## Abstract In comprehensive 2D gas chromatography, the entire sample is simultaneously subjected to analysis on two capillary columns. By using a suitable modulation interface between the primary and secondary columns, hundreds of fast, second‐dimension chromatograms are produced. The data from th
Extended characterization of a vacuum gas oil by offline LC-high-temperature comprehensive two-dimensional gas chromatography
✍ Scribed by Thomas Dutriez; Marion Courtiade; Didier Thiébaut; Hugues Dulot; Fabrice Bertoncini; Marie-Claire Hennion
- Publisher
- John Wiley and Sons
- Year
- 2010
- Tongue
- English
- Weight
- 501 KB
- Volume
- 33
- Category
- Article
- ISSN
- 1615-9306
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✦ Synopsis
Abstract
In a context of environmental preservation, purification and conversion of heavy petroleum cuts into high‐quality fuel becomes essential. The interest for the characterization of those very complex matrices becomes a trendy analytical challenge, when it comes to get molecular information for the optimization of industrial processes. Among new analytical techniques, high‐temperature 2‐D GC has recently proved its applicability to heavy petroleum matrices, but lacks in selectivity to separate all chemical groups. To gain resolution, heart cutting is demonstrated for LC separation of saturated, aromatic and polar compounds prior to high‐temperature 2‐D GC. Therefore, an extended global resolution was obtained, especially by a better distinction of saturated compounds. This includes iso‐paraffins and biomarker polynaphthenic structures, which are impossible to quantify with MS methods. This new way to analyze heavy petroleum fractions gives innovative opportunities for the construction of global weight distributions by carbon atoms number and by chemical families. This can right now be employed for quantitative analysis of heavy petroleum fractions and for studying conversion processes.
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