IMR 2800P SERIES


RPV VALVES

IMR 2800P

Designed to measure flue gases on  Boilers  Burners  Engines  Developed to meet the customers need  High quality combustion gas analyzer using the latest sensor technology  Easy to use and measures all the important parameters to adjust and optimize the combustion process  Integrated Printer: each printout includes all information on the display  Applications: Boilers, Burners, Engines, Turbines, Cars, Trucks, Plants, Chemical Industries, Steel Plants, Refineries, etc.

Key advantages

  •  Portable and very compact combustion gas analyzer housed in a rugged aluminum case  Simultaneous measurement of  
  • O2 Oxygen  
  • CO Carbon Monoxide  
  • NO Nitric Oxide  
  • SO2 Sulfur Dioxide  
  • NO2 Nitrogen Dioxide  
  • HC/CH4 Hydrocarbon  
  • TG Flue-gas temperature  
  • TA Ambient temperature  
  • Calculation of following parameters according ASME-equations  
  • Losses/qA  
  • Excess Air/Lambda  
  • CO2 Carbon Dioxide  
  • NOx Nitrogen Oxides  
  • 23 Fuels are programmed – 4 fuels are programmable  
  • USB & RS232 interface for real-time uploading of measurements to PC  
  • Memory for measurements 
  • Automatic zero calibration 
  • Integrated self-check program

OPTIONAL FEATURES  

  • Gas sampling probes with different lengths
  • High temperature probe usable in temperatures up to 2912°F / 1600°C  
  • Soot measurement  
  • Draft measurement Optional: Differential draft & Velocity measured in m/s  HCl, N2O, CL2, H2, NH3, or H2S measurement  
  • CO2 measured (NDIR sensor)

Optional Equipment

Specifications

Temperature range

-40 to +65 °c

Working pressure pmax.

315 bar

Gas type

Carbon Dioxide, Inert & mixtures, Oxygen, Flammable & mixtures

material

Body : brass Handwheel: aluminium O-ring : EPDM or PU Spring : CUBE / Stainless Steel

Approved according to

ISO 10297 - 2014 ISO 15996 - 2017

Leak rate

1.10-3 M bar l/s

Tested up to

4.000 cycles for manual valve 200.000 cycles for RPD

Max. stroke of rpd

7 Mm




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February 13, 2022
February 13, 2022