• Exclusive FT-IR Analyser Configuration with Two Optical Cells

    Gas detection

    Exclusive FT-IR Analyser Configuration with Two Optical Cells

    Loccioni (Italy) GIGAS FT-IR Double Cell is an innovative and exclusive spectrometer configuration: a single interferometer module is combined with two identical measurement cell modules.

    Each one is provided with its own detector, gas inlet and control devices: the IR beam coming from the interferometer is divided into two beams by a beamsplitter and after this stage the two measuring modules are completely independent.

    This permits to analyse gas stream from two different points of a plant process with only an instrument, for example upstream and downstream of an abatement stage where multi-gas monitoring is required.

    With this analyser it is possible to achieve a reliable, integrated and cost-saving solution for continuous real-time process control, a feedback for the plant conduction on reactions efficiency and a reagents saving up to 15%.

    Loccioni FT-IR technology has also obtained an important acknowledgement for emission monitoring, that is TÜV certification according EN 15267 with six months maintenance interval for all analysed gas components.


    Digital Edition

    IET 35.2 March

    April 2025

    Air Monitoring - Probe Sampling in Hazardous Areas Under Extreme Conditions - New, Game-Changing Sensor for Methane Emissions - Blue Sky Thinking: a 50-year Retrospective on Technological Prog...

    View all digital editions

    Events

    Sensor + Test 2025

    May 06 2025 Nuremberg, Germany

    Oil & Gas Asia

    May 10 2025 Karachi, Pakistan

    SETAC Europe

    May 11 2025 Vienna, Austria

    ENVEX 2025

    May 11 2025 Seoul, South Korea

    View all events

    Congratulations...
    We will send you the latest eBulletin as soon as its ready..
    Sign up to Envirotech for FREE.
    Register and get the eBulletin, a Monthly email packed with the latest environmental products, news and services. Join us and get the latest information first.