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准停流调制策略在全二维气相色谱中的应用。

Quasi-Stop-Flow Modulation Strategy for Comprehensive Two-Dimensional Gas Chromatography.

机构信息

J&X Technologies, 1599 Jungong Road, Yangpu District, 200433, Shanghai, China.

Dow Chemical Canada ULC, Highway 15, Fort Saskatchewan, Alberta T8L 2P4, Canada.

出版信息

Anal Chem. 2020 May 5;92(9):6251-6256. doi: 10.1021/acs.analchem.0c00814. Epub 2020 Apr 23.

DOI:10.1021/acs.analchem.0c00814
PMID:32281369
Abstract

An easy-to-implement strategy of differential flow modulation for comprehensive two-dimensional gas chromatography was innovated. With this approach, an independent auxiliary pneumatic control device for flow modulation was not a prerequisite. The strategy involved splitting the carrier gas stream into two separate streams before reaching the inlet embodiment. One stream was employed as a mobile phase for chromatographic separation. The other stream, for flow modulation, was routed to one of the ports of a three-way solenoid valve. The modulation stream flowed onward to a fluidic path and a T-junction that joined the primary and secondary dimension columns. With this arrangement and depending on the configuration of the three-port valve, the analytical platform can be operated in three different modes: bypass stop-flow, vent stop-flow, and quasi-stop flow. Quasi-stop-flow mode was demonstrated to have a significantly better chromatographic performance, as demonstrated in various types of real-life petroleum samples such as gasoline and light cycle oil. In the light cycle oil sample, a respectable separation between compound classes was achieved with peak width at half height of 34 ms or less for alkanes on a second dimension with polyethylene glycol stationary phase. Excellent repeatability was shown with normal alkanes standards of C-C. Relative standard deviations for retention times are almost zero in D, less than 0.2% in D, and less than 3.5% for peak areas ( = 9).

摘要

创新了一种易于实施的二维气相色谱差分流调策略。该方法不需要独立的辅助气动流量调制装置。该策略涉及在进入进样口之前将载气流分为两股独立的流股。一股作为色谱分离的流动相,另一股用于流量调制的流股则通向三通电磁阀的一个端口。调制流股继续进入流路和 T 型接头,连接主柱和次柱。根据三通阀的配置,分析平台可以在三种不同模式下运行:旁路停流、放空停流和准停流。准停流模式被证明具有更好的色谱性能,在各种实际的石油样品(如汽油和轻循环油)中得到了验证。在轻循环油样品中,在聚乙二醇固定相的第二维上,烷烃的峰宽半高值达到 34ms 或更窄,实现了化合物类之间的良好分离。正构烷烃标准品的保留时间重复性良好,D 中的相对标准偏差几乎为零,D 中小于 0.2%,峰面积(=9)小于 3.5%。

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