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Regenerative incinerator

低温有机废气经预热室吸热升温后,进入燃烧室( 氧化室)高温焚烧( 加热升温至 800℃ ),使废气中的 VOCs 在 氧化室氧化分解成 CO2和 H2O。氧化后的高温气体流经另一个蓄热室,与其中的陶瓷蓄热体进行热交换后排放。蓄 热室蓄存的热量则用于预热新进入的有机废气,经过周期性地改变气流方向从而保持炉膛温度的稳定。热氧化法是...


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Product Introduction

More than 10 years of focus on environmental protection equipment

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After the low-temperature organic waste gas is heated and absorbed by the preheating chamber, it enters the combustion chamber (oxidation chamber) for high-temperature incineration (heated to 800 ℃), causing the VOCs in the waste gas to oxidize and decompose into CO2 and H2O in the oxidation chamber.

The high-temperature gas after oxidation flows through another heat storage chamber and exchanges heat with the ceramic heat storage body before being discharged. The heat stored in the heat storage chamber is used to preheat the newly introduced organic waste gas, and periodically change the direction of the airflow to maintain the stability of the furnace temperature.

Thermal oxidation method is a method of using thermal oxidation and catalytic oxidation technology to destroy organic matter in emissions. Compared with other thermal oxidation technologies, the typical feature of RTO is that it uses thermal storage ceramic materials

The material or other high-density inert materials absorb and store the energy of the emitted exhaust gas, and then release the energy to the low-temperature gas entering, instead of using shell and tube heat exchange oxidation technology for heat exchange between two fluids. Its essence is to decompose organic exhaust gas into non-toxic and harmless CO2 and H2O.