Zhao Wei, Wang Qi, Liu Haixiao, Zhang Lei, Zou Zongshu. Experimental study on MSW incineration with co-current shaft furnace[J]. Chinese Journal of Environmental Engineering, 2009, 3(11): 2082-2086.
Citation: Zhao Wei, Wang Qi, Liu Haixiao, Zhang Lei, Zou Zongshu. Experimental study on MSW incineration with co-current shaft furnace[J]. Chinese Journal of Environmental Engineering, 2009, 3(11): 2082-2086.

Experimental study on MSW incineration with co-current shaft furnace

  • Received Date: 25/07/2009
    Accepted Date: 07/11/2008
    Fund Project:
  • In all the municipal solid waste(MSW)disposal technology, incineration with gasification and melting has been taken as a environmentally sound and zero emission technology owing to avoid second-pollution of heavy metals and dioxin. In this background, a direct gasification and melting incineration process with co-current shaft furnace is put forward. In the new process, the main equipment is a shaft furnace. In which, MSW and combustion-supporting air are co-current from top to bottom. Fuel gas from pyrolysis and gasification burns completely in the bottom in order to offer energy for slag melting. The simulation experiment of the co-current shaft furnace has been done. The results of simulation experiment show that the temperature on the condition of co-current is much higher than under the condition of countercurrent and more CO2 are discharged from cocurrent reaction tube. It can be concluded that the co-current shaft furnace is more suitable for direct gasification and melting incineration process.
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    沈阳化工大学材料科学与工程学院 沈阳 110142

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Experimental study on MSW incineration with co-current shaft furnace

Fund Project:

Abstract: In all the municipal solid waste(MSW)disposal technology, incineration with gasification and melting has been taken as a environmentally sound and zero emission technology owing to avoid second-pollution of heavy metals and dioxin. In this background, a direct gasification and melting incineration process with co-current shaft furnace is put forward. In the new process, the main equipment is a shaft furnace. In which, MSW and combustion-supporting air are co-current from top to bottom. Fuel gas from pyrolysis and gasification burns completely in the bottom in order to offer energy for slag melting. The simulation experiment of the co-current shaft furnace has been done. The results of simulation experiment show that the temperature on the condition of co-current is much higher than under the condition of countercurrent and more CO2 are discharged from cocurrent reaction tube. It can be concluded that the co-current shaft furnace is more suitable for direct gasification and melting incineration process.

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