Headspace GC — What is the primary purpose of headspace analysis in gas chromatography?
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AAnalyse volatile compounds released from solid or liquid samples
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BDetermine the psychological state of the tutor
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CAnalyse the column contents ahead of the injected sample zone
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DDetermine non-volatile, high-boiling compounds directly
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EMeasure only dissolved gases in neat solvents with no matrix
Answer
Correct Answer: Analyse volatile compounds released from solid or liquid samples
Explanation
Introduction / Context:Headspace sampling is a widely used GC technique for matrices that contain volatile analytes but are themselves complex or non-injectable (e.g., solids, viscous liquids, biological fluids). Understanding what headspace measures is essential for correct sample prep and calibration.
Given Data / Assumptions:
- The analyte of interest must partition into the gas phase above the sample (the headspace).
- Non-volatile matrix components are left behind and do not enter the column.
- Automated static or dynamic (purge-and-trap) headspace systems are common.
Concept / Approach:Headspace analysis quantifies volatile or semi-volatile compounds that equilibrate between the sample and the gas phase in a sealed vial at controlled temperature. An aliquot of the headspace gas is introduced to the GC, minimizing matrix effects and protecting the column from non-volatile contaminants.
Step-by-Step Solution:
Place sample in sealed vial; heat/agitate to reach equilibrium.Volatile analytes partition into the headspace gas.Sample the headspace and inject into GC.Separate and detect volatiles; non-volatiles remain in the vial.Verification / Alternative check:EPA and pharmacopoeial methods specify headspace GC for residual solvents and VOCs, demonstrating suitability for volatile analytes from diverse matrices.
Why Other Options Are Wrong:
- Psychological state: not analytical chemistry.
- Column contents ahead of the sample: unrelated concept.
- Non-volatiles cannot be assayed directly by headspace.
- Headspace is not restricted to neat solvents; matrices are diverse.
Common Pitfalls:Expecting headspace to capture non-volatiles; those require derivatization or liquid injection techniques.
Final Answer:Analyse volatile compounds released from solid or liquid samples.