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MKAS HD
 
 
The analyzer cabinet for high concentrations, acidic or very dusty sample gases
The system MKAS HD was especially designed for difficult measuring tasks with high concentration of corrosive gases and/or gases with extremely high dust loads. Therefore, it comprises a back-purgable sampling probe and filters including a scrubber. Also this system can be modified, e.g by a special powerful, corrosion-resistant sample gas pump.
Applications
  • Measurement in acidic gases with high dust load
  • Kiln inlet measurement in cement industry
  • Measurement in raw gas
  • Measurement in process gases
 
Technical specification
  Analyzer   S700, SIDOR  
  Components   CH4, CO, CO2, N2O, NO, NO2, O2, SO2
(The measuring ranges depend on the integrated analyzers and the application.)
 
  Sample gas flow   Standard: 30 ... 60 l/h
With bypass pump: 0 ... 250 l/h
 
  Sample gas temperature   At cabinet inlet: 0 ... 200 °C (32 ... 392 °F)
Process: 0 ... 900 °C (32 ... 1,652 °F)
Depending on probe system
 
  Humidity of sample gas   Dew point: 0 ... 100 °C (32 ... 212 °F)  
  Ambient temperature   Standard: 5 ... 35 °C (41 ... 95 °F)
Without direct sun exposure
With cooling device: 5 ... 50 °C (41 ... 122 °F)
 
  Ambient humidity   0 ... 95 %
Relative humidity, non-condensing.
 
  Electrical safety   CE  
  Enclosure rating   IP 54
With cooling device: IP 34 for outer cooling circuit
 
  Analogue outputs   Depends on analyzer and system configuration  
  Analogue inputs   Depends on analyzer and system configuration  
  Digital outputs   Depends on analyzer and system configuration  
  Digital inputs   Depends on analyzer and system configuration  
  Interfaces   Depends on analyzer and system configuration  
  Device types   GRP cabinet, steel sheet cabinet  
  System components   Analyzer SIDOR or S710, analyser cabinet, sampling probe, purgable, sample gas filter incl. washer, sample gas cooler, sample gas line, sample gas pump, NOx converter  
  Mounting   Under roofing or other protection against exposure to direct heat radiation, high dust loads and corrosive atmospheres  
     
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