Attaining Accurate Authentication
Others | 2015 | Thermo Fisher ScientificInstrumentation
Food authentication ensures the integrity of the global food supply by detecting fraud and protecting public health. As adulterators develop more sophisticated methods, high-resolution analytical tools are essential for reliable non-targeted screening and authentication.
This article evaluates the capabilities of GC-Orbitrap technology for food safety and authenticity, tracing its technological evolution, benchmarking its performance against triple-quadrupole and TOF systems, and demonstrating its application in whisky fingerprinting and pesticide analysis.
Ongoing advances in high-resolution MS are expected to further improve non-targeted screening, automated sampling, and real-time data analytics, driving innovation in food safety, QA/QC, and metabolomic research.
GC-Orbitrap technology offers a breakthrough in analytical chemistry by combining high resolution, mass accuracy, and broad dynamic range. Its demonstrated success in whisky authentication and pesticide analysis underscores its value for addressing contemporary challenges in food quality and safety.
GC/MSD, GC/MS/MS, GC/HRMS, GC/Orbitrap
IndustriesFood & Agriculture
ManufacturerThermo Fisher Scientific
Summary
Importance of the topic
Food authentication ensures the integrity of the global food supply by detecting fraud and protecting public health. As adulterators develop more sophisticated methods, high-resolution analytical tools are essential for reliable non-targeted screening and authentication.
Objectives and study overview
This article evaluates the capabilities of GC-Orbitrap technology for food safety and authenticity, tracing its technological evolution, benchmarking its performance against triple-quadrupole and TOF systems, and demonstrating its application in whisky fingerprinting and pesticide analysis.
Methodology and instrumentation
- Instrumentation: Thermo Fisher Q Exactive GC Orbitrap MS providing high-resolution accurate mass data.
- Analytical approach: Full-scan mode combined with advanced deconvolution and chemometric processing.
- Sample preparation: Ethyl acetate extraction of whisky volatiles and multi-residue pesticide extraction.
- Performance metrics: Assessment of linearity, sensitivity, and selectivity over wide dynamic ranges.
Key results and discussion
- Linearity: Achieved six to seven orders of magnitude, surpassing typical TOF linear ranges.
- Sensitivity and selectivity: Accurate mass resolution enabled automated identification of minor and major components in complex matrices.
- Whisky authentication: Development of HR-MS fingerprints allowed classification by age, origin, brand, and raw materials using statistical models.
Benefits and practical applications
- Non-targeted screening: Simultaneous detection of contaminants, natural toxins, and residues within a single run.
- Food authenticity: Robust chemometric classification based on high-resolution mass fingerprints.
- Broad applicability: Adaptable workflows for pesticide residue analysis, metabolomics, and environmental monitoring.
Future trends and potential applications
Ongoing advances in high-resolution MS are expected to further improve non-targeted screening, automated sampling, and real-time data analytics, driving innovation in food safety, QA/QC, and metabolomic research.
Conclusion
GC-Orbitrap technology offers a breakthrough in analytical chemistry by combining high resolution, mass accuracy, and broad dynamic range. Its demonstrated success in whisky authentication and pesticide analysis underscores its value for addressing contemporary challenges in food quality and safety.
References
- Hajšlová J. Effective Food Safety Control: Pesticide Residues and More within a Single Run. 1st International Symposium on Recent Developments in Pesticide Analysis.
- Proceedings of RAFA 2015: 7th International Symposium on Recent Advances in Food Analysis.
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