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Reduction of fuel and CO2 emissions through pure oxygen combustion and oxygen-enriched combustion.

Demo test available! Reduction of fuel and CO2 emissions through pure oxygen combustion and oxygen-enriched combustion.

- Combustion without changing the amount of fuel and oxygen. - Due to oxygen enrichment: 1) Temperature rise 2) Reduction of input air volume (reduction of heat loss) ■ CO2 reduction through oxygen enrichment / Targets: - Metal melting furnaces - Sintering furnaces - Heating furnaces - Heat treatment furnaces ■ Fuel reduction and CO2 emission reduction through pure oxygen combustion By increasing the oxygen concentration, the combustion temperature rises. This is often used for heating ladles. ■ Material preheating with pure oxygen burners in electric furnaces An oxygen burner is directed at the material coming out from the top of the electric furnace, adding heat to the material. As the heat increases, the melting of the material accelerates, allowing for a 10% to 20% reduction in electricity consumption of the electric furnace. *Demo tests can be conducted, so please feel free to ask.

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Oxygen-Enriched Combustion Catalog

TECHNICAL

Oxygen combustion technology

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