Retention models for programmed gas chromatography.
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Summary
The models proposed by many authors for the prediction of retention times and temperatures, peak widths, retention indices and separation numbers in programmed temperature and pressure gas chromatography by starting from preliminary measurements of the retention in isothermal and isobaric conditions are reviewed.
- Type
- review
- Published
- 2009-03-06
- Cited by
- 53
- References
- 278
- OpenAlex
- https://openalex.org/W2015609382
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:22374510
Keywords
Isobaric process, Chemistry, Isothermal process, Chromatography, Gas chromatography
References
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- Programmed temperature gas chromatography
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- Contribution to linearly programmed temperature gas chromatography. Further application of the Van den Dool-Kratz equation, and a new utilization of the Sadtler retention index library.
- The use of a nonlinear equation for calculation of the retention indices of polar substances in gas chromatography with linear temperature programming
- A FORTRAN program for automatic calculation of retention indices in gas chromatography
- Gas chromatography 1964
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- High-Performance Liquid Chromatography: Advances and Perspectives
- Prediction of the separation in gas chromatography : Application to the Analysis of Mixtures with Mixed Stationary Phases and Temperature Programming
- Analytical Gas Chromatography
- Mass spectral and GC data of drugs, poisons, pesticides, pollutants and their metabolites: Part 3 mass spectra (m/z222 to 777 amu).
- Calculation of programmed temperature gas chromatography characteristics from isothermal data : II. Predicted retention times and elution temperatures
Cited by
- Optimizing the relationship between chromatographic efficiency and retention times in temperature-programmed gas chromatography.
- Fast and accurate numerical method for predicting gas chromatography retention time.
- Derivatization of pinacolyl alcohol with phenyldimethylchlorosilane for enhanced detection by gas chromatography–mass spectrometry
- The olfaction of a fire beetle leads to new concepts for early fire warning systems
- Metrics of separation performance in chromatography: Part 2. Separation performance of a heating ramp in temperature-programmed gas chromatography.
- GC-MS Analysis of Volatile Constituents of Cornus mas Fruits and Pulp
- Storage-induced emissions from different wood species
- New advances in separation science for metabolomics: resolving chemical diversity in a post-genomic era.
- Study of the gas chromatographic behavior of selected alcohols and amines
- Rapid Temperature-Programmed Separation and Retention Prediction on a Novel Packed-Capillary Column in Gas Chromatography
- A study on retention "projection" as a supplementary means for compound identification by liquid chromatography-mass spectrometry capable of predicting retention with different gradients, flow rates, and instruments.
- Easy and Accurate Calculation of Programmed Temperature Gas Chromatographic Retention Times by Back-Calculation of Temperature and Hold-up Time Profiles
- Prediction of retention times in temperature programmed gas chromatography using the retention equation derived from crystallization behavior of polymer.
- Decaying Mouse Volatiles Perceived by Calliphora vicina Rob.‐Desv.
- Multi-Platform Metabolomic Analyses of Ergosterol-Induced Dynamic Changes in Nicotiana tabacum Cells
- iMatch: A retention index tool for analysis of gas chromatography-mass spectrometry data
- Influence of Pressure Gradient on Column Efficiency in GC Separations
- Phenomenon of dual- and single-retention behaviors of solutes and its validation by computational simulation in linear programmed temperature gas chromatography.
- Novel Injection Techniques to Enable Fast, High Peak Capacity Gas Chromatography Separations
- Retention modeling and retention time prediction in gas chromatography and flow-modulation comprehensive two-dimensional gas chromatography: The contribution of pressure on solute partition.
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