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Analysis of Biogas Using the Agilent 490 Micro GC Biogas Analyze

Applications | 2011 | Agilent TechnologiesInstrumentation
GC
Industries
Energy & Chemicals
Manufacturer
Agilent Technologies

Summary

Significance of the Topic

Biogas is gaining momentum as a renewable energy source derived from anaerobic digestion of organic waste streams. Accurate and rapid characterization of its composition is critical for optimizing fuel quality, ensuring safe removal of contaminants such as hydrogen sulfide, and facilitating blending or upgrading for vehicle fuel or power generation.

Objectives and Study Overview

This application note evaluates the performance of the Agilent 490 Micro GC Biogas Analyzer in two configurations: a dual-channel system for routine biogas containing methane, carbon dioxide, permanent gases and H₂S, and an extended quad-channel version for mixtures with higher hydrocarbons (e.g., natural gas or LPG). The study examines retention stability, repeatability, and practical sampling considerations.

Methodology and Instrumentation

  • Dual-channel (pure biogas): 10 m CP-Molsieve 5A column (Ar carrier) for permanent gases/H₂; 10 m CP-PoraPLOT U column (He carrier) for CO₂ and H₂S.
  • Quad-channel (extended): additional 6 m CP-Sil 5 CB column (He carrier) for C₃–C₇ hydrocarbons.
  • All channels employ heated sample lines/injectors (110 °C) and backflush options to prevent moisture or CO₂ build-up and maintain column longevity.
  • Sampling via pressurized inlet (≤1 bar), Tedlar bag with internal pump, continuous flow mode, or heated pressure reducer (MicroGasifier) for >1 bar samples.

Instrumentation Used

  • Agilent 490 Micro GC Biogas Analyzer (p/n G3582A#110).
  • Agilent 490 Micro GC Biogas Analyzer Extended (p/n G3582A#111).
  • Columns: CP-Molsieve 5A, CP-PoraPLOT U, CP-Sil 5 CB.
  • Carrier gases: Argon (200 kPa) on Molsieve; Helium (150 kPa) on PoraPLOT U and Sil 5 CB.

Main Results and Discussion

Repeatability on the CP-Molsieve 5A channel showed RSD <0.05 % for retention times and <0.1 % for peak areas across H₂, O₂, N₂, CH₄, CO. The CP-PoraPLOT U channel delivered RSD <0.02 % for retention times and <0.15 % for peak areas of CO₂, H₂S, C₂H₆, C₃H₈. In the extended mode, the CP-Sil 5 CB channel separated C₄–C₇ hydrocarbons with retention time RSD ≈0.05 % and area RSD <0.2 %. Backflush strategies effectively remove moisture, CO₂, and high-boiling components, preserving chromatographic performance and detector sensitivity.

Benefits and Practical Applications

  • Rapid, on-site compositional analysis for process control in biogas plants.
  • Quality assurance before upgrading, blending, or vehicle fueling.
  • Minimal maintenance due to heated sample paths and active backflush.
  • Factory-tuned system with built-in methods and check-out sample kit for streamlined deployment.

Future Trends and Potential Applications

Ongoing developments in micro-GC may include enhanced detector sensitivity for trace species (e.g., siloxanes), automated calibration routines, and integration with IoT platforms for real-time plant monitoring. Expanded column chemistries could enable simultaneous analysis of volatile organic compounds in digestate off-gas.

Conclusion

The Agilent 490 Micro GC Biogas Analyzer, in its standard and extended configurations, demonstrates excellent repeatability, retention stability, and practical features for robust biogas analysis. It supports both routine and advanced applications, aiding operators in maximizing fuel quality and process efficiency.

Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.

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