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Biogas Analyzer Based on the Agilent 990 Micro GC

Applications | 2019 | Agilent TechnologiesInstrumentation
GC
Industries
Energy & Chemicals
Manufacturer
Agilent Technologies

Summary

Significance of the Topic


Biogas is a renewable energy source produced by anaerobic digestion of organic feedstocks such as wastewater, manure, and energy crops. Precise analysis of biogas composition is essential for optimizing its calorific value, ensuring grid injection compliance, and avoiding corrosive or toxic components. Fast, reliable detection of permanent gases, hydrocarbons, and trace contaminants underpins efficient energy recovery and process control.

Study Objectives and Overview


This study introduces two configurations of the Agilent 990 Micro GC biogas analyzer: a basic version tailored for pure biogas and an extended version designed for biogas blended with hydrocarbon streams. The goal is to demonstrate rapid, accurate multi-component analysis, column longevity via backflush, and high repeatability of retention times and peak areas.

Methodology and Instrumentation


The 990 Micro GC platform employs capillary columns in separate channels with electronic pneumatic control and temperature programming. Key methodological features include:
  • Backflush functionality to protect columns from CO₂, moisture, and heavy hydrocarbons
  • Retention Time Stability (RTS) filter to maintain consistent carrier gas purity
  • Use of argon or helium as carrier gases to optimize sensitivity for hydrogen and other light gases

Instrumentation Used


  • Agilent 990 Micro GC Biogas Analyzer (basic version) with two channels: 10 m CP-Molesieve 5 Å and 10 m CP-PoraPLOT U
  • Agilent 990 Micro GC Biogas Analyzer Extended with three channels: 10 m CP-Molesieve 5 Å, 10 m CP-PoraPLOT U, and 6 m CP-Sil 5 CB
  • Carrier gases: argon for permanent gases, helium for hydrocarbons
  • Backflush times adjusted per column (10–11.8 s) and injection times of 40 ms

Main Results and Discussion


Chromatograms show rapid baseline separation of:
  • Permanent gases (He, Ne, H₂, O₂, N₂, CH₄, CO)
  • CO₂, H₂S, C₂–C₃ hydrocarbons on PoraPLOT U
  • C₃–C₉ hydrocarbons on CP-Sil 5 CB
Retention time repeatability ranged from 0.002 % to 0.027 % RSD, and peak area repeatability from 0.032 % to 2.0 % RSD. High-concentration components (CH₄, CO₂, C₂H₆) achieved area RSDs below 0.5 %. Backflush protects columns while enabling shorter cycle times and improved peak shapes for trace analytes such as H₂S.

Benefits and Practical Applications


The Agilent 990 Micro GC analyzers provide:
  • Fast analysis (<2 minutes) across a wide dynamic range
  • High precision and quantitative confidence
  • Modular channel configurations for pure biogas or blends with natural gas/LPG
  • Factory tuning and shipped checkout samples for on-site performance verification

This versatility supports biogas upgrading facilities, quality control in utility networks, and process monitoring in industrial digesters.

Future Trends and Opportunities


Advances in micro-GC technology and data analytics will drive:
  • Real-time, inline monitoring with automated feedback control
  • Integration with IoT platforms for remote diagnostics
  • Further miniaturization and lower carrier gas consumption
  • Machine learning algorithms for predictive maintenance and enhanced compound identification

Conclusion


The Agilent 990 Micro GC biogas analyzers, in both basic and extended configurations, deliver robust, fast, and accurate multi-component gas analysis. Backflush and RTS features safeguard column integrity, while factory calibration ensures consistent performance. The extended version expands analytical scope to higher hydrocarbons, meeting the needs of biogas blending applications.

References


  • Analysis of Biogas Using the Agilent 490 Micro GC Biogas Analyzer, Agilent Technologies Application Note, publication number 5990-9508EN, 2011.

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