Organic Waste Gas Incinerator

Using auxiliary fuel (natural gas, liquefied petroleum gas, etc.) to burn to generate heat, the temperature of combustible and harmful organic waste gas is raised to the reaction temperature, so that high-temperature oxidative cracking occurs and high-temperature and high-heat gas is produced. The high-temperature and high-heat gas after incineration and cracking passes through the heat exchanger for heat exchange and then enters the heat-consuming equipment for use. After cooling, the incinerated and purified exhaust gas is discharged by the fan.
The temperature of the incinerator is automatically controlled.
Exhaust gas temperature over-temperature regulation and protection.
Furnace micro negative pressure control system.
Fault automatic alarm and shutdown protection.
Furnace shutdown delay protection.
Hot air temperature stable output temperature control system.
MOQ:1

Feature

1. The deodorization and purification effect is remarkable, no secondary pollution, energy saving and environmental protection. Use heat to burn and oxidize organic waste gas, and make the organic matter in the waste gas burn to release heat, and then provide heat energy to the drying room for heat.

2. Wide adaptability, can be applied to organic waste gas treatment and heat energy recovery of various spraying industries, tape production lines, synthetic resin plants, fabric coating production lines and drying and drying equipment with a certain concentration (≤10g/Nm³) of organic waste gas emissions use.

3. Good safety, the furnace adopts micro-negative pressure combustion, and it is not easy to temper. Equipped with furnace over-temperature control, the combustion furnace will not be damaged due to over-temperature. Equipped with organic waste gas preheating heat storage over-temperature control to avoid damage to heat exchanger and furnace due to over-temperature of waste gas. There is a fault flameout alarm and automatically cuts off the gas source of the burner.

4. High degree of automation, one-key start-up, full automatic operation, no need for special operation. There are precise temperature control system, over-temperature, low-temperature alarm, flameout alarm and other safety protection devices to ensure the stable operation of the equipment.

5. Stable operation, low failure rate and long service life. Using thermal combustion to oxidize and purify organic waste gas, there is no clogging phenomenon, and there is no catalyst poisoning replacement like catalytic combustion equipment. It solves the problems that other exhaust gas treatment equipment cannot solve.

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Working Principle

The organic waste gas in the drying room is concentrated by a fan and then sent to the waste gas heat storage preheating heat exchanger of the incinerator through the pipeline for heating, and then sent to the furnace for incineration after being heated to a certain temperature. The incineration furnace is heated by a large-ratio burner and ignites the high-temperature organic waste gas after heat storage. The organic solvent in the organic waste gas undergoes a series of cracking and oxidation reactions after high-temperature combustion to generate carbon dioxide and water, so that the organic waste gas can be purified. Release high heat energy. The high-temperature flue gas after combustion and purification is divided into two paths under the action of the fan, and one path enters the waste gas regenerative heat exchanger (shell side), and exchanges heat with the organic waste gas sent to the drying room (tube side) to heat the waste gas. Another part of high-temperature flue gas (shell side) enters the fresh air heat exchanger to heat the fresh air (pipe side) sent by the blower, and the high-temperature fresh air after heat exchange is sent to the hot drying room for use by the fan. Finally, the purified high-temperature exhaust gas is discharged through the fan after passing through the heat exchanger to cool down.

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Production

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