- AllProduct Category
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Steel Tube Seat
Blender
Vacuum Concentration Equipment
Laminate Flooring Line
Ultrasonic Humidifier
Through-Flow Sterilization Equipment
Biomass Pellet Burner
Plywood Gluing Machine
Louvered dryer
Three-tube Dryer
Asphalt Mixing Plant
Lifting Equipment
Belt Conveyor
Heating Equipment
Purification Engineering
Waste Gas Treatment Equipment
Arsenic Recovery Equipment from Smelting Waste
Battery Drying Machine
Insulating Material Drying Equipment
Airflow Dryer
Incinerator
Vacuum Wood Carbonization Equipment
Vacuum Series
Vacuum Insulation Panel Heat Shrink Machine
Combustion System
Insulation Decorative Panel Drying Machine
Painting Equipment
Corrugated Paper Dryer
Paper Tube Drying Equipment
Vacuum Wax Injection Machine
Wood Heat Treatment Pest Control Equipment
Hot Water Heating Wood Drying Equipment
Electrically Heated Wood Drying Equipment
Hot Air Wood Drying Equipment
Thermal Oil Wood Drying Equipment
Wood Drying Equipment
Steam Wood Drying Equipment
Dust Removal Equipment
Gas/Oil Hot Air Furnace
Vacuum Dryer
Gypsum Board Dryer, Plywood Drying Machine
Tunnel Dryer
Drying Oven
Tumble Dryer
Drying Belt Oven
Wood veneer drying machine
Single-Board Drying Machine


详情描述
As environmental quality standards rise, switching from coal to gas combustion has become a key direction for pollution control. In recent years, our company has undertaken numerous projects for converting coal-fired hot air furnaces to gas-powered ones, accumulating mature experience in furnace retrofitting. We can provide reasonable coal-to-gas hot air furnace solutions tailored to customer needs, along with all-inclusive services from manufacturing to installation.
Direct-fired gas hot air furnace
Primarily composed of valve components, burners, combustion chambers, secondary air distribution, and control systems.
Through the valve component, the combustion nozzle is fully mixed with air for combustion, and a clean, high-temperature flame is directly喷射 into the combustion chamber for complete combustion, producing clean high-temperature flue gas at approximately 1000°C. After secondary air distribution, the flue gas is adjusted to the required temperature for production heat. The heated air then enters the drying equipment (such as drying rooms, ovens, drum dryers, belt dryers, and fluidized bed dryers) to dry the materials.
Hot air cleaning, high thermal efficiency, low auxiliary equipment, low investment cost, and good operating environment; easy to operate, manual/automatic control available; features automatic ignition, load adjustment, flame detection, and alarm function.
2. Indirect Heat Exchanger Gas Forced Air Heater
Primarily composed of the combustion system, heat exchange system, control system, and exhaust system.
Through the combustion of the burner, high-temperature flue gas is produced to heat the heat exchanger system. The heated air is then blown into the drying system by a blower. The thermal efficiency can reach 92%. When the temperature of the hot air inside the drying system reaches the rated upper limit, the burner will automatically stop combustion or switch to a low flame. When the hot air temperature drops to the rated lower limit, the burner will reignite and operate or switch to a high flame, and the rate of temperature increase can also be adjusted by regulating the air intake valve.
High heat exchange temperature, high thermal utilization, compact size, stable hot air temperature, long lifespan, and low maintenance costs.









