TM500 Guided Wave Radar in Urea Hydrolysis Reactor

Home  ꄲ  Power  ꄲ  TM500 Guided Wave Radar in Urea Hydrolysis Reactor

Reliable Level Measurement in Extreme Urea Hydrolysis Conditions
 

The Challenge

Measuring liquid level in a urea hydrolysis to ammonia reactor is one of the most demanding applications in coal-fired power plants. Key challenges include:

  • High Temperature & High Pressure simultaneously
  • Strong Corrosive Medium (NH₃ + CO₂ + Carbamate)
  • High Steam Saturation & Severe Foam
  • Crystallization & Build-Up Risk
  • Rapidly Changing Dielectric Constant
  • Complex Internal Structures (agitators, coils, packing)

 

Technical Requirements

 

The GWR transmitter must ensure high reliability and accuracy under extreme conditions:

  • Corrosion Resistance
  • Temperature & Pressure Tolerance
  • Steam & Foam Immunity
  • Anti-Crystallization Capability
  • High Signal Quality & Measurement Performance
  • Mechanical Robustness
  • Safety & Reliability
  • Advanced Commissioning & Software Support

 

 

Our Solution – TM500 Guided Wave Radar

  • 3-Year Full Warranty – covering performance and reliability
  • High-Grade Special Steel Probe – optimized for corrosive, high-temp environments
  • International High-End Benchmarking – comparable to Endress+Hauser and VEGA premium GWR products
  • Advanced Signal Processing – accurate measurement despite foam, vapor, or crystallization

 

Benefits

  • Stable, reliable measurements under the harshest reactor conditions
  • Extended service life with minimal maintenance
  • High-end positioning comparable to leading GWR suppliers
  • High-Grade Special Steel Probe – optimized for corrosive, high-temp environments
  • International High-End Benchmarking – comparable to Endress+Hauser and VEGA premium GWR products
  • Advanced Signal Processing – accurate measurement despite foam, vapor, or crystallization

 

 

 

 

 

Want to Discover How TM500 Can Handle Your Extreme Level Measurement Needs? Please do not hesitate to contact us.

 

2026-03-23