GCMS
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AUTOMATING SAMPLE PREPARATION FOR THE GC ANALYSIS OF BIODIESEL USING METHOD

Postery | 2012 | Agilent TechnologiesInstrumentace
GC, Příprava vzorků
Zaměření
Průmysl a chemie
Výrobce
Agilent Technologies

Souhrn

Significance of the Topic


Automation of sample preparation streamlines biodiesel quality control by enhancing reproducibility and reducing reagent use in compliance with EU method EN14105:2011, which is vital to meet specifications for free and total glycerol and glyceride content.

Objectives and Study Overview


  • Implement an automated workflow for sample and calibration preparation using the Agilent 7696A WorkBench.
  • Adapt the EN14105:2011 manual derivatization protocol to a tenfold smaller scale suitable for 2-mL vials.
  • Validate the method performance on the Agilent 7890A GC with flame ionization detection.

Methodology and Instrumentation


Calibration standards were prepared by diluting four glycerol concentrations and one monoglyceride mix, each spiked with 1,2,3-butanetriol as internal standard. Sample derivatization employed pyridine and N-methyl-N-(trimethylsilyl)trifluoroacetamide (MSTFA), quenched with heptane after a 15-minute reaction. The Agilent 7696A WorkBench automated liquid transfers between 2-mL vials using dual 7693A injection towers, a robotic arm, vortex mixing, and heating stations. Analysis was performed on an Agilent 7890A GC with cool-on-column inlet, helium carrier gas (5 mL/min at 50 °C), and a temperature program from 50 °C to 370 °C, coupled to a flame ionization detector at 380 °C.

Main Results and Discussion


  • The automated calibration curve showed a correlation coefficient ≥ 0.99, meeting EN14105:2011 requirements.
  • Ten replicate biodiesel samples exhibited high precision: glycerol RSD 1.87%, total glycerin RSD 0.20%, and negligible variability for mono-, di-, and triglycerides.
  • Sample chromatograms demonstrated clear separation of glycerol and glyceride zones, confirming reproducible derivatization and GC performance.

Benefits and Practical Applications


  • Substantial reduction in reagent consumption and waste generation by scaling down preparation volumes tenfold.
  • Consistent compliance with regulatory criteria and improved laboratory throughput.
  • Minimized manual handling enhances safety and lowers operational costs.

Future Trends and Applications


  • Integration of automated prep platforms with laboratory information management systems for seamless data tracking.
  • Further miniaturization and adaptation to high-throughput or field-deployable formats.
  • Extension of automation workflows to other biodiesel impurities or renewable fuel matrices.

Conclusion


The Agilent 7696A WorkBench successfully automates the EN14105:2011 sample and calibration preparation for biodiesel analysis, delivering high precision, reduced waste, and reliable compliance with EU standards.

References


  • DIN EN14105:2011-07 – Fat and oil derivatives – Fatty Acid Methyl Esters (FAME) – Determination of free and total glycerol and mono-, di- and triglyceride contents, European Committee for Standardization, 2011.

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