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Frontier Lab SINGLE-SHOT PYROLYZER PY-3030 S

Brochures and specifications |  | Frontier LabInstrumentation
Pyrolysis
Industries
Manufacturer
Frontier Lab

Summary

Importance of the Topic


The analysis of polymeric and composite samples by pyrolysis gas chromatography (Py-GC) fills a critical gap in materials characterization, allowing direct study of insoluble, high-molecular-weight, or heterogeneous samples without chemical pretreatment. The Single-Shot Pyrolyzer PY-3030 S offers a streamlined flash pyrolysis approach that delivers detailed chemical profiles of complex materials, enabling quality control, research, and failure analysis across polymer science, environmental forensics, and biomedical fields.

Objectives and Study Overview


This summary reviews the design enhancements and analytical performance of the PY-3030 S. Key aims include raising reproducibility of pyrolysis profiles, expanding sample compatibility, simplifying operation, and integrating automation options for high-throughput workflows. Comparative improvements over previous models and demonstration of data quality in polymer and natural product analyses are highlighted.

Methodology


Samples are loaded into disposable Eco-cups at room temperature, then dropped into a vertically oriented micro furnace set between 40 and 800 °C. Flash pyrolysis at precisely controlled temperatures produces volatile fragments introduced directly into a GC separation column. Detectors such as mass spectrometry (MS) or flame ionization (FID) capture chromatograms for compound identification and quantitation. A fully deactivated flow path and heat-sink adapter minimize cold spots and adsorption, preserving high-boiling analytes.

Used Instrumentation


  • Single-Shot Pyrolyzer PY-3030 S with vertical micro furnace
  • Eco-cup sample holders and Eco-sticks
  • Ultra ALLOY® deactivated capillary GC column
  • GC/MS or GC/FID systems with split/splitless injector
  • Optional Auto-Shot Sampler for 48-sample automation
  • Optional accessories: Carrier Gas Selector, MicroJet Cryo-Trap, Micro UV Irradiator

Main Results and Discussion


The PY-3030 S achieved under 2 % RSD in peak area ratios for polystyrene pyrolysates at 550 °C, demonstrating excellent reproducibility. High-boiling species up to C100 were consistently detected thanks to minimized cold spots. Analyses of polyethylene and natural samples like propolis illustrated comprehensive profiling of monomers, oligomers, aromatics, phenols, flavonoids, and fatty acid esters. Automation with the Auto-Shot Sampler reduced analysis time for 48 samples from one week to two days while improving data consistency.

Benefits and Practical Applications


  • Direct analysis of solid polymers, composites, and biological matrices without solvents.
  • High reproducibility and sensitivity for low-level species.
  • Flexible sampling modes (liquid, micro-reaction, thermal desorption, UV irradiation).
  • Labor and cost savings through autosampling and unattended operation.
  • Rapid unknown identification using library search software.

Future Trends and Applications


Advances may include tighter integration with robotic samplers, real-time data interpretation via AI, expansion of on-line reaction monitoring, and miniaturized pyrolysis modules for field use. Coupling with high-resolution MS and multidimensional GC will further enhance molecular insights in polymer degradation, environmental microplastics, and complex natural products.

Conclusion


The PY-3030 S Single-Shot Pyrolyzer represents a robust, versatile platform for polymer and complex sample analysis, combining precise thermal control, broad sample compatibility, and automation for high-throughput, reproducible data. Its design innovations address key analytical challenges and open new opportunities in research and quality control.

References


  • Watanabe, Anal. Sci., 27 (2011) 1087–1090.

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