• SCS-900FT Fourier transform infrared flue gas continuous monitoring system

    The Fourier infrared flue gas continuous monitoring system (SCS-900FT) adopts high-temperature heat and moisture extraction sampling throughout the entire process. It uses Finnish Gasmet\'s Fourier infrared technology combined with a simple and reliable high-temperature sample pretreatment system. The system can simultaneously and quickly measure the concentration of pollutant gases such as SO₂, NO, NO₂, CO, HCL, HF, NH₃ and greenhouse gases such as CO₂, CH₄, N₂O, SF₆, NF₃ and other greenhouse gases in flue gas. Full-process high-temperature sampling, especially suitable for waste incineration industry and special process gas detection with low concentration, high humidity, strong corrosiveness and complex gas composition.

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  • SCS-900D High temperature infrared flue gas continuous monitoring system

    The high-temperature infrared flue gas emission continuous monitoring system (SCS-900D) adopts high-temperature heat and moisture extraction sampling throughout the entire process. It adopts Germany\'s Födisch advanced GFC/IFC photometric technology combined with a simple and reliable high-temperature sample pretreatment system. The system can simultaneously measure the concentration of pollutant gases such as SO₂, NO, NO₂, CO, HCL, HF, NH₃ and greenhouse gases such as CO₂, CH₄, N₂O in flue gas. Full-process high-temperature sampling, especially suitable for waste incineration industry and special process gas detection with low concentration, high humidity, strong corrosiveness and complex gas composition.

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  • SCS-900DS Dioxins automatic sampling system

    The SCS-900DS dioxin-like automatic continuous sampling system uses a long-term sampling method with a cooling probe to conduct isokinetic sampling of flue gas. It can automatically and continuously collect gaseous, liquid and solid dioxins, furans or other persistent organic matter for a long time. The cycle is as long as 8 weeks, and it is representative of the sampling of waste incineration conditions on the basis of meeting the detection limit of the analysis method.

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