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Fe表面納微結構對Fe2O3流態化還原過程黏結失流的影響

Effect of iron surfaces with nano/micro structures on the sticking of Fe2O3 in fluidized bed reduction

  • 摘要: 利用可視流化床分別研究了Fe2O3和Fe粉在流化過程中黏結失流發生的過程.結果表明,Fe2O3在惰性氣氛中流化不發生黏結失流,而在還原氣氛中發生黏結失流,且黏結發生時間恰好是鐵晶核析出的初始階段.Fe顆粒在還原和惰性氣氛中流化均出現黏結失流現象.鐵的生成是產生黏結的前提條件.當Fe顆粒流化溫度從700℃升高到750℃時,黏結臨界時間提前了11min,表明金屬鐵的表面特性是導致黏結的主要內因.掃描電鏡分析表明,Fe和Fe2O3表面形成的納微結構是導致Fe2O3流化還原黏結失流的重要因素.

     

    Abstract: The process of sticking of Fe2O3 and iron particles during fluidization was investigated with a visual fluidized bed reactor.The results showed that Fe2O3 would defluidize in reduction gases but not in inert gases,and the sticking point happened around the initial stage of iron nucleation.The sticking of iron particles was observed in both reduction and inert gases.It is indicated that the premise of sticking was the formation of iron.When the fluidization temperature increased from 700℃ to 750℃,the critical point of sticking occurred 11 min in advance.It is the temperature-determined surface property of metallic iron that leads to the sticking.Scanning electron microscope(SEM) analysis proved that the sticking of Fe2O3 in fluidized bed reduction resulted mainly from iron surfaces with nano/micro structures.

     

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