Blood Alcohol Determination with Teledyne Tekmar HT3™ Automated Static/Dynamic Headspace Analyzer
Aplikace | 2011 | Teledyne LABSInstrumentace
Monitoring blood alcohol levels in biological fluids via headspace gas chromatography is essential in forensic and clinical settings to support legal and medical decisions.
This application note outlines optimized parameters for the Teledyne Tekmar HT3 Automated Static/Dynamic Headspace Analyzer coupled to an Agilent 6890 GC dual flame ionization system to quantify volatile blood analytes including ethanol, acetaldehyde, acetone, methanol and isopropanol using n-propanol as internal standard.
The workflow utilizes automated static headspace extraction with key parameters such as platen temperature 70C, sample equilibration 10 minutes, loop fill pressure 5 psig, and injection via a transfer line at 200C. Chromatographic separation employs Zebron ZB-BAC-1 (30m x 0.53mm, 3µm) for quantitation and Zebron ZB-BAC-2 (30m x 0.53mm, 2µm) for confirmation, with a constant column flow of 12 mL/min. The GC oven is held at 40C and both FIDs operate at 250C with hydrogen and air flows of 35 mL/min and 300 mL/min respectively. Standards ranging from 0.002 to 0.32 g/dL ethanol equivalents were prepared in a 0.015% n-propanol/0.5M ammonium sulfate matrix.
Chromatograms on both columns demonstrated sharp, well resolved peaks. Linear calibration curves yielded correlation coefficients above 0.999 for methanol, acetone and isopropanol, and 0.998 for acetaldehyde. Precision at the 0.008 g/dL ethanol level showed relative standard deviations below 3.8% across analytes and below 1% for ethanol. Total analysis time per sample was under 3 minutes.
This method facilitates rapid, high throughput blood alcohol testing with robust linearity and reproducibility. Dual column confirmation enhances result reliability for forensic toxicology, clinical diagnostics and quality control laboratories while automated handling improves safety and reduces hands-on time.
Emerging directions include integration of headspace modules with mass spectrometric detection for higher specificity, microfluidic and vacuum assisted extraction to shorten equilibration times, expanded panels for additional volatile biomarkers, and seamless connectivity with laboratory information management systems.
The Teledyne Tekmar HT3 Automated Static/Dynamic Headspace Analyzer combined with Zebron ZB-BAC capillary columns offers a rapid, precise and highly linear approach for blood alcohol determination over a broad concentration range, supporting confident forensic and clinical decision making.
Roger Bardsley Application Note Blood Alcohol Determination with Teledyne Tekmar HT3 Automated Static Dynamic Headspace Analyzer Teledyne Tekmar 2011
GC, HeadSpace
ZaměřeníForenzní analýza a toxikologie
VýrobceAgilent Technologies, Teledyne LABS
Souhrn
Importance of Topic
Monitoring blood alcohol levels in biological fluids via headspace gas chromatography is essential in forensic and clinical settings to support legal and medical decisions.
Objectives and Study Overview
This application note outlines optimized parameters for the Teledyne Tekmar HT3 Automated Static/Dynamic Headspace Analyzer coupled to an Agilent 6890 GC dual flame ionization system to quantify volatile blood analytes including ethanol, acetaldehyde, acetone, methanol and isopropanol using n-propanol as internal standard.
Methodology and Instrumentation
The workflow utilizes automated static headspace extraction with key parameters such as platen temperature 70C, sample equilibration 10 minutes, loop fill pressure 5 psig, and injection via a transfer line at 200C. Chromatographic separation employs Zebron ZB-BAC-1 (30m x 0.53mm, 3µm) for quantitation and Zebron ZB-BAC-2 (30m x 0.53mm, 2µm) for confirmation, with a constant column flow of 12 mL/min. The GC oven is held at 40C and both FIDs operate at 250C with hydrogen and air flows of 35 mL/min and 300 mL/min respectively. Standards ranging from 0.002 to 0.32 g/dL ethanol equivalents were prepared in a 0.015% n-propanol/0.5M ammonium sulfate matrix.
Results and Discussion
Chromatograms on both columns demonstrated sharp, well resolved peaks. Linear calibration curves yielded correlation coefficients above 0.999 for methanol, acetone and isopropanol, and 0.998 for acetaldehyde. Precision at the 0.008 g/dL ethanol level showed relative standard deviations below 3.8% across analytes and below 1% for ethanol. Total analysis time per sample was under 3 minutes.
Benefits and Practical Applications
This method facilitates rapid, high throughput blood alcohol testing with robust linearity and reproducibility. Dual column confirmation enhances result reliability for forensic toxicology, clinical diagnostics and quality control laboratories while automated handling improves safety and reduces hands-on time.
Future Trends and Applications
Emerging directions include integration of headspace modules with mass spectrometric detection for higher specificity, microfluidic and vacuum assisted extraction to shorten equilibration times, expanded panels for additional volatile biomarkers, and seamless connectivity with laboratory information management systems.
Conclusion
The Teledyne Tekmar HT3 Automated Static/Dynamic Headspace Analyzer combined with Zebron ZB-BAC capillary columns offers a rapid, precise and highly linear approach for blood alcohol determination over a broad concentration range, supporting confident forensic and clinical decision making.
Reference
Roger Bardsley Application Note Blood Alcohol Determination with Teledyne Tekmar HT3 Automated Static Dynamic Headspace Analyzer Teledyne Tekmar 2011
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