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Shimadzu System GC Solutions Guide for the Hydrocarbon Processing Industry

Guides | 2017 | ShimadzuInstrumentation
GC
Industries
Energy & Chemicals
Manufacturer
Shimadzu

Summary

Importance of the Topic


The hydrocarbon processing industry depends on precise gas analysis to maintain product quality, ensure safe operations, and meet regulatory requirements. Gas chromatography remains a cornerstone technique for characterizing a wide range of gas samples, from natural and refinery gases to trace contaminants and greenhouse emissions.

Study Objectives and Overview


This guide profiles Shimadzu’s System GC Solutions tailored for hydrocarbon processing. It outlines configurations for standard methods and highlights modular flexibility to address applications such as natural gas composition, refinery gas monitoring, LPG quality control, trace gas detection, reformulated fuel analysis, simulated distillation, and transformer oil diagnostics.

Methodology and Instrumentation Used


Shimadzu’s solutions utilize the Nexis GC-2030 platform with options for dual ovens, multiple injection modes, and a variety of detectors (TCD, FID, ECD, BID, flame photometric, and methanizer-enhanced FID). Key features include an advanced flow controller for stable carrier gas delivery, pre-configured factory testing, and compliance with industry standards (ASTM, ISO, GPA, UOP).
  • Carrier gases: helium, hydrogen (with built-in leak detection sensor)
  • Injection modes: split/splitless, packed, programmable temperature vaporization
  • Detectors: thermal conductivity, flame ionization, barrier discharge ionization, electron capture, flame photometric, methanizer FID
  • Control and data processing: dedicated calculation software for BTU, specific gravity, octane ratings, and simulated distillation boiling point distributions

Main Results and Discussion


Shimadzu systems demonstrate high reproducibility (RSD <0.3% for retention time and peak area), rapid analysis cycles (5–30 minutes depending on application), and sub-ppm detection limits for trace components. Custom configurations enable simultaneous multi-component separation from permanent gases and light hydrocarbons to sulfur compounds and low-level greenhouse emissions.

Benefits and Practical Applications


These GC solutions streamline on-site installation, reduce method development time, and deliver reliable data for process control, custody transfer, environmental compliance, and preventive maintenance in petrochemical and utility sectors.

Future Trends and Potential Applications


Advancements in detectors (e.g., barrier discharge ionization) and flow controllers will further accelerate analysis speed and sensitivity. Integration with digitized plant management systems and AI-driven data analytics is expected to enhance predictive maintenance and process optimization.

Conclusion


Shimadzu’s System GC Solutions offer a comprehensive, scalable suite of gas chromatography analyzers that meet stringent industry standards across hydrocarbon processing. Their versatility and high performance support rigorous quality control and regulatory compliance.

Instrumentation Used


  • Shimadzu Nexis GC-2030 gas chromatograph
  • Advanced flow controller (AFC-2030)
  • Detectors: FID-2030, TCD-2030, BID-2030, ECD-2010, FPD-2030, methanizer FID
  • Injection modules: OCI-PTV, split/splitless, packed sample valves
  • Software: LabSolutions for simulated distillation, BTU/specific gravity calculators, Envantage Dragon DHA for detailed hydrocarbon analysis

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