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All Pellets Operation in Kobe No. 3 Blast Furnace under Intensive Coal Injection

机译:强化注煤在神户三号高炉的所有粒料操作

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In Kobe No. 3 blast furnace (third campaign) (inner volume: 1 845m~3; blown in on April 5, 1983), the use of pellets was begun as a result of suspended operation of the sintering plant in the end of May 1999 and Kobe 3BF began all pellets operation (pellet: 73%; lumpy ore: 27%) in the end of September 2001. This is dedicated to the advancement of all pellets operation under intensive coal injection with the bell-less blast furnace. A study has been made of the deepening of understanding on the phenomena of softening and melting properties by using the mixture of dolomite-fluxed pellets and low basicity pellets. In order to prevent the growth of cohesive zone root by using of low basicity pellets, the charging technique of time-series discharging based on model experiments was developed and applied to an actual furnace. To achieve the high accurate burden distribution control, the change of ore falling trajectory by fling-up of pellets inside the rotation chute was monitored and corrected. With respect to slag and metal chemistry under the low slag ratio operation with use of low basicity pellets, securing the slag fluidity and desulfurizing efficiency was designated as control points.
机译:在神户三号高炉(第三批)(内部容积:1 845m〜3;于1983年4月5日吹入)中,由于烧结厂于5月底暂停运营,开始使用球团矿1999年和神户3BF于2001年9月底开始了所有球团矿的运营(球团矿:73%;块状矿石:27%)。该项目致力于在无钟高炉强化注煤的条件下推进所有球团矿的运营。通过使用白云石助焊颗粒和低碱度颗粒的混合物,已经加深了对软化和熔融特性现象的认识。为了防止低碱度粒料的生长,防止粘结区根部的生长,开发了基于模型实验的时序放电装料技术,并将其应用于实际的熔炉。为了实现高精度的负荷分配控制,对由于在旋转溜槽内堆积颗粒而引起的矿石下落轨迹的变化进行了监视和校正。对于在使用低碱度球团的低炉渣比操作下的炉渣和金属化学,将确保炉渣流动性和脱硫效率指定为控制点。

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