Oil/GAS fuel fired
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The indirect oil fired hot air generator is of unique designed with two passes system comprising of a radiation chamber fabricated out of steel plate connected with furnace. The steel radiation chamber is designed with expansion joint to with stand thermal shock due to hot & cold condition. The outer shell is fabricated out of plate and Boiler quality tube to form passes of flue gas and for hot air generation. The entire unit is place on a common base frame. Liberally designed and fabricated H A G to ensure highest fuel efficiency and low wall temperatures. Thus ensure fuel economy and longer unit life throughout the operation. All passes of hot air generator is easily and quickly accessible for maintenance and repairs. This particulars feature reduces the break down time to a great extent and increases reliability of the unit. The furnace and other materials are properly selected and sized such that the wall temperature is much below the safe operating temperature limits. The fresh air layout is carefully and suitably designed to maintain lowest air pressure drop at rated airflow condition. Semi automatic, shell & tube type hot air generators with external furnace. Salient Features Low Maintenance due to robust design. Operating temp. Up to 250° C. Clean & contamination fresh hot air at the outlet. External furnace design with liberal grate area to ensure complete combustion & eliminate clinker formation. High furnace volume, high radiation & convection heating surface area for high thermal efficiency & long life of equipments. Optional air pre heater for increasing the efficiency. Multi dust collector/bag filter option to meet the requirement of pollution control board.
Oxygen Gas Generator
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Principle Of Operations Oxygen gas generators are based on the PSA technology. A special grade of synthetic Zeolite, known as molecular sieves is used to separate oxygen from atmospheric air. Oxygen generator consists of two absorption vessels, filled with molecular sieves are alternately charged with compressed air up to 5 bar pressure. Nitrogen is adsorbed and enriched oxygen flows to the surge tank. After the adsorption cycle, one bed is depressurized to atmospheric pressure, thereby evacuating nitrogen and sieve bed gets regenerated completely by counter current oxygen flow from the other bed. Salient Features 1) Operation is cyclic and automatic. 2) Automatic start-up and shut-off. 3) Working life of molecular sieves is almost 10 years on continuous run of the plant. 4) Very low maintenance cost. Applications • Steel Plants • Welding • Brazing • Paper Industries • Chemical Oxidation • Battery Manufacturing • Ozone Generation
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