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You are here: Home Home1 / Gas analyzers: Emissions & Process2 / Thermo Scientific MAX-iR...

Thermo Scientific MAX-iR
Multigas FTIR analyzer

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Categories : Gas analyzers: Emissions & Process, Location: Ambient Air, Location: Emission & Process, multigas, NO / NO2 / NOX Tags : Gas analyzer, BTEX, CF4, CH4, CO, CO2, VOC, Formaldehyde (CH2O), HCl, HF, Infrared (IR/NDIR/FTIR), Multigas, NF3, NH3, NO, NO2, SiF4, SO2, SO3, Xylene (C8H10)
  • Description
  • Applications
  • Documentation

Description

L'gas analyzerThermo Scientific MAX-iR FTIR gas analyzer is designed to meet the challenges of on-line process monitoring, batch sampling, gas purity/certification and more. Combined with Thermo Scientific's enhanced StarBoost optical technology, the MAX-iR analyzer enables users to achieve single-digit ppb detection limits for many applications. For very high purity bulk gas applications, detection limits can be reduced to mid ppt.

Perform sensitive real-time analysis with Thermo Scientific MAX-Acquisition automation software: high-performance analysis software specially developed for real-time process and EMC environments. For maximum productivity without human interaction, the software features fully automated method control, data publishing, configurable alarms, remote control and reporting tools. Other features of the MAX-iR FTIR gas analyzer include:

  • Integrated 24-bit analog/digital detection modules (ADC) for excellent signal-to-noise ratio without the use of liquid nitrogen
  • Long-life vertical-cavity surface-emitting laser diode (VCSEL) and silicon carbide (SiC) IR source for enhanced longevity and reliability
  • Integrated temperature and pressure sensors for increased accuracy in demanding certification applications
  • Two-stage vibration damping for operation in harsh field environments

Key points:

  • Real-time gas analysis (1 s to 1 min response)
  • 1 FTIR spectrometer with 32 cm-1 resolution
  • Single-digit ppb detection limit
  • 10 m high-flow multi-pass gas cell
  • VCSEL diode (10-year life)
  • Source IR SiC (10-year life)
  • Non-hygroscopic optics (no purging required)
  • Precision temperature and pressure sensors
  • 5U - 19-inch standard rack

 

Available for rent :

CleanAir Europe rents out the MAX-iR FTIR with its ASC-10 automated sampling console.

Applications

- Industrial applications
Industrial process applications, from in-process monitoring to final product quality assurance, can benefit from the MAX-iR analyzer's ability to detect down to single-digit ppb while simultaneously measuring impurities in real time. Use the MAX-iR FTIR gas analyzer for chemical manufacturing, air separation, semiconductor and food & beverage applications.

- Ambient air applications
Measuring difficult compounds such as ethylene oxide requires technology that avoids false alarms for benign interferences and meets the standards of regulatory bodies such as the EPA and the US Occupational Safety and Health Act (OSHA). Successful ambient air monitoring requires the ability to distinguish target compounds down to single-digit ppb, even in the presence of high concentrations of interferences, such as water, solvents and hydrocarbons. The MAX-iR gas analyzer is suitable for a wide range of continuous ambient air monitoring applications, whether on the factory floor or in the laboratory, including medical sterilization, chemical manufacturing, semiconductor manufacturing and automotive production.

- Atmospheric emissions
The fully automated Thermo Scientific EMS-10 platform enables fast and reliable continuous emissions monitoring, without recalibration or liquid nitrogen. Our source emission systems all support StarBoost optical enhancement technology, which enables single-digit ppb detection of difficult-to-measure compounds such as formaldehyde and ethylene oxide. Use the MAX-iR FTIR gas analyzer for key air emissions analyses, including flue gas, chemical manufacturing, gas turbines, cement manufacturing.

- Gas purity analysis
- Selective catalytic reduction (SCR) performance monitoring

Documentation

EN Data Sheet

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