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顆粒粒徑對流態化還原鐵礦粉黏結失流的影響

Influence of particle size on the sticking of iron ore fines in fluidized beds during reduction

  • 摘要: 采用熱態可視化流化床裝置,在一定表觀氣速條件下,研究1073 K溫度時不同粒級鐵礦粉的黏結失流.根據對黏結失流影響程度的不同,可將礦粉顆粒分為三個粒徑區間:中性氣氛升溫過程中失流的小粒徑顆粒;還原至較低金屬化率發生失流的中間粒徑顆粒;還原至高金屬化率也不發生失流的大粒徑顆粒.分別對他們不同的影響機理進行了分析.研究還發現在正常流化條件下,隨著礦粉顆粒粒徑的增大,還原失流后床層的膨脹幅度會減小.

     

    Abstract: By using a thermal-state visualizable fluidized bed,the sticking of iron ore fines with different particle sizes was investigated under the condition of certain superficial gas velocity at 1073 K. It is found that according to different influences of particle size on the sticking,iron ore fines can be divided into three particle size ranges:small particle size at which sticking occurs in the neutral atmosphere under 1073 K,medium particle size at which defluidization happens when iron ore fines are reduced to low metallization ratio on the fluidized bed,and large particle size at which sticking does not appear on the fluidized bed,even to the end of reduction.The influence mechanism of particle size was analyzed in this paper. Moreover,under the normal fluidization condition,the swelling degree of the fixed bed after defluidization decreases with increasing particle size.

     

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