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采用超快速气相色谱-质谱联用技术和液体二氧化碳低温聚焦,在 90 秒内完成残留溶剂分析。

Residual solvent analysis with hyper-fast gas chromatography-mass spectrometry and a liquid carbon dioxide cryofocusing in less than 90 s.

机构信息

Institute of Nutritional and Food Sciences, University of Bonn, Friedrich-Hirzebruch Allee 5, Bonn D-53115, Germany.

Institute of Nutritional and Food Sciences, University of Bonn, Friedrich-Hirzebruch Allee 5, Bonn D-53115, Germany; HyperChrom SA, 153-155 Rue du Kiem, L-8030 Strassen, Luxembourg.

出版信息

J Chromatogr A. 2021 Jul 5;1648:462179. doi: 10.1016/j.chroma.2021.462179. Epub 2021 Apr 27.

DOI:10.1016/j.chroma.2021.462179
PMID:33992995
Abstract

A new hyper-fast gas chromatography method with less than 90 s runtime including the column cool down was developed for the analysis of four gases and 16 residual solvents, combining a CO cryofocusing with a flow-field thermal gradient gas chromatograph (FF-TG-GC) and ToF-MS. The extremely low analysis time can be achieved by combining the new FF-TG-GC and a very short Rxi-624 Sil MS separation column with a small inner diameter and small film thickness (2.05 m × 0.1 mm × 1.0 µm). The column is inserted into a low thermal mass, resistively heated stainless steel capillary. This enables fast temperature programs with heating rates up to 3000 °C/min and a column cool down within a few seconds. In addition to temporal temperature gradients, the FF-TG-GC can generate a spatial temperature gradient that leads to an improved peak shape. Further, an external liquid CO cryo-trap was designed in order to reduce the injection bandwidths of analytes and to take full advantage of the resolving power of the separation column. No modifications are required to the FF-TG-GC for the use of the cryogenic trap, as the cooled spot is heated by the resistively heated stainless steel capillary during the temperature program. With cryofocusing, analyzed residual solvents are baseline separated. R values over 0.99 for calibration curves and low relative standard deviations (mainly < 3%) for repeatability tests were obtained.

摘要

开发了一种新的超快速气相色谱法,分析时间少于 90 秒,包括柱冷却,该方法结合了 CO 冷聚焦和流场热梯度气相色谱(FF-TG-GC)和飞行时间质谱(ToF-MS),用于分析四种气体和 16 种残留溶剂。通过结合新的 FF-TG-GC 和极短的 Rxi-624 Sil MS 分离柱(内径和薄膜厚度较小,分别为 2.05 µm × 0.1 mm × 1.0 µm),可以实现极短的分析时间。该柱插入低热质量、电阻加热的不锈钢毛细管中。这使得能够进行高达 3000°C/min 的快速升温程序,并在几秒钟内完成柱冷却。除了时间温度梯度外,FF-TG-GC 还可以产生空间温度梯度,从而改善峰形。此外,设计了外部液体 CO 冷阱,以减少分析物的进样带宽,并充分利用分离柱的分辨率。由于在温度程序中,冷却点由电阻加热的不锈钢毛细管加热,因此无需对 FF-TG-GC 进行任何修改即可使用低温阱。采用冷聚焦,可实现分析残留溶剂的基线分离。校准曲线的 R 值大于 0.99,重复性测试的相对标准偏差(主要<3%)较低。

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