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A versatile, refrigerant- and cryogen-free cryofocusing-thermodesorption unit for preconcentration of traces gases in air

机译:多功能,无制冷剂和无制冷剂的低温聚焦热吸附装置,用于空气中痕量气体的预浓缩

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摘要

We present a compact and versatile cryofocusing-thermodesorption unit, which we developed for quantitative analysis of halogenated trace gases in ambient air. Possible applications include aircraft-based in situ measurements, in situ monitoring and laboratory operation for the analysis of flask samples. Analytes are trapped on adsorptive material cooled by a Stirling cooler to low temperatures (e.g. 80 degrees C) and subsequently desorbed by rapid heating of the adsorptive material (e.g. +200 degrees C). The set-up involves neither the exchange of adsorption tubes nor any further condensation or refocusing steps. No moving parts are used that would require vacuum insulation. This allows for a simple and robust design. Reliable operation is ensured by the Stirling cooler, which neither contains a liquid refrigerant nor requires refilling a cryogen. At the same time, it allows for significantly lower adsorption temperatures compared to commonly used Peltier elements. We use gas chromatography-mass spectrometry (GC-MS) for separation and detection of the pre-concentrated analytes after splitless injection. A substance boiling point range of approximately 80 to +150 degrees C and a substance mixing ratio range of less than 1 ppt (pmol mol(-1)) to more than 500 ppt in preconcentrated sample volumes of 0.1 to 10 L of ambient air is covered, depending on the application and its analytical demands. We present the instrumental design of the preconcentration unit and demonstrate capabilities and performance through the examination of analyte breakthrough during adsorption, repeatability of desorption and analyte residues in blank tests. Examples of application are taken from the analysis of flask samples collected at Mace Head Atmospheric Research Station in Ireland using our laboratory GC-MS instruments and by data obtained during a research flight with our in situ aircraft instrument GhOST-MS (Gas chromatograph for the Observation of Tracers coupled with a Mass Spectrometer).
机译:我们提供了一种紧凑而通用的低温聚焦热吸附装置,该装置是我们为定量分析环境空气中的卤化痕量气体而开发的。可能的应用包括基于飞机的原位测量,原位监测和实验室操作以分析烧瓶样品。将分析物捕获在由斯特林冷却器冷却至低温(例如80摄氏度)的吸附材料上,然后通过快速加热吸附材料(例如+200摄氏度)使其解吸。设置既不涉及更换吸附管,也不涉及任何进一步的冷凝或重新聚焦步骤。没有使用需要真空绝缘的活动部件。这允许简单而坚固的设计。斯特林冷却器可确保可靠运行,该冷却器既不包含液态制冷剂,也无需重新填充制冷剂。同时,与常用的珀耳帖元件相比,它的吸附温度低得多。在不分流进样后,我们使用气相色谱-质谱(GC-MS)分离和检测预浓缩的分析物。在0.1至10 L环境空气的预浓缩样品体积中,物质沸点范围约为80至+150摄氏度,物质混合比范围小于1 ppt(pmol mol(-1))至大于500 ppt取决于应用程序及其分析要求。我们介绍了预浓缩装置的仪器设计,并通过检查吸附过程中的分析物突破,解吸的可重复性和空白测试中的分析物残留来证明其功能和性能。应用示例来自使用我们的实验室GC-MS仪器对在爱尔兰的梅斯黑德大气研究站采集的烧瓶样品进行分析,以及通过使用我们的现场飞机仪器GhOST-MS(用于观察的气相色谱仪)进行的研究飞行中获得的数据示踪剂与质谱仪结合使用)。

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