LC-GC System MOSH/MOAH

Brochures and specifications | 2017 | Axel SemrauInstrumentation
GC, Sample Preparation, HPLC
Industries
Food & Agriculture
Manufacturer
Axel Semrau

Summary

Importance of the Topic


The migration of mineral oil hydrocarbons into food products, particularly from packaging materials containing printing inks or recycled fibers, poses significant health and regulatory concerns. Detection of saturated (MOSH) and aromatic (MOAH) hydrocarbons is crucial for food safety compliance and consumer protection.

Objectives and Study Overview


This application note describes the development and performance of an integrated LC-GC system designed to quantify MOSH and MOAH in foodstuffs. The aim is to achieve high throughput, reproducibility, sensitivity, and automation to support routine analysis in quality control laboratories.

Methodology and Instrumentation Used


The method is based on direct coupling of liquid chromatography (LC) with gas chromatography (GC) to separate and detect MOSH and MOAH fractions:
  • LC pump with UV detector and degasser (e.g. Agilent 1260, Knauer Azura, Shimadzu LC 20)
  • Autosampler and robotic interface (CTC PAL3 with CHRONOS software)
  • GC system with dual flame ionization detectors (e.g. Agilent 7890B or Shimadzu GC 2010)
  • CHRONECT LC-GC coupling module
  • Automated epoxidation module (inline or offline) for MOAH reactivity checks

Main Results and Discussion


The LC-GC system demonstrated:
  • Detection limits down to 0.6 mg/kg for MOSH
  • Linear response across typical concentration ranges
  • Reproducible retention times comparable to split/splitless GC injections
  • Simultaneous acquisition of UV, MOSH-FID, and MOAH-FID signals
  • Significant reduction in manual handling and contamination risk

Benefits and Practical Applications


The integrated LC-GC platform offers:
  • High sample throughput through parallel MOSH/MOAH detection
  • Enhanced automation and reduced solvent consumption
  • Robust data quality with minimal cross-contamination
  • Flexibility to expand to related hydrocarbon analyses

Future Trends and Potential Applications


Ongoing developments may include:
  • Enhanced automation for epoxidation and sample preparation workflows
  • Integration with advanced data analysis and traceability software
  • Application of LC-GC coupling to broader contaminant classes, such as pesticides or environmental pollutants
  • Miniaturized or field-deployable LC-GC systems for on-site screening

Conclusion


The LC-GC coupling system for MOSH/MOAH analysis provides a comprehensive solution for food safety laboratories, combining sensitivity, reproducibility, and automation to meet regulatory demands efficiently.

References


No formal references provided in the source document.

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