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Quality control of fuels (gasoline, diesel, kerosene)

Brochures and specifications | 2020 | MetrohmInstrumentation
NIR Spectroscopy
Industries
Energy & Chemicals
Manufacturer
Metrohm

Summary

Significance of the Topic


Quality control for gasoline, diesel and kerosene is critical to ensure safety, compliance with standards and optimal engine performance.
Conventional chemical and physical methods are accurate but involve high costs, extended analysis times and complex sample preparation.

Objectives and Study Overview


This work presents a ready-to-use near-infrared spectroscopy (NIRS) solution for rapid assessment of multiple fuel quality parameters in accordance with ASTM D6122.
The approach leverages pre-calibrations derived from extensive collections of real product spectra to streamline testing across production and distribution settings.

Methodology


NIRS measures absorbance of liquid fuel samples without reagents or sample preparation in less than 30 seconds.
Pre-calibration models cover key chemical and physical attributes simultaneously, including octane ratings, cetane index, aromatic and oxygenate content, density and flash point.

Equipment Used


  • DS2500 Liquid Near-infrared Analyzer
  • DS2500 8 mm disposable vial holder and vials
  • Vision Air software for instrument control and data management
  • Liquid wavelength standard for performance verification

Main Results and Discussion


Pre-calibrations deliver high precision (R² > 0.9 for most parameters) and reproducibility from day one.
Typical standard errors of cross-validation range from 0.45 to 7 °C for temperature parameters and below 1.5 % for compositional measurements.
Compared to reference methods, NIRS reduces analysis time by more than 15 minutes per sample and eliminates chemical waste.
The intuitive software interface offers pass/fail workflows for routine operators and full analytical control for advanced users.

Benefits and Practical Applications


  • Rapid at-line or in-lab QC without specialized training
  • Cost savings from reagent-free, non-destructive testing and minimal waste handling
  • Ability to monitor multiple parameters in a single measurement
  • Scalable solution for refineries, tank farms, distribution centers and testing laboratories

Future Trends and Potential Applications


Integration with digital quality management systems and remote monitoring platforms.
Expansion of calibration sets to include additional parameters such as acid value, moisture or blending ratios.
Use of advanced chemometric techniques and machine learning to refine prediction accuracy and extend applicability to biofuels and alternative energy carriers.

Conclusion


The NIRS pre-calibration approach offers a turnkey, efficient and environmentally friendly alternative to traditional fuel quality testing.
It empowers users with fast, reliable data and helps reduce operational costs while maintaining compliance with industry standards.

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

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