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  Burner Equipment
Vortex high intensity burner, adjustable high intensity burner, improved high efficiency residual oil burner, coal water slurry burner, and kiln burner  ´´

  Furnace

Reaction furnace, incinerator, and air heater ´´

Research & Development

 
R&D of advanced combustion using CFD, specially combustion with high swirl and ultra low NOx emission, R&D of real-time simulation of dynamic combustion process  ´´
 

  Quality & Control

Fabricating all products according to the standard quality control systems with traceable management, including test report, MTR as well as WPS, PQR, WPQ ´´
 

  Others

Import and export for any equipment and apparatus, including IRIS scanners´´
 

Innovative Solution  ¢  Clean Combustion  ¢  New Philosophy

Vortex High Intensity Burner

VHIB (Registered Patent: 200620122777.6) is built to fire light and fuel oils and almost any industrial gas-including propane, butane, manufactured and mixed gases (e.g. acid gas mixed with ammonia)- to extremely high outputs. They feature a high combustion air swirl rate that produces a complete stable flame with high turndown capabilities and very low levels of NOx, soot, and B.T.X. emissions. VHIB provide excellent characteristics, super performance, and extreme reliability in the combustion fields today.

 

Adjustable Vortex High Intensity Burner

AHIB (Registered Patent: 2006200120910.4) is developed based on VHIB with more adjustable swirl created in the combustor in order to modify the flame shape and control the combustion at a higher level. Our innovations on this burner provide improved capabilities for efficient combustion and lower environmental emissions.

 

 

Improved High Efficiency Residual oil Burner

 

The technology of improved high efficiency residual oil burner (IROB) delivers an ultra-fine fuel oil spray to the burner system, which is available as a retrofit to any burner element or as an integrated component of burner system. This technology dramatically lowers NOx emission and particulate emission, short flame lengths with high turndown ratios while consuming less energy to atomize the liquid fuel.

 

 
 
 
 
 
 
 
 
 
 
 
 
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