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发展具有集成分流方法的实用在线超临界流体萃取-超临界流体色谱/质谱系统。

Development of a practical online supercritical fluid extraction-supercritical fluid chromatography/mass spectrometry system with an integrated split-flow method.

机构信息

Department of Biotechnology, Graduate School of Engineering, Osaka University, 2-1 Yamadaoka, Suita, Osaka, 565-0871, Japan; Miyazaki Agricultural Research Institute, 5805 Shimonaka, Sadowara-cho, Miyazaki, 880-0212, Japan.

Shimadzu Corporation, 1, Nishinokyo Kuwabara-cho, Nakagyo-ku, Kyoto, 604-8511, Japan.

出版信息

J Chromatogr A. 2019 May 10;1592:161-172. doi: 10.1016/j.chroma.2019.01.044. Epub 2019 Jan 19.

Abstract

Herein, we describe a practical online supercritical fluid extraction-supercritical fluid chromatography/mass spectrometry (SFE-SFC/MS) system with an integrated split-flow method and a pre-column trap method that is well suited for the continuous extraction and separation of a wide range of compounds, including hydrophilic ones. Although an SFE-SFC system with a splitting method is already commercially available, in this study, we added some new features to this system: 1) a splitting method that further reduces the amount of extractant introduced into SFC, 2) a trap column, connected before the analytical column, with a different separation mechanism than the analytical column in the system with the splitting method, and 3) a system for calculating the recovery rate of SFE during online SFE-SFC/MS. In the above setup, part of the analyzed extract is introduced into the separation section at a higher split ratio owing to the make-up pump flow rate, thus reducing the distortion of the target analyte peak shape caused by the use of a strong extractant. Furthermore, the separation efficiency is improved by the use of an additional pre-column capable of interacting with compounds weakly retained on the analytical column. Finally, we show that equalization of the SFE and autosampler injection conditions allows evaluation of the recovery rate of SFE during online SFE-SFC/MS.

摘要

在此,我们描述了一种实用的在线超临界流体萃取-超临界流体色谱/质谱(SFE-SFC/MS)系统,该系统采用集成分流方法和预柱捕集方法,非常适合于连续提取和分离广泛的化合物,包括亲水性化合物。虽然已经有带有分流方法的 SFE-SFC 系统商业化,但在本研究中,我们为该系统添加了一些新功能:1)进一步减少引入 SFC 的萃取剂的分流方法,2)在带有分流方法的系统中,在分析柱之前连接的具有与分析柱不同分离机制的捕集柱,和 3)用于计算在线 SFE-SFC/MS 过程中 SFE 回收率的系统。在上述设置中,由于 泵流率,部分分析提取物以较高的分流比引入分离部分,从而减少了强萃取剂使用引起的目标分析物峰形失真。此外,通过使用能够与分析柱上弱保留的化合物相互作用的附加预柱,提高了分离效率。最后,我们表明 SFE 和自动进样器进样条件的均衡允许在线 SFE-SFC/MS 过程中评估 SFE 的回收率。

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