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Technical Specification for the Operation and Quality Control of Continuous Automatic Ambient Air Carbon Dioxide Monitoring Systems
Industrial Park Carbon Pollution Measurement-Taizhou Environmental Monitoring Station

MT01 analyzer adopts cavity-enhanced absorption spectroscopy (CEAS) technology with self-developed long range gas absorption cell; built-in ultra-low noise laser driver; exclusive use of infrared light mode matching module to reduce interference noise; professional fluid simulation and air intake system to reduce instability caused by gas flow. Suitable for high-precision atmospheric environment monitoring and other application scenarios, real-time online measurement of CO2, CH4 and other gas components, based on 5G/NB-IoT to achieve long-distance wireless data transmission.


Core Self-Developed Technology

  • Localized Core Components

  • Patent-Protected Optical System Design

  • Self-Developed Ultra-Stable Temperature Control System and Ultra-Low Noise

  • Electronic System

  • Exclusive Spectral Fitting Algorithm


Ultra-High Sensitivity and Accuracy

  • Achieves ppb-level sensitivity, precision, and accuracy that meets the data quality objectives of the World Meteorological Organization (WMO) and the carbon dioxide (CO2) and methane (CH4) standards of the Integrated Carbon Observing System (ICOS)


Rapid and Stable Response

  • Millisecond-Level Spectral Measurement

  • Second-Level Instrument Response Time

  • Ultra-Low Long-Term Drift


Multi-Scenario Applicable

  • Stable structure, strong anti-interference ability, suitable for vibration, temperature, humidity and other conditions of the environment; measurement of a wide dynamic range, suitable for cruise inspection, atmospheric carbon background measurement and other application scenarios



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Technical Specification for the Operation and Quality Control of Continuous Automatic Ambient Air Carbon Dioxide Monitoring Systems

Case Overview

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Case Results

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Industrial Park Carbon Pollution Measurement-Taizhou Environmental Monitoring Station

Case Overview

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Case Results

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