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首页> 外文期刊>ISIJ international >Development of Pellet-Sinter Composite Agglomerate for Blast Furnace
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Development of Pellet-Sinter Composite Agglomerate for Blast Furnace

机译:高炉颗粒烧结复合团聚体的研制。

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摘要

Microfines of iron ore are generally utilized in Blast furnace in form of indurated pellets because sinter bed has limitation of accepting fines. Charging of acid pellets with basic sinter is the normal practice in blast furnace. However induration of pellets is very cost intensive. Further more, due to low angle of repose pellets distribution during charging with other materials in blast furnace creates inhomogeneous distribution. In order to alleviate the above problem, a composite mass of acid pellet and basic sinter has been developed, wherein; green pellets made-up of microfines were mixed with basic sinter mix and sintered the combined mass in a sinter bed of 10-12 kg scale. A composite mass of indurated pellet and sinter named as 'Pellet-Sinter Composite Agglomerate' was obtained. Linz Donawitz converter sludge and mill scale were used in pellet mix to provide in-situ heat in pellets that enhances incipient fusion to form bond in pellets. The developed sinter shows good shatter index (92%), tumbler index (67.5%) abrasion index (7.5%) and reducibility index (70%) and low reduction degradation index (27%), which are comparable with the conventional iron ore sinter made in the same set-up keeping other condition identical. This innovative technique help improving 30% microfines utilization in sinter bed, reduce coke breeze/energy consumption, reduce overall basicity of sinter and decrease flux composition.
机译:铁矿石的超细粉通常在高炉中以硬粒料的形式使用,因为烧结床对粉尘的接受有限。用碱性烧结炉给酸丸装料是高炉的常规做法。然而,粒料的硬化非常耗费成本。此外,由于在安放炉中与其他材料一起装填时,安息球的分布角度较小,因此会产生不均匀的分布。为了减轻上述问题,已经开发了酸丸和碱性烧结物的复合物料,其中;将由超细颗粒组成的绿色小球与基本烧结混合物混合,并在10-12 kg规模的烧结床上烧结合并的物料。获得了称为“球粒-烧结复合团聚物”的烧结球粒和烧结物的复合材料。在颗粒混合物中使用Linz Donawitz转炉污泥和工厂规模的污泥,以在颗粒中提供原位加热,从而增强初期熔融形成颗粒中的结合力。研制的烧结矿显示出良好的破碎指数(92%),不倒翁指数(67.5%),磨耗指数(7.5%)和还原性指数(70%)和低还原降解指数(27%),可与常规铁矿石烧结矿相媲美。在相同的设置下进行,其他条件不变。这项创新技术有助于提高烧结矿床中30%的细粉利用率,减少焦炭微风/能耗,降低烧结矿的整体碱度,并减少助熔剂成分。

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