Blood Alcohol Determination with the New Teledyne Tekmar Versa Headspace Instrument
Applications | 2011 | Teledyne LABSInstrumentation
Blood alcohol determination is a critical assay in forensic and toxicology laboratories to support legal cases and ensure public safety. Static headspace analysis coupled with gas chromatography and flame ionization detection offers reliable quantitation of volatile analytes in biological samples.
This study evaluated the performance of the new Teledyne Tekmar Versa headspace instrument for measuring methanol, acetaldehyde, ethanol, isopropanol, acetone and n-propanol (internal standard) in blood alcohol testing. The goal was to assess precision, linearity and suitability for occasional forensic use.
Advances in automation, multiplexed sampling and integration with mass spectrometric detection are expected to broaden the analytical scope and increase throughput. Emerging applications may include volatile biomarker profiling and expanded toxicology panels.
The Teledyne Tekmar Versa headspace instrument delivers robust precision, excellent linearity and effective separation for blood alcohol determination, offering an economical alternative for forensic and toxicology laboratories performing occasional analyses.
GC, HeadSpace
IndustriesForensics
ManufacturerShimadzu, Teledyne LABS
Summary
Significance of the Topic
Blood alcohol determination is a critical assay in forensic and toxicology laboratories to support legal cases and ensure public safety. Static headspace analysis coupled with gas chromatography and flame ionization detection offers reliable quantitation of volatile analytes in biological samples.
Study Aims and Overview
This study evaluated the performance of the new Teledyne Tekmar Versa headspace instrument for measuring methanol, acetaldehyde, ethanol, isopropanol, acetone and n-propanol (internal standard) in blood alcohol testing. The goal was to assess precision, linearity and suitability for occasional forensic use.
Methodology and Used Instrumentation
- Headspace system
Instrument: Teledyne Tekmar Versa
Key parameters: oven 70 C, transfer line 75 C, sample oven 65 C, equilibration 10 min, inject time 0.5 min, total cycle time 11 min. - Gas chromatography and detection
Instrument: Shimadzu GC-2010 with flame ionization detector
Column: Phenomenex Zebron ZB-BAC-1, 30 m × 0.53 mm × 3 μm, isothermal at 40 C for 10 min, split ratio 5:1, carrier helium. - Sample preparation
Internal standard solution: 620 μL n-propanol in 1 L 20 g/L NaCl solution. Accuracy and linearity standards prepared by spiking known volumes of pure solvents into water to yield concentrations from 0.002 to 0.546 g/dL in a seven point calibration series.
Main Results and Discussion
- Precision: Seven replicate accuracy standards yielded relative standard deviation less than 3 percent for all analytes using both external and internal standard methods.
- Linearity: Calibration curves over 0.002 to 0.33 g/dL ethanol and similar ranges for other solvents produced correlation coefficients r2 greater than 0.998 by both calculation methods.
- Separation: All six volatiles were baseline resolved within an 11 min analysis cycle, demonstrating efficient chromatographic performance.
Benefits and Practical Applications
- Cost effective headspace solution for laboratories with intermittent blood alcohol testing needs.
- Simple static headspace procedure reduces carryover and simplifies sample handling.
- Compact design and straightforward operation enhance laboratory workflow and support QA/QC requirements.
Future Trends and Applications
Advances in automation, multiplexed sampling and integration with mass spectrometric detection are expected to broaden the analytical scope and increase throughput. Emerging applications may include volatile biomarker profiling and expanded toxicology panels.
Conclusion
The Teledyne Tekmar Versa headspace instrument delivers robust precision, excellent linearity and effective separation for blood alcohol determination, offering an economical alternative for forensic and toxicology laboratories performing occasional analyses.
Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.
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