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Analysis of blood alcohol concentration with an Agilent Intuvo 9000 GC system

Applications | 2018 | Agilent TechnologiesInstrumentation
GC, HeadSpace
Industries
Forensics
Manufacturer
Agilent Technologies

Summary

Significance of the topic


Blood alcohol concentration (BAC) determination is critical for legal, clinical and forensic applications. Accurate ethanol quantification in blood informs intoxication levels and supports regulatory compliance, safety protocols, and quality control in analytical laboratories.

Objectives and Overview


This study evaluates a streamlined workflow for BAC analysis using the Agilent Intuvo 9000 gas chromatograph coupled with a 7697A headspace sampler. The aim is to achieve reliable identification, quantitation, and confirmation of ethanol and related volatiles in a single run by leveraging a modular flow path and dual-column split sampling.

Methodology and Used Instrumentation


  • Gas chromatograph: Agilent Intuvo 9000 with inlet splitter flow chip enabling a 1:1 flow split to two columns
  • Headspace sampler: Agilent 7697A with 20 mL vial capacity and controlled equilibration at 70 °C
  • Columns: Two capillary columns (DB-BAC1 UI and DB-BAC2 UI, 30 m × 320 µm, film thicknesses 1.8 µm and 1.2 µm)
  • Detectors: Dual flame ionization detectors (FID), heated to 250 °C, with hydrogen, air, and nitrogen makeup gases
  • Calibration: Ethanol standards from 10 to 800 mg/dL prepared in water with internal standards (methanol, acetone, isopropanol)
  • Sampling: Headspace vials loaded with blood-based controls and checkout mixes, equilibrated 7 minutes, injected for 0.5 minutes

Main Results and Discussion


  • Linearity: Calibration curves for ethanol, methanol, acetone, and isopropanol showed correlation coefficients (R²) ≥ 0.9995 on both columns.
  • Split Precision: Post-inlet splitting yielded a slope difference of only 6.3% between channels, confirming equal distribution of analytes.
  • Repeatability: Area precision (RSD) for an 80 mg/dL ethanol standard was ≤ 4.1%, and retention time precision was ≤ 0.10% across analytes.
  • Accuracy: Calculated concentrations for control standards remained within ±6% of target values, meeting typical forensic acceptance criteria.
  • Resolution: Dual-column analysis demonstrated clear separation of target analytes, including baseline resolution of internal standards t-butanol and n-propanol.

Benefits and Practical Applications


  • Single-run analysis: Combines identification, quantitation, and confirmation without instrument reconfiguration.
  • Workflow efficiency: Eliminates manual restrictor preparation, reducing setup time and potential errors.
  • High throughput: Robust headspace sampling and fast equilibration support routine clinical and forensic testing.
  • Compact design: Reduced footprint and user-friendly interface with touchscreen controls streamline laboratory operations.

Future Trends and Opportunities


Anticipated advancements include integration of automated sample preparation, enhanced data analytics for real-time QA/QC monitoring, and application of the modular flow path to other volatile compound analyses. Further miniaturization and connectivity to laboratory information management systems (LIMS) will support remote monitoring and high-throughput screening.

Conclusion


The Agilent Intuvo 9000 GC system with headspace sampling and inlet splitter technology delivers precise, accurate, and efficient BAC analysis. Its modular architecture simplifies dual-column workflows, ensuring high confidence in forensic and clinical measurements while reducing instrument complexity and operational costs.

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