Reduction model of carbon-containing pellets made of zinc-bearing dust
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摘要: 以轉底爐處理鋼鐵廠含鋅粉塵為背景,結合轉底爐實際生產工藝條件,建立了含鋅粉塵內配碳球團直接還原一維非穩態數學模型.模型不僅考慮了鐵氧化物的還原反應和碳的氣化反應,還加入了氧化鋅的還原反應,并通過實驗驗證了模型的準確性.利用計算結果分析討論了爐溫、球團半徑及孔隙率對球團還原的影響.爐溫對球團的金屬化率和脫鋅率均有顯著影響,孔隙率和球團半徑僅對球團的金屬化率影響較小,而對脫鋅率基本沒有影響.Abstract: Taking the treatment of zinc-bearing dust by rotary hearth furnaces (RHF) as the a direct reduction mathematical model of carbon-containing pellets made of zinc-bearing dust was built in combination with the actual production process of RHF. The model takes into account not only the reduction of iron oxides and Boudouard reaction but also the reduction of zinc oxide. Experimental results proved the validity of the model. The effects of furnace temperature, pellet radius and porosity on the reduction of the pellets were investigated on the basis of calculation data by the model. Furnace temperature has significant effect on the metallization rate and zinc removal rate; but pellet radius and porosity have less influence on metallization rate and no influence on the zinc removal rate.
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Key words:
- dust /
- pelletizing /
- metallurgical furnaces /
- ore reduction /
- kinetics /
- mathematical models
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