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ASTM D6584 Determination of Free and Total Glycerol, mono-, di,- tri-glycerides in FAME with AC Biodiesel All in One Solution

Applications | 2012 | PACInstrumentation
GC
Industries
Energy & Chemicals
Manufacturer
PAC

Summary

Importance of the topic


The accurate determination of free and total glycerol as well as mono-, di- and tri-glycerides in biodiesel is critical for both quality control and regulatory compliance. ASTM D6584 defines the standard approach to verify the removal of glycerol by-products during transesterification. Ensuring low levels of these compounds protects engine components from deposits, improves combustion efficiency and meets international fuel specifications.

Study objectives and overview


This application note demonstrates the performance of a complete gas chromatography solution for ASTM D6584-10a compliance. The main goal is to offer a single system that handles sample derivatization, separation and quantification of glycerol and glycerides in FAME without manual column changes. It also integrates dedicated software and quality control materials for streamlined reporting.

Methodology and instrumentation


Samples are derivatized with MSTFA and introduced via a temperature programmable inlet (TPI). The analytes are separated on a 15 m × 0.32 mm PDMS-1 capillary column under a multi-step oven temperature program. Detection is carried out by flame ionization (FID). Calibration employs two internal standards (butanetriol for glycerol, tricaprin for glycerides) and four reference-level mixtures of monoolein, diolein and triolein at increasing concentrations. Key instrumental parameters include a 1 µl injection, constant carrier flow at 3 ml/min and detector temperature at 380 °C.

Key results and discussion


Mid-level calibration showed excellent linearity across all analytes (R² > 0.995). Glycerol appears as a single well-resolved peak, while glycerides elute in distinct time windows. A rapeseed oil sample example confirms accurate quantification of free and bound glycerol. Total glycerol is calculated by summing free glycerol and converted glycerides using established conversion factors. Dedicated report templates flag results in or out of specification for rapid decision making.

Benefits and practical applications


  • Fully compliant with ASTM D6584-10a and compatible with EN 14103, EN 14105, EN 14110, prEN 16300 and EN 15779.
  • Dual programmable oven design eliminates the need for column switches between methods.
  • Pre-prepared calibration materials and built-in reporting simplify method adoption in QC laboratories.
  • High throughput potential with minimal downtime and consistent analytical performance.

Future trends and opportunities


Advances may include further automation of sample derivatization, integration with online sampling systems and expansion to alternative biodiesel feedstocks such as algae or waste oils. Improvements in rapid data processing and AI-driven quality assessment are expected to enhance laboratory efficiency and traceability.

Conclusion


The all-in-one GC-FID solution meets all ASTM D6584 requirements for glycerol and glyceride analysis in biodiesel. Its flexibility across multiple biodiesel methods, combined with user-friendly software and QC materials, makes it an ideal choice for analytical laboratories aiming for fast adoption and reliable compliance.

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