Flue Gas Analysis System
The flue gas analysis system continuously monitors gas concentrations (including CO, CO₂, and O₂) in process gases generated during converter steelmaking. Featuring a dust-proof cabinet design, the system comprises three integrated components: the sample gas pretreatment (filtration) unit, central control unit, and analytical instrumentation unit.
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  • Product Details

The whole system is composed of sampling probe, heating pipeline, clean backflush system, sample gas pretreatment system, control system, communication system, software model analysis and display system and flue gas (laser/infrared/mass spectrometry/Raman) analysis instrument.

After the high-temperature and high-dust gas is processed and sampled by a special sampling probe, it is analyzed by the flue gas analyzer system, and then the flue gas analysis data is transmitted to the automatic steelmaking system in real time through the communication system, and at the same time, it is analyzed and processed by the software model to provide information such as splashing, back-drying, low-temperature splashing point, recommended process test point, blowing point endpoint and other information.

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Product Features:

  1. Multi-stage Anti-clogging Technology: Aims at high dust content in gas. Uses a "hierarchical filtration and capture" approach with multi-stage dust-proof, waterproof, and anti-clogging measures at each sample gas treatment stage.

  2. Dynamic Design Sampling Probe: Features dust-proof and waterproof functions, designed to reduce dust intake by installing the probe opening against the gas flow direction.

  3. Cascade Treatment Device: Comprises a preprocessor and fine processor to capture most dust and moisture, ensuring long-term stable operation of analytical instruments.

  4. Gas Regulation Unit: Ensures clean gas with constant flow and pressure enters the analyzer through dust removal, dehydration, and pressure/flow regulation.

  5. High-pressure Nitrogen Purge: An innovative feature for the sampling probe to maintain long-term system stability.

  6. High Automation: Can operate unattended after normal debugging.