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Air classification of blast furnace dust catcher dust for zinc load reduction at the sinter plant

机译:高炉除尘器灰尘的空气分类,以减少烧结厂的锌负荷

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摘要

The off-gas discharged from a blast furnace is de-dusted in a first stage by a dust catcher or a cyclone. The separated dust consists mainly of iron and coke. Therefore, most of this dust is recycled in the sinter plant. A higher Zn content of the dust is undesirable because the allowed Zn content in the sinter feed material is limited. The reduction of the Zn content of the dust by a simple process would be helpful in the case of higher Zn content in the blast furnace dust. In classification experiments, it has been demonstrated that the Zn content of the blast furnace dust increases with decreasing particle size. Thus, air classification of the dust can be applied to separate the Zn-enriched fines. By separating a small fraction of fines (about 10-20 %) from the blast furnace dust, a reduction of the mass of Zn in the remaining coarse fraction for recycling in the range of 40-60 % is possible and only 5-10 % of the carbon is lost.
机译:从高炉排出的废气在第一阶段由集尘器或旋风除尘器除尘。分离出的粉尘主要由铁和焦炭组成。因此,大部分粉尘在烧结厂中被回收。灰尘中较高的Zn含量是不希望的,因为限制了烧结进料中允许的Zn含量。在高炉粉尘中较高的Zn含量的情况下,通过简单的方法降低粉尘中的Zn含量将很有帮助。在分级实验中,已经证明高炉粉尘中的Zn含量随着粒径的减小而增加。因此,灰尘的空气分类可以用于分离富锌的细粉。通过从高炉粉尘中分离出一小部分细粉(约10%至20%),可将剩余粗颗粒中Zn的质量降低40-60%的范围内,仅5-10%的碳损失了。

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