Customization: | Available |
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Type: | Ph Electrode |
Cooling System: | Fan |
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Product Introduction The infrared burner is designed and manufactured using scientific technology using porous ceramic plates as the combustion furnace head. Using a gas infrared burner for heating, drying, and insulation can greatly save energy consumption by over 50% and reduce pollution. Since the infrared burner is completely premixed with air during combustion, combustion is complete, thus reducing the emission of pollutants. The infrared radiation emitted by the burner during combustion has strong penetration, and can stimulate the resonance of water molecules, which can evenly penetrate the heat into the center of the heated object, greatly increasing the uniform heating effect, heating quality and drying efficiency. The gas infrared burner has the advantages of high efficiency, energy conservation, low pollution, economic practicality, and simple installation: compared with electric drying, the cost is reduced by more than half. Therefore, using gas infrared burners has become a new process and trend for industrial heating, drying, and insulation. It has been widely used in various industries and fields such as industrial baking paint, printing and dyeing, and food. Combustion characteristics 1. Safety: Featured backfire protection device that can automatically cut off the gas source when danger is detected. 2. Modularization: It can be assembled into heating strips or heating surfaces according to actual situations. 3. Simple structure and easy installation: The entire system consists of three parts: burner, gas air delivery, ignition, and control, with a compact structure and easy installation and debugging. Reduce initial investment costs. 5. Energy conservation and environmental protection: By manually adding accurate air to support combustion, the accurate ratio of air and gas can be achieved, thereby achieving a higher heat output with lower energy consumption. At the same time, based on the control of combustion, the emissions of COX and NOx are lower than relevant international industry standards. 6. Accurate control: Effective control of combustion is achieved through frequency converters, actuators, butterfly valves, temperature sensing systems in dispersed furnaces, PLC or OPTO22 integrated control modules. |