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Battling Fuel-Washing: Identification and Quantification of Accutrace S10 in Diesel Samples Using a New Benchtop GC-TOFMS System

Posters | 2016 | LECOInstrumentation
GC/MSD, GC/TOF
Industries
Energy & Chemicals
Manufacturer
Agilent Technologies, LECO

Summary

Significance of the Topic


Government subsidized diesel fuels are marked with dyes to prevent misallocation and fraud. Diesel theft through removal of these dyes, known as fuel-washing, poses significant economic and regulatory challenges. Accutrace S10 is a robust fuel marker designed to resist removal while remaining detectable at trace levels, enabling authorities to enforce subsidy regulations.

Objectives and Study Overview


This study evaluates a rapid and sensitive analytical method for detecting and quantifying Accutrace S10 in diesel samples. By using a new benchtop Pegasus BT GC-TOFMS system coupled with advanced data processing, the aim is to achieve low part-per-billion detection limits, a wide dynamic range, and minimal sample preparation within a 15-minute run time.

Methodology


Commercial diesel samples were spiked with Accutrace S10 standards from 10 to 2500 ppb. Samples underwent full mass range acquisition using Pegasus BT GC-TOFMS. Data processing involved Automated Peak Find with NonTarget Deconvolution to locate the marker in complex matrices, followed by Target Analyte Find focusing on m/z 315 for rapid quantitation.

Used Instrumentation


  • Gas chromatograph Agilent 7890 with 7693 liquid autosampler
  • Injection: 1 uL pulsed splitless at 250°C
  • Carrier gas: Helium at constant flow 1.4 mL/min
  • Column: Rxi-5ms (15 m x 0.25 mm x 0.25 µm)
  • Oven program: 50°C hold 1.5 min, ramp to 320°C at 34°C/min, hold 4 min
  • Transfer line and ion source at 250°C
  • Mass spectrometer: LECO Pegasus BT GC-TOFMS, 35–650 m/z, 10 spectra/s

Main Results and Discussion


  • The GC-TOFMS method detected Accutrace S10 at concentrations as low as 10 ppb in diesel, with signal-to-noise greater than 10.
  • Linear calibration was achieved from 10 to 2500 ppb with correlation coefficient above 0.999.
  • Analysis time was under 15 minutes without additional sample cleanup or separation steps.
  • Detection sensitivity surpassed the HMRC requirement of 25 ppb by a factor of 2.5.

Benefits and Practical Applications


  • The rapid workflow supports high-throughput screening of fuel samples for regulatory and forensic investigations.
  • Minimal sample preparation reduces operational complexity and cost.
  • High sensitivity enables detection of low levels of subsidy marker even after extensive dilution.

Future Trends and Possibilities for Use


Implementation of benchtop high-resolution GC-TOFMS instruments may expand to field-deployable platforms. Future developments could include multi-marker assays, real-time data analysis, and integration with portable MS for onsite fuel verification. Broader adoption could benefit agricultural, retail, and customs authorities worldwide.

Conclusion


The Pegasus BT GC-TOFMS combined with advanced deconvolution and target analysis provides a fast, robust, and highly sensitive method for quantifying Accutrace S10 in diesel. This approach enhances the capabilities of regulatory bodies to combat fuel-washing and ensure compliance.

Reference


  • Christina N Kelly; David E Alonso; Jonathan D Byer; Lorne M Fell; Joseph E Binkley. Battling Fuel-Washing: Identification and Quantification of Accutrace S10 in Diesel Samples Using a New Benchtop GC-TOFMS System, LECO Corporation.

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