LECO Solutions for Food Analysis
Brochures and specifications | 2022 | LECOInstrumentation
Recent concerns over contamination and mislabeling of food products have heightened the demand for reliable methods to verify food safety and quality. Rapid and accurate compositional testing supports regulatory compliance, consumer confidence, and process optimization across dairy, meat, cereal, poultry, beer, and wine industries.
This document presents a range of analytical solutions designed to accelerate and simplify routine and specialized food analyses. It outlines instrumentation capable of elemental analysis, thermogravimetric moisture and ash determination, and advanced gas chromatography–time-of-flight mass spectrometry (GC-TOFMS), aimed at meeting standardized methods and boosting laboratory productivity.
The covered analytical methods include:
Standardized protocols (AOAC, ASTM, ISO, AACC, ASBC) ensure method compliance and comparability of results.
Combustion elemental analyzers deliver rapid protein and nitrogen quantification in under three minutes for small samples and under five minutes for macro samples, with low operating costs. Thermogravimetric systems streamline moisture and ash determination through automated drying and endpoint detection, reducing manual handling and improving precision. GC-TOFMS platforms provide comprehensive chemical profiling, with high sensitivity for trace-level compounds, robust deconvolution software, and options for 2D separation to resolve complex mixtures in food matrices.
Integration of cryogen-free modulation, improved ion source maintenance, and faster data processing will continue to enhance throughput and reduce operational overhead. Machine learning algorithms applied to high-resolution mass spectral libraries promise automated identification of novel contaminants and quality markers. Expanded connectivity and remote monitoring will support real-time decision making in production and supply chain environments.
The suite of analytical instruments presented offers versatile, standardized, and automated solutions for comprehensive food quality and safety testing. By combining rapid elemental analysis, robust thermogravimetric methods, and cutting-edge GC-TOFMS technologies, laboratories can achieve reliable results, streamline workflows, and adapt to emerging challenges in food analytics.
GCxGC, GC/MSD, GC/HRMS, GC/TOF
IndustriesFood & Agriculture
ManufacturerLECO
Summary
Significance of Food Analysis
Recent concerns over contamination and mislabeling of food products have heightened the demand for reliable methods to verify food safety and quality. Rapid and accurate compositional testing supports regulatory compliance, consumer confidence, and process optimization across dairy, meat, cereal, poultry, beer, and wine industries.
Objectives and Overview
This document presents a range of analytical solutions designed to accelerate and simplify routine and specialized food analyses. It outlines instrumentation capable of elemental analysis, thermogravimetric moisture and ash determination, and advanced gas chromatography–time-of-flight mass spectrometry (GC-TOFMS), aimed at meeting standardized methods and boosting laboratory productivity.
Methodology
The covered analytical methods include:
- Elemental (Nitrogen/Protein and Carbon/Nitrogen) combustion analysis in dual-stage furnaces with pure oxygen.
- Thermogravimetric determination of moisture, ash, and volatile content via automated loss-on-drying techniques.
- One- and two-dimensional GC-TOFMS for separation and identification of complex organic compounds.
Standardized protocols (AOAC, ASTM, ISO, AACC, ASBC) ensure method compliance and comparability of results.
Used Instrumentation
- FP828 Nitrogen/Protein Elemental Analyzer – dual-stage furnace to 1050 °C, automated sample loading.
- 928 Series Macro Elemental Analyzer – handles sample masses up to 3 g with touchscreen control.
- TGM800 Thermogravimetric Moisture Determinator – automated moisture testing up to 16 samples.
- TGA801 Moisture/Ash/Volatile Matter Analyser – batch analysis up to 19 samples with automatic endpoint recognition.
- PEGASUS BT GC-TOFMS – benchtop unit with StayClean® ion source and full-scan high-sensitivity detection.
- PEGASUS BT 4D GC×GC-TOFMS – adds thermal modulation for enhanced separation without cryogens.
- PEGASUS GC-HRT High-Resolution TOFMS – Folded Flight Path for mass resolution up to 50 000 and sub-ppm accuracy.
- PEGASUS GC-HRT 4D – combines GC×GC with high-resolution mass spectrometry for complex sample characterization.
- QuadJet™ SD GC×GC – two-dimensional GC with FID for non-MS detection and superior chromatographic power.
Main Results and Discussion
Combustion elemental analyzers deliver rapid protein and nitrogen quantification in under three minutes for small samples and under five minutes for macro samples, with low operating costs. Thermogravimetric systems streamline moisture and ash determination through automated drying and endpoint detection, reducing manual handling and improving precision. GC-TOFMS platforms provide comprehensive chemical profiling, with high sensitivity for trace-level compounds, robust deconvolution software, and options for 2D separation to resolve complex mixtures in food matrices.
Benefits and Practical Applications
- High throughput with automated loaders maximizes sample capacity and reduces labor.
- Compliance with international standard methods ensures acceptance in regulatory and quality control labs.
- Low reagent consumption and extended consumable lifetimes lower per-sample costs.
- Advanced GC×GC and high-resolution MS enable the detection and identification of contaminants, adulterants, and flavor compounds at trace levels.
Future Trends and Applications
Integration of cryogen-free modulation, improved ion source maintenance, and faster data processing will continue to enhance throughput and reduce operational overhead. Machine learning algorithms applied to high-resolution mass spectral libraries promise automated identification of novel contaminants and quality markers. Expanded connectivity and remote monitoring will support real-time decision making in production and supply chain environments.
Conclusion
The suite of analytical instruments presented offers versatile, standardized, and automated solutions for comprehensive food quality and safety testing. By combining rapid elemental analysis, robust thermogravimetric methods, and cutting-edge GC-TOFMS technologies, laboratories can achieve reliable results, streamline workflows, and adapt to emerging challenges in food analytics.
Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.
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