Carbonization Furnace Design

In the previous article. I believe you have a certain understanding of the carbonisation furnace. It has a wide range of applications in the field of biomass energy industry. Therefore the design of the carbonisation furnace involves many factors and links. If the design is not appropriate, it will directly affect its carbonisation efficiency, the quality of the finished product and the operation and maintenance of the equipment. The carbonisation furnace adopts fully automated feeding and discharging. The processing capacity is more efficient and continuous operation. Thus realising the advantageous features such as fast, environmental protection, high efficiency and energy saving.

 

The components of the carbonisation furnace are: preheating zone, carbonisation zone, cooling zone, discharging zone and so on. The preheating zone first dries and preheats the biomass raw material and heats it up to the temperature suitable for carbonisation. The carbonisation zone then converts the biomass into activated carbon and carbon products through pyrolysis. The finished products are then cooled to a safe temperature by a cooling machine. From there the final product carbon is simply discharged through the discharge system.

 

Carbonization Furnace Design

 

The key factors of carbonisation furnace design:
1. Material conveying: Considering the way of transporting materials, speed and uniform feeding, etc.. Ensure the continuity of carbonisation and stability of the whole process. Continuous feeding and discharging of materials can be achieved.

2. Carbonation efficiency: the improvement of carbonation efficiency is the most important goal of carbonation furnace. Carbonation efficiency can be achieved through the design of the furnace structure, heating mode, atmosphere conditions and other factors.

3. Temperature control: In the carbonisation process, precise temperature control is essential. Therefore, the heating method, temperature sensor, temperature control system, etc. should be considered. Thus ensuring the uniformity and temperature of the carbonisation furnace.

 

The design of the carbonisation furnace has to consider various factors. Therefore, the design and optimisation should be carried out reasonably. Thus, a fast and efficient carbonisation process is achieved. It can provide strong support for the rapid development of biomass energy industry. Therefore the design of continuous carbonisation furnace will also apply to a wider range of biomass materials and higher production efficiency needs.

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