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Enhanced Quantitation and Reporting Features for ASTM D5769 Using ChromaTOF®

Posters | 2018 | LECOInstrumentation
GC/MSD, GC/TOF
Industries
Energy & Chemicals
Manufacturer
Agilent Technologies, LECO

Summary

Significance of the Topic


Accurate quantitation of benzene, toluene and total aromatics in gasoline is critical for meeting environmental regulations, ensuring consumer safety and maintaining fuel quality. The ASTM D5769 standard outlines rigorous criteria for sensitivity, linearity and ion ratio checks. Implementing these requirements efficiently enhances laboratory throughput and data confidence.

Objectives and Study Overview


This work demonstrates how LECO’s ChromaTOF software integrated with the Pegasus BT GC-TOFMS platform streamlines ASTM D5769 compliance. Key goals include:
  • Introducing advanced quantitation types for wide dynamic range
  • Automating deconvolution and ion ratio verification
  • Customizing reporting templates to suit varied user requirements

Methodology and Instrumentation


Analyses were performed following ASTM D5769 guidelines, with enhancements in data processing and report generation. Major elements include:
  • Gas chromatograph: Agilent 7890 with Agilent 7693 liquid autosampler, 0.1 µL split injection (1 200:1) at 260 °C
  • Column: Rxi-1ms, 30 m × 0.25 mm i.d. × 1.00 µm film; oven program from 55 °C to 220 °C with temperature ramps
  • Carrier gas: Helium at 1.0 mL/min constant flow
  • Mass spectrometer: LECO Pegasus BT GC-TOFMS; mass range 35–550 m/z, acquisition rate 10 spectra/s, ion source at 250 °C
  • Data processing: ChromaTOF software for peak deconvolution, ion ratio checks, multi-standard calibration and automated quality control (QC) screening

Key Results and Discussion


Experimental data comfortably exceeded method requirements. Highlights include:
  • Signal-to-noise ratio above 100 for 0.01 mass % 1,4-diethylbenzene versus minimum requirement of 5
  • Deconvoluted spectra matching ion ratio specifications with observed intensities well within method limits
  • Calibration curves for 21 aromatics showing linearity (R² values ≥ 0.9998)
  • User-defined QC workspaces enabling rapid verification of system readiness and injection reproducibility

Benefits and Practical Applications


By integrating hardware control, data reduction and reporting, the combined GC-TOFMS/ChromaTOF solution delivers:
  • Streamlined workflows with minimal manual intervention
  • Fully customizable report layouts, corporate branding and user-defined filters
  • Automated internal standard management for each sample
  • Rapid turnaround for QA/QC laboratories and production environments

Future Trends and Potential Applications


The approach demonstrated here paves the way for broader advancements such as:
  • Integration with laboratory information management systems (LIMS) for seamless data exchange
  • Expansion to multi-residue and multi-matrix analyses using TOFMS deconvolution capabilities
  • Application of machine learning for automated anomaly detection and data review
  • Cloud-based reporting portals to facilitate remote access and collaboration

Conclusion


The LECO Pegasus BT GC-TOFMS combined with ChromaTOF software significantly enhances the quantitation and reporting features required by ASTM D5769. The system delivers robust sensitivity, excellent linearity and flexible, fully automated reporting—boosting laboratory productivity and ensuring regulatory compliance.

Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.

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