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ICP-MS : The Ultimate GC Detector

Posters | 2010 | Agilent TechnologiesInstrumentation
GC, ICP/MS, Speciation analysis
Industries
Manufacturer
Agilent Technologies

Summary

Importance of the Topic


Gas chromatography coupled with inductively coupled plasma mass spectrometry (GC-ICP-MS) offers universal, element-specific detection that addresses key analytical challenges in environmental monitoring, food safety and industrial quality control.

Objectives and Study Overview


This work evaluates the performance of GC-ICP-MS for three applications: speciation of organo-tin compounds, profiling of polybrominated diphenyl ether (PBDE) flame retardants, and sulfur analysis in diesel fuel samples.

Methodology


A conventional Agilent 7890A gas chromatograph was connected to an Agilent 7700x ICP-MS via a heated, inert passivated Sulfinert transfer line and specialized torch injector. Optimized GC parameters, including split/splitless injection, temperature ramp programs and column selection (HP-5, DB-5MS), were tailored to each analyte class.

Used Instrumentation


  • Agilent 7890A gas chromatograph
  • Agilent 7700x ICP-MS
  • Heated Sulfinert® interface kit with inert transfer line
  • Chromatographic columns: HP-5 (30 m × 0.32 mm × 0.25 µm), DB-5MS (5 m × 0.25 mm × 0.25 µm)
  • Monitored isotopes: Sn (m/z 118, 120), Br (m/z 79, 81), S (typical m/z for sulfur analysis)

Key Results and Discussion


Organo-tin speciation was achieved in under 12 minutes with detection limits down to 5.9 ppt for tributyl tin. All 14 PBDE congeners, including the thermally labile decaBDE, were baseline-separated and detected at limits around 150 ppt. Low-sulfur diesel sample analysis demonstrated precise sulfur quantification in compliance with regulatory standards.

Benefits and Practical Applications


GC-ICP-MS provides multi-elemental and isotopic information with sub-ppt sensitivity and broad dynamic range. The approach is well suited for trace contaminant analysis in environmental matrices, food and consumer products, and quality control in petrochemical industries.

Future Trends and Potential Applications


  • Integration with multidimensional GC and automated sample preparation
  • Real-time monitoring of volatile species in process streams
  • Advanced interface designs for higher temperature and improved inertness
  • Data analytics combining elemental and molecular detection for comprehensive speciation

Conclusion


The coupling of GC to ICP-MS represents a versatile, highly sensitive platform for element-specific chromatography, extending analytical capabilities for diverse speciation and trace analysis challenges across multiple industries.

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