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Design and Evaluation of Online/offline Interface Based on Double Loop for Two-dimensional Chromatography / 分析化学
Chinese Journal of Analytical Chemistry ; (12): 311-316, 2018.
Article in Chinese | WPRIM | ID: wpr-692251
ABSTRACT
By using a double loop technique based on a set of mechanical transmission components and a flow path system,a double function of injection and fraction collection was realized. On the basis of double loop technique,a novel type of online/offline interface for two-dimensional liquid chromatography was designed to construct an efficient separation system coupling two different separation modes with a higher peak capacity, and the functions of the interface were evaluated. By means of connecting the interface to an HPLC system, the multiple functions of injection, fraction collection and injection again were fulfilled for preparation and purity analysis of 4 kinds of aromatic compounds. As for combination of 2 sets of HPLC system,5 kinds of protein samples were separated preliminarily by strong cation exchange chromatography, and the components difficult to separate were collected and injected into reversed phase chromatographic system for further separation. Furthermore, the interface was applied to coupling two chromatographic systems in both strong cation exchange mode and microcolumn reversed-phase mode for the two-dimensional separation of bovine serum albumin enzymatic digest. When 1 mAU was set as the integral threshold,a total number of 292 peaks were identified. With the help of the online/offline interface, the preparation of microscale samples, fine separation of hardly separated samples and two-dimensional separation of complex samples were achieved flexibly. The result indicated that the system was a potent tool for the construction of two-dimensional chromatographic system and separation research.

Full text: Available Index: WPRIM (Western Pacific) Language: Chinese Journal: Chinese Journal of Analytical Chemistry Year: 2018 Type: Article

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Full text: Available Index: WPRIM (Western Pacific) Language: Chinese Journal: Chinese Journal of Analytical Chemistry Year: 2018 Type: Article