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Advanced Gas Chromatography
Objectives

 

  • Apply those fundamentals to develop, improve and troubleshoot GC analyses
  • Be able to develop GC methods from scratch
  • Learn specialized techniques based on your specific interests

Outlines

 

1.History

2. GC analyses

3.  Physical components

3.1 Auto samplers

3.2 Inlets

3.3 Columns

3.4 Detectors

4.  Methods

4.1 Carrier gas selection and flow rates

4.2 Inlet types and flow rates

4.3 Sample size and injection technique

4.3.1 Sample injection

4.4 Column selection

4.5 Column temperature and temperature program

5.  Data reduction and analysis

6.  Applications

7.  GCs in popular culture

8. Chromatography

1. Explanation

2. History

3. Chromatography terms

4. Techniques by chromatographic bed shape

4.1 Column chromatography

4.2 Planar Chromatography

4.2.1 Paper Chromatography

4.2.2 Thin layer chromatography

5. Techniques by physical state of mobile phase

5.1 Gas chromatography

5.2 Liquid chromatography

6. Affinity chromatography

6.1 Supercritical fluid chromatography

7. Techniques by separation mechanism

7.1 Ion exchange chromatography

7.2 Size exclusion chromatography

8. Special techniques

8.1 Reversed-phase chromatography

8.2 Two-dimensional chromatography

8.3 Simulated Moving-Bed Chromatography

8.4 Pyrolysis gas chromatography

8.5 Fast protein liquid chromatography

8.6 Countercurrent chromatography

9. Case study:

Hydrocarbon Traces in Purging Nitrogen (By Chromatography)

10. Gas - Liquid Chromatography Maintenance

8.7 Chiral chromatography

Who Should Attend

This course is designed for  intermediate and advanced level practitioners in gas chromatography who want to understand how GC works. The lectures provide the fundamentals needed to understand the technique and instrumentation involved in this powerful analytical tool.

Duration

5 Days

Start Date End Date Country City

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