Total optimization of the separation of C1—C3 chlorohydrocarbons by gas—liquid chromatography
Author:
Publisher
Elsevier BV
Subject
Organic Chemistry,General Medicine,Biochemistry,Analytical Chemistry
Reference18 articles.
1. Solution and complexing studies. I. Gas-liquid chromatographic investigation of supposed complexing systems
2. Solution and complexing studies. II. Comparison and correlation of nuclear magnetic resonance and gas-liquid chromatographic data
3. Solution and complexing studies. III. Further evidence for a microscopic partitioning theory of solution
4. Solution and Complexing Studies. VI. Extension of Microscopic Partition Theory to Include Nonstoichiometric Complexation and Solvent Effects, and the Correlation of GLC, Uv, and NMR data
5. Criteria for the use of mixed solvents in gas—liquid chromatography
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3. Column Selectivity Programming and Fast Temperature Programming for High-Speed GC Analysis of Purgeable Organic Compounds;Analytical Chemistry;1998-10-28
4. Optimum Separation and Compound Class Separation of the Metabolites of Benzo[a]pyrene-DNA Adducts with Reversed-Phase Liquid Chromatography;Journal of Liquid Chromatography;1994-09
5. Chapter 9 Gas chromatography;Journal of Chromatography Library;1992
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