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PFSA140 3BSE006503R1

1. Technical specifications Analysis object and measurement range Gas composition: Various gas components can be measured, including oxygen (O O), carbon monoxide (CO), carbon dioxide (CO CO), nitric oxide (NO), sulfur dioxide (SO) and ammonia (NH). Range flexibility: Multiple ranges are available, depending on application requirements, to ensure a wide range of measurement coverage.

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Input voltage of power supply and power consumption: wide voltage range is supported to adapt to power grid fluctuation in different regions. Power consumption: low power consumption, meet the demand for energy saving. Accuracy and response time linear error: high measurement accuracy to ensure data reliability. Response speed: short response time, can quickly detect the change of gas concentration.Signal output and analog output: provide analog output, compatible with most control systems. Physical and protective characteristics Size and weight: Moderate weight for easy integration into cabinets or field installation. Protection grade: waterproof and dustproof, suitable for harsh industrial environment.Explosion-proof certification: Explosion-proof certification, suitable for hazardous locations. 2. Core functional features High-precision measurement technology Infrared spectroscopy analysis: Advanced infrared spectroscopy technology is adopted, which can accurately detect the composition and concentration of various gases, especially for the analysis of complex mixed gases. Multi-component monitoring: support simultaneous monitoring of multiple gas components to meet complex process requirements.Intelligent calibration and maintenance Automatic calibration: support automatic calibration function and reduce manual intervention. Self-diagnosis function: It has a detailed self-diagnosis mechanism, which can output error information to facilitate rapid fault location. Automatic cleaning: It is equipped with automatic cleaning function to reduce maintenance frequency and improve use efficiency.User-friendly and integrated operator interface: Intuitive user interface and simplified operating menus for easy integration into existing control systems. Communication protocol: It supports multiple communication interfaces and can be seamlessly connected with DCS, PLC and other systems to realize remote monitoring and data transmission. Modular design for expansibility and flexibility: support the addition or replacement of measurement modules according to the requirements, and adapt to the requirements of different gas components and measuring ranges.Multi-range switching: Multi-range selection is provided, and automatic range switching is supported to ensure wide coverage of measurement range. 3. Typical application scenarios Industrial process control Chemical reaction monitoring: In petrochemical, chemical and other industries, monitor the gas composition in reactors, distillation towers and pipelines to ensure the safety and efficiency of the chemical reaction process.Concentration control: In the production of ethylene, propylene and other petrochemical products, the gas concentration is precisely controlled and the production process is optimized. Environmental monitoring and governance Flue gas emission monitoring: In coal-fired and gas-fired power plants, monitor the concentration of oxygen, carbon dioxide and carbon monoxide in the flue gas to optimize combustion efficiency and reduce emissions. Harmful gas emission control: monitor harmful gas emissions in biomass power generation, waste incineration plants and other scenarios to ensure compliance with environmental regulations.Combustion process optimization in the field of energy and metallurgy: In blast furnaces, converters and coke ovens, gas composition is analyzed to optimize the combustion process and improve energy efficiency. Quality control of heat treatment: monitor the composition of protective gas during heat treatment to ensure stable product quality. Other areas of expertise Kiln flue gas analysis: monitoring the gas composition in the kiln flue gas to optimize the combustion process and reduce pollutant emissions. Limestone calcination control: In the process of limestone calcination, the concentration of carbon dioxide is precisely controlled to improve the product quality.Industrial waste gas emission monitoring: to ensure that industrial waste gas emission meets environmental protection standards and avoid environmental pollution. Urban air quality monitoring: In the urban air quality monitoring station, the concentration of harmful gases is detected to provide data support for environmental management. Fermentation process control: During the biological fermentation process, monitor the concentration of carbon dioxide and oxygen to ensure that the fermentation conditions are stable. Purity test of packaging gas: test the purity of protective gas (such as nitrogen) in the process of food and drug packaging to extend the shelf life of products.Bioreactor monitoring: Optimize the gas environment during cell culture and fermentation to improve production efficiency. Aseptic environment control: detect the concentration of oxygen and carbon dioxide in the pharmaceutical, medical and other sterile environments to ensure the stability of the environment. Cleanroom Gas Monitoring: Monitor trace gas composition in cleanroom and process gases to ensure high purity in the production environment.Natural gas pipeline monitoring: analyze the gas composition in the natural gas pipeline to ensure safe transportation and stable quality. Analysis of gas in oil and gas fields: in the exploitation of oil and gas fields, analyze the composition of associated gas and optimize the exploitation process.