Automated sample cleanup using on‐line coupling of size exclusion chromatography to high resolution gas chromatography
- 1 June 1994
- journal article
- research article
- Published by Wiley in Journal of High Resolution Chromatography
- Vol. 17 (6) , 411-414
- https://doi.org/10.1002/jhrc.1240170607
Abstract
A fully automated on‐line sample cleanup system based on the coupling of size exclusion chromatography to high resolution gas chromatography is described. The transfer technique employed is based on fully concurrent solvent evaporation using a loop‐type interface, early vapor exit and co‐solvent trapping. Optimization of the LC‐GC transfer was done visually via an all‐glass oven door. To circumvent the problem of mixing within the injection loop, an adaptation was made to the standard loop‐type interface. The determination of a series of additives in a polymer matrix is presented as one example of the vast range of applications opened up by this technique.Keywords
This publication has 6 references indexed in Scilit:
- Mixing in the sample loop of the loop‐type interface in coupled LC‐GCJournal of High Resolution Chromatography, 1992
- Introduction of water and water-containing solvent mixtures in capillary gas chromatography : IV. Principles of concurrent solvent evaporation with co-solvent trappingJournal of Chromatography A, 1989
- Concurrent eluent evaporation with co-solvent trapping for on-line reversed-phase liquid chromatography gas chromatographyJournal of Chromatography A, 1989
- Co‐solvent effects for preventing broadening or loss of early eluted peaks when using concurrent solvent evaporation in capillary GC. Part 2: n‐Heptane in n‐pentane as an exampleJournal of High Resolution Chromatography, 1988
- Co-solvent effects for preventing broadening or loss of early eluted peaks when using concurrent solvent evaporation in capillary GC. Part 1: Concept of the techniqueJournal of High Resolution Chromatography, 1988
- Interaction of radial and axial dispersion in liquid chromatography in relation to the “infinite diameter effect”Journal of Chromatography A, 1976