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Ultraviolet Differential Flue Gas Analyzer (DOAS)

Product Description

The SUV-100 flue gas analyzer adopts ultraviolet differential optical absorption spectroscopy (DOAS) technology. It is capable of measuring the concentrations of multiple gases including SO₂, NO, NO₂ and O₂, featuring high measurement accuracy, excellent reliability and fast response speed. It can be widely applied to process and safety control in industrial production across such fields as industrial process gas monitoring, power plant metallurgy, cement manufacturing, chemical fertilizer production, chemical industry, environmental protection and scientific research.

  • Model

    SUV-100

Technical Specifications

  1. Measurement Accuracy: SO₂, O₂: ±2% F.S.; NO, NO₂: ±2% F.S.
  2. Response Time: ≤75s (T90)
  3. Communication Interfaces: RS232/485, switch I/O, analog output, USB interface
  4. Calibration: Manual calibration
  5. Data Recording: Data storage supported, with USB data export function
  6. Display: 7-inch high-definition true-color digital screen with a resolution of 800×480, supporting multi-language
  7. Sample Gas Flow Rate: 1 L/min ~ 1.5 L/min
  8. Dimensions: 482.6 mm × 177 mm × 347 mm

Technical Advantages

  1. The system is available for OEM.
  2. High reliability: Equipped with a pulsed xenon lamp as the light source, which can achieve 10⁹ pulses. Calculated at 3 pulses per second, the service life can reach up to 10 years.
  3. The pulsed xenon lamp is a cold light source, boasting long service life, good stability and no warm-up time required.
  4. High measurement accuracy and good stability: The DOAS (Differential Optical Absorption Spectroscopy) algorithm enables a low detection limit of 1 ppm, along with such merits as low detection limit and small temperature drift. The range ratio reaches 10:1, with automatic range switching supported.
  5. The non-dispersive infrared (NDIR) MEMS infrared light source is an electrically modulated pulsed light source with high modulation frequency, meeting the characteristic requirements of pyroelectric detectors.
  6. Atmospheric pressure compensation function reduces the impact of ambient atmospheric pressure changes on instrument measurement.
  7. High-precision constant temperature control minimizes the influence of ambient temperature fluctuations on instrument measurement.

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