Industrial thermal processes require more than individual components. They require systems that function as a coherent whole. Every burner, every control system, every emission solution and every heat exchanger we supply is selected, configured and integrated as part of a complete engineering solution, designed precisely around your specific process requirements.

Efficient indirect heating for controlled atmosphere furnaces.
In heat treatment and annealing processes, product quality depends entirely on precise temperature control within a clean, controlled atmosphere. Gas-fired radiant tubes eliminate the risk of oxidation entirely: combustion takes place exclusively within the radiant tube, while heat is transferred by radiation from the outer surface to the product — flue gases remain completely separated from the furnace atmosphere.
U-type, W-type and P-type radiant tubes, available in cast, seamless and welded construction. Suitable for process temperatures up to 1200°C.

Controlled process air for critical industrial applications.
In applications where heated air comes into contact with the product, or where contamination risk is unacceptable, the design of the air heating system determines the process outcome. ICE designs and manufactures bespoke indirect air heater systems that deliver efficient, uniform and reliable process heating — precisely matched to your application, fuel type and production environment.

Fast, efficient heating for high-performance production processes.
Originally developed for the textile and carpet industry, ICE infrared burner systems are now deployed across a wide range of industries where compact, high-performance heating is required. Surface combustion takes place within an FeCrAl metal fibre matrix, generating highly uniform infrared emission across the entire burner surface.

Compact, reliable combustion for industrial heating applications.
The GBP burner is a fully packaged industrial burner solution, designed for reliable operation, efficient combustion and straightforward installation. It combines a direct-driven air butterfly valve, ratio-controlled fuel regulation and a high-quality mixing nozzle to produce a stable flame across the full burner range.

Precision heating for thermoprocess applications.
NOXMAT burners are trusted worldwide for their temperature uniformity, low-emission performance and energy efficiency. ICE integrates NOXMAT technology into complete heat treatment and thermoprocess systems where precise thermal control is essential.

Industrial combustion solutions built for performance and reliability.
Dunphy burners are recognised for their robust construction, operational flexibility and low-emission performance. ICE integrates Dunphy technology into complete combustion systems — from boiler retrofits to fully new installations — combining advanced digital control, servo-driven fuel and air regulation and proven combustion technology.

Proven combustion technology for power generation and heavy industry.
With over 90 years of proven performance, Forney delivers combustion solutions for some of the most demanding applications in the world. ICE integrates Forney burners into new installations, upgrades and retrofit projects where reliability, flexibility and long-term performance are essential.
Utility burners, duct burners, SCR warm-up burners and fully bespoke combustion systems, suitable for a wide range of fuels and process conditions.

Reliable ignition systems for critical combustion applications.
An ignition failure in an industrial combustion system is more than an operational inconvenience — it is a direct safety risk and one of the most immediate causes of unplanned downtime. ICE supplies and integrates Forney ignition systems chosen for their proven reliability, low maintenance requirements and broad fuel compatibility.

Reliable destruction of VOCs, odours and hazardous emissions.
ICE designs and builds bespoke thermal oxidation systems that combine high destruction efficiency with optimised energy recovery. Contaminated process gases are heated to temperatures between 750°C and 1200°C, where harmful compounds are oxidised into stable, environmentally safe by-products including CO₂, water vapour and nitrogen.
Four parameters determine destruction efficiency: temperature, residence time, turbulence and oxygen availability. ICE designs each system to control these parameters precisely.
Recuperative and regenerative heat recovery, process air preheating and waste heat utilisation — significantly reducing fuel consumption and total operating costs.

Advanced NOx reduction for cleaner industrial operations.
Selective catalytic reduction (SCR) is one of the most effective technologies for reducing NOx emissions from industrial combustion processes. A reducing agent — typically ammonia (NH₃) or urea — is injected into the flue gas stream upstream of a catalyst bed, converting nitrogen oxides into harmless nitrogen gas (N₂) and water vapour (H₂O).
Performance depends on precise reagent dosing, correct catalyst selection, residence time and temperature control — all designed and optimised by ICE for your specific application.
Depending on your needs, we provide individual components, engineered equipment, or complete turnkey integrated systems — with burner capacities from 1 MW to 40 MW.
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