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Ring Formation in the Smelting of Saprolite Ni-ore in a Rotary Kiln for Production of Ferro-nickel Alloy: Examination of the Mechanism

机译:在生产铁镍合金的回转窑中腐泥镍矿中成环的机理研究

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The mechanism of SR (Slag-Ring) formation in the actual rotary kiln that proposed in the previous paper has been examined by the firing experiment of the anthracite and limestone composite Ni-ore briquettes using the batch type experimental kiln. The rapid increases in the degree of reduction and CO gas content and the sticking begin to take place at about the same time. The temperature of raw materials apparently begin to decrease from around 1200°C owing to the sticking of raw materials to the tips of alumina (SSA-S) protecting tube with an inserted thermocouple, entering the depression region. Therefore, from above mentioned the mechanism of SR formation is confirmed. A large amount of charge of powdery materials and the increase in the gas velocity at the top of SR causes SR to shrink and fall into the vicious circle, which allows the serious difficulty in the operation of the kiln. The sintering of briquettes provides the suppression of powder generation coming from the fracture of that, which allows no occurrence of sticking. The mechanism of MR (Metal-Ring) formation is extremely involved in the behavior of fine particles as well as SR. A large amount of fine reduced metal with high C content without the growth transports toward the discharge end, allowing that to melt and be precipitated on the wall by Ostwald ripening.
机译:通过使用分批式实验窑对无烟煤和石灰石复合镍矿压块进行烧成试验,已经研究了前文提出的在实际回转窑中形成SR(炉渣-环)的机理。还原度和CO气体含量的迅速增加以及粘附几乎同时开始。原材料的温度显然从1200°C左右开始下降,这是因为原材料粘附到带有插入的热电偶的氧化铝(SSA-S)保护管的尖端,进入凹陷区域。因此,从上面提到的,可以确定SR的形成机理。大量粉状物料的加入和SR顶部气体速度的增加导致SR收缩并掉入恶性循环,这给窑炉的操作带来了严重困难。压块的烧结可抑制由于破裂而产生的粉末,从而不会发生粘结。 MR(金属环)形成的机制与细颗粒以及SR的行为密切相关。大量具有高C含量的还原金属细粉,没有生长向放电端迁移,使之熔化并因奥斯特瓦尔德熟化而沉淀在壁上。

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