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Thermo Scientific Natural Gas Analyzers

Brochures and specifications | 2016 | Thermo Fisher ScientificInstrumentation
GC
Industries
Energy & Chemicals
Manufacturer
Thermo Fisher Scientific

Summary

Significance of the Topic



Natural gas and natural gas liquid (NGL) analysis plays a pivotal role in energy trading, quality assurance, and regulatory compliance. Accurate determination of heating value (BTU), detailed hydrocarbon composition, and trace impurities such as sulfur and oxygen/nitrogen fractions directly influences commercial transactions, process control, and safety in production and distribution.

Objectives and Study Overview



This application note reviews the range of Thermo Scientific natural gas analyzers designed to meet standardized methods (GPA 2261, 2177, 2186, 2286; ASTM D1945, D1946; DIN 51872-5; ISO 6974). Covering over twenty ready-to-install models, the study highlights single-, dual-, and multi-channel systems for gas and liquid sampling, including super combination units for simultaneous natural gas and NGL analysis under multiple test protocols.

Methodology and Instrumentation



Analyses are based on advanced gas chromatography (GC) using the TRACE 1300 Series platform with “Instant Connect” modular injectors and detectors for rapid configuration changes. Sample separation is achieved through early C6+/C7+ backflush or extended hydrocarbon channels, complemented by optional O2/N2 and He/H2 modules. Valve management is provided via compact and auxiliary heated rotary valve ovens, supporting up to eight valves at temperatures up to 350 °C. Standard analyzers arrive factory-tested to method requirements.

Main Results and Discussion



Thermo Scientific systems demonstrate:
  • Consistent separation of light gases (C1–C5), extended alkanes (C6+), and NGL components.
  • Effective O2/N2 and H2/He separation in super combination units.
  • Rapid module swapping in under two minutes, minimizing instrument downtime.
  • High throughput via dual- and four-sample channels, increasing laboratory productivity.

Benefits and Practical Applications



The described analyzers offer:
  • High accuracy and reproducibility for contractual and process control assays.
  • Robust design for continuous, high-sample-load environments.
  • Flexible configurations—from single-channel entry-level units to fully equipped super combination systems.
  • Customizable solutions tailored to unique analytical requirements, supported by comprehensive documentation.

Future Trends and Opportunities



Emerging directions include integration of automated calibration routines, remote diagnostics, and data analytics to enhance uptime and traceability. Miniaturized or field-deployable GC modules, improved detector technologies for trace impurity quantification, and AI-driven method optimization promise next-generation gas analysis with faster turnaround and deeper process insights.

Conclusion



Thermo Scientific natural gas and NGL analyzers provide versatile, method-compliant solutions to deliver reliable compositional data and heating value determinations. Their modular GC architecture, combined with multi-channel capabilities, addresses the evolving demands of laboratories and process facilities seeking high throughput, minimal downtime, and method flexibility.

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