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Multi-component analyzer
No interference from background gases
In-situ measurement

NEO Monitors LaserGas™  iQ2 analyzer is the first to measure up to four gases (O2, CO, CH4, H2O)* and temperature depending on configuration, which eliminates the need for multiple units for combustion analysis. The cutting-edge design and ground-breaking functionality, ensures that the instrument delivers unmatched reliability and durability. By providing an optional single flange solution, installation cost can be significantly reduced. Customers may replace existing analyzers where explosion risks or high maintenance issues are a huge concern.

LaserGas™ iQ2 is developed on a well proven technology platform. With innovative design and extraordinary spectroscopically and optical solutions, the customer gets

LaserGas™ iQ2 analyzer is the first to measure up to four gases (O2, CO, CH4, H2O) and temperature depending on configuration, which eliminates the need for multiple units for combustion analysis.

The cutting-edge design and ground-breaking functionality, ensures that the instrument delivers unmatched reliability and durability. Customers may replace existing analyzers where explosion risks or high maintenance issues are a huge concern.

Certifications and approvals
IECEx/ATEX Zone 1
CSA Class 1/Div 2 A,B,C,D

Gases
O2 + CO as standard configurations
Add on component:

  • CH4
  • H2O %
  • Temperature

Features

  • No interference from background gases
  • Factory calibrated
  • No zero drift
  • Transceiver configuration
  • Multiple configurations
  • Automatic gain
  • In-situ measurement
  • Integrated span check option (Application dependent)

Applications

  • Combustion analysis
  • FCC units
  • Boilers
  • Process heaters
  • Electrostatic precipitators
  • VCM waste gas recovery
  • Reformer gas
  • Incineration

Customer benefits

  • Up to 5 measuring components O2, CO, CH4, H2O and temperature
  • Can handle a typical combustion process up to 2372 °F/1300°C
  • Reduced installation cost
  • Low maintenance cost
  • Easy to install transceiver, one unit ensures easy alignment
  • Double path length increases absorption signal for low concentration
  • Transceiver can be mounted on coldest side of stack in very hot environments
  • Well proven technology
  • The design has flexibility to measure additional gases

an accurate and reliable analyzer solving application needs such as FCC units, package boilers, process heaters, electrostatic precipitators, VCM waste gas recovery, reformer gas, incinerator and so forth. By providing an optional single flange or cross stack configuration, installation cost can be significantly reduced. Customers may replace existing analyzers where explosion risks or high maintenance issues are a huge concern.

Features

  • Up to 5 measuring components O2, CO, CH4, H2O and temperature
  • Configuration examples: O2 & CO, O2 & CO + CH4, O2 & CO + H2O, O2 & CO + H2O + temp
  • Can handle a typical combustion process up to 2372 °F/1300°C
  • Reduced installation cost
  • Low maintenance cost
  • Easy to install transceiver, one unit ensures easy alignment
  • Double path length increases absorption signal for low concentration
  • Transceiver can be mounted on coldest side of stack in extreme hot environments
  • Well proven technology
  • The design has flexibility to measure new/other gases and combinations of them
  • No interference from background gases
  • Factory calibrated
  • Designed for 3 configurations – cross stack, one-flange with probe and open path
  • Transceiver configuration

Documentation

Combustion Control on Boiler Plant - LaserGas iQ2 Combustion Control on Boiler Plant - LaserGas iQ2
LaserGas-iQ2_rev2 LaserGas-iQ2_rev2

LaserGas Q SO2

NEO Monitors LaserGas™ Q SO2 is using Tuneable Laser AbsorptionSpectroscopy (TLAS)  

LaserGas Q SO2 (QCL Edition)

NEO Monitors LaserGas™ Q SO2 (QCL edition) is using Tuneable Laser Absorption Spectroscopy (TLAS) i.e a non-contact optical measurement method employing solid-state laser sources. 

LaserGas Q NO2

NEO Monitors LaserGas™ Q NO2 is using Tuneable Laser Absorption Spectroscopy (TLAS) i.e a non-contact optical measurement method employing solid-state laser sources.  

Ankersmid Process
Samuel Morsestraat 4
7442 DH Nijverdal
Netherlands


(31)-0548-59 59 69
(31)-0548-62 19 72
info@ankersmid.com

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