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Assessment of blast furnace behaviour through softening-melting test

机译:通过软熔试验评估高炉行为

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Blast furnace operation is a complex phenomenon; maximising productivity requires a balance of burden characteristics. Meeting the targets of optimum sinter strength and minimum slag volume is a matter of concern for high alumina (2-0-2-1 percent) iron ore fines. To achieve reduced slag volume MgO in the sinter may be reduced and sinter strength maintained by addition of coke breeze. However, the associated increase in fuel rate during sintering raises the FeO content. The effects of increasing FeO and lowering MgO on the softening melting behaviour of burden materials have been assessed in laboratory experiments and the results compared with data from blast furnace operations at Tata Steel. It was found that with sinter containing >12 percent FeO, erratic furnace behaviour was encountered and energy adjustment was required with the reduction in MgO (1-77-1-48 percent) to ensure smooth operation.
机译:高炉操作是一个复杂的现象。要使生产率最大化,就需要平衡负担特征。对于高氧化铝含量(2-0-2-1%)的铁矿粉,要达到最佳烧结强度和最小炉渣体积的目标,是一个值得关注的问题。为了减少炉渣体积,可以减少烧结矿中的MgO,并通过添加焦炭微风来保持烧结矿强度。然而,在烧结过程中伴随的燃料速率的增加使FeO含量增加。已经在实验室实验中评估了增加FeO和降低MgO对物料的软化熔融行为的影响,并将结果与​​塔塔钢铁公司高炉操作的数据进行了比较。结果发现,烧结矿中的FeO含量> 12%时,会遇到不稳定的熔炉行为,并且需要进行能量调整以减少MgO(1-77-1-48%),以确保运行平稳。

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