳定挥发性化合物的热解吸分析技术。

A Technique for Thermal Desorption Analyses Suitable for Thermally-Labile, Volatile Compounds.

作者信息

Alborn Hans T

机构信息

Center for Medical Agricultural and Veterinary Entomology, Agricultural Research Service, US Department of Agriculture, Gainesville, FL, 32608, USA.

出版信息

J Chem Ecol. 2018 Feb;44(2):103-110. doi: 10.1007/s10886-018-0924-6. Epub 2018 Jan 23.

Abstract

Many plant and insect interactions are governed by odors released by the plants or insects and there exists a continual need for new or improved methods to collect and identify these odors. Our group has for some time studied below-ground, plant-produced volatile signals affecting nematode and insect behavior. The research requires repeated sampling of volatiles of intact plant/soil systems in the laboratory as well as the field with the help of probes to minimize unwanted effects on the systems we are studying. After evaluating solid adsorbent filters with solvent extraction or solid phase micro extraction fiber sample collection, we found dynamic sampling of small air volumes on Tenax TA filters followed by thermal desorption sample introduction to be the most suitable analytical technique for our applications. Here we present the development and evaluation of a low-cost and relatively simple thermal desorption technique where a cold trap cooled with liquid carbon dioxide is added as an integral part of a splitless injector. Temperature gradient-based focusing and low thermal mass minimizes aerosol formation and eliminates the need for flash heating, resulting in low sample degradation comparable to solvent-based on-column injections. Additionally, since the presence of the cold trap does not affect normal splitless injections, on-the-fly switching between splitless and thermal desorption modes can be used for external standard quantification.

摘要

许多植物与昆虫之间的相互作用受植物或昆虫释放的气味所支配,因此一直需要新的或改进的方法来收集和识别这些气味。我们团队研究地下植物产生的挥发性信号影响线虫和昆虫行为已有一段时间。这项研究需要在实验室和野外借助探针反复采集完整植物/土壤系统的挥发物,以尽量减少对我们所研究系统产生的不必要影响。在评估了采用溶剂萃取或固相微萃取纤维进行样品采集的固体吸附剂过滤器后,我们发现,在Tenax TA过滤器上对小体积空气进行动态采样,然后采用热脱附进样,是最适合我们应用的分析技术。在此,我们介绍一种低成本且相对简单的热脱附技术的开发与评估情况,该技术在不分流进样器中加入了用液态二氧化碳冷却的冷阱作为其组成部分。基于温度梯度的聚焦和低热质量可最大限度减少气溶胶的形成,无需闪蒸加热,与基于溶剂的柱上进样相比,样品降解程度较低。此外,由于冷阱的存在不影响正常的不分流进样,因此可以在不分流模式和热脱附模式之间即时切换,用于外标定量分析。

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