Prediction of the plate height of capillary columns operated at any inlet pressure of the carrier gas by using few retention data measured under isobaric conditions.
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Summary
A method for the prediction of the separation by starting from few experimental data measured in isothermal and isobaric conditions decreases the time required for the optimisation of the analysis.
- Type
- article
- Published
- 2003-04-25
- Cited by
- 10
- References
- 33
- OpenAlex
- https://openalex.org/W1968468443
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:8425174
Keywords
Isobaric process, Chemistry, Inlet, Isothermal process, Chromatography
References
- Über die programmierte gaschromatographie : II. Kontinuierliche bzw kombinierte programmierung des eintrittsdruckes des trägergases unter isothermischen verhältnissen
- Gas chromatography 1964
- Gas Phase Chromatography
- Chromatographie avec programmation linéaire de la pression du gaz vecteur
- Über die programmierte gaschromatographie : I. Etappenmässige programmierung des trägergases unter isothermischen verhältnissen
- Mechanics of Fluids
- Nonlinear Least Squares Curve Fitting with Microsoft Excel Solver
- Calculation of the peak capacity in capillary gas chromatography
- Automatic prediction of retention times in multi-linear programmed temperature analyses
- Automatic prediction of retention times in programmed-pressure isothermal gas chromatography
- Experimental study of the effect of column length and pressure on the hetp in gas chromatography
- Comparison of the behaviour of gas-liquid and gas-liquid-solid capillary columns through the determination of thermodynamic characteristics
- über die programmierte Gas-Chromatographie
- Gas phase chromatography: the application of gas flow variation and backflushing.
- Large volume injection in fast gas chromatography with on-column injector
- Contribution to the theory of open-tubular (capillary) columns in gas-liquid chromatography
- Preparative Scale Chromatography with Analytical Columns
- Use of equations for the description of experimental dependence of the height equivalent to a theoretical plate on carrier gas velocity in capillary gas-liquid chromatography.
- Separation of Antibodies by Starch Zone Electrophoresis
- Pressure-programmed Gas-liquid Partition Chromatography
Cited by
- Prediction of the separation number of capillary columns in programmed temperature gas chromatographic analysis.
- Retention models for programmed gas chromatography.
- Prediction of gas chromatographic peak width in capillary columns at different temperatures, carrier gas flows, column lengths, inside diameters and carbon numbers.
- Prediction of the resolution of capillary columns in different conditions of inlet pressure and temperature.
- Prediction of theoretical plate number in isothermal gas chromatographic analysis on capillary columns.
- Prediction of retention times and efficiency in linear gradient programmed pressure analysis on capillary columns.
- A calculation method for the prediction of effective plate height in capillary gas chromatography.
- Nonsteady-state flow in gas chromatography during fast changes in inlet pressure.
- GC models for separation optimization in pressure-tuneable tandem capillary columns operated isothermally. Part 1: Theoretical aspects.
- Influence of Pressure Gradient on Column Efficiency in GC Separations
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