Technology Overview
After being transferred into the incinerator by the feeding system, the wastes are pyrolyzed and burned in the main body of the incinerator. The gas generated is emitted when standards are reached after it enters the tail gas treatment system and is treated. The ash generated after burning will be sent to the domestic garbage landfill for dumping. The heat generated from burning can be recycled by a waste heat recovery device. For hazardous waste burning technology, it is mature and easy in the treatment of ash and slag, has stable burning and high efficiency, and a large-capacity furnace type and comprehensive utilization of waste heat can be designed for it.
Process Introduction
After being transferred into the main plasma reaction cavity by the feeding system, the wastes go through the plasma gasification/vitrification process in the main plasma reaction cavity, through which the metal and vitreous bodies are collected by the collection system of metal and vitreous bodies. Then the gas enters the tail gas treatment system and is finally emitted as the gas reaches the standards. If there is an energy recycling system, the gas has to goes through it. This process has characteristics such as being safe, efficient, no secondary pollution and wide application, and provides a scientific and effective method and a new research platform for the harmless reduction of hazardous wastes. It is used to treat various organic and radioactive hazardous wastes
Technology Characteristics
Retention period for fume in combustor is less than 2 sec.
Temperature in combustor > 850
Thermal load in Combustor :9×10415×104kcal/( m3·h )
Temperature for superheated steam in exhaust-heat boiler : (350400)
Fume temperature in exhaust-boilers exit(350400)℃
clinker ignition loss≤3%

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