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Oxygen

Reheat Furnace

Our oxygen enhanced combustion systems can help you reduce heating times and lower fuel consumption in the reheat furnace. Since these systems replace air with oxygen, exhaust gas volumes can be reduced, which can help you avoid expensive upgrades to your exhaust systems. The best solution for your reheat furnace depends on many factors, such as your existing furnace’s operating parameters, throughput rates and maintenance issues. Our applications engineers can help you implement tailored systems to meet your specific needs.

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Oxygen

Oxygen is required for any combustion process. By supplementing or replacing combustion air with oxygen, overall combustion can be improved through increased heat transfer, higher flame temperatures and reduced volume of flue gases.

Oxygen is required for any combustion process. By supplementing or replacing combustion air with oxygen, overall combustion can be improved through increased heat transfer, higher flame temperatures and reduced volume of flue gases.

Equipment

Oxy-fuel Systems

Our oxy-fuel systems are designed for a wide turn-down, with seamless and continuous mode transition for your reheat furnace. These systems can deliver fuel savings and increase furnace zones' heating rates to help you debottleneck your reheat furnace without a costly expansion.

Our oxy-fuel systems are designed for a wide turn-down, with seamless and continuous mode transition for your reheat furnace. These systems can deliver fuel savings and increase furnace zones' heating rates to help you debottleneck your reheat furnace without a costly expansion.

Oxygen Enrichment Systems

Oxygen enrichment of combustion zones can provide a boost to heating performance of a furnace or zone. Even low level enrichment of air-gas flames can increase heat transfer, enabling higher throughputs while reducing specific fuel consumption.

Oxygen enrichment of combustion zones can provide a boost to heating performance of a furnace or zone. Even low level enrichment of air-gas flames can increase heat transfer, enabling higher throughputs while reducing specific fuel consumption.

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