Application of manganous limestone as a fluxing addition at pellets production

I. Belikov, G. Isaenko, G. A. Nechkin, V. Kobelev
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引用次数: 2

Abstract

Usage of non-fluxed pellets in blast furnaces results in blocking of hearth coke filling, decreasing of blast furnaces productivity and increasing of coke rate. The wide range of plastic-viscous state and non-sufficient filterability of pellets slag portion through the coke filling are the main reasons of the consequences. Fluxed pellets have narrower interval of plastic-viscous state and better filterability of pellets slag portion through the coke filling. Their utilization enables to decrease the gas-dynamic resistance of blast furnace cohesion zone, to eliminate progressive hearth blocking, to intensify the hot metal production process and to increase its economic efficiency. In 70–80thof the previous century attempts were made to substitute the bentonite in burden at pellets production by hydrated lime and burnt lime, by marl, by nontronite clay, by red sludge and other additives, combining properties of the raw pellets strengthening and fluxing. But the methods listed were not implemented practically, in particular, because of difficulties in those two properties effective combining. Last years a new raw material appeared at the fluxes market – the manganous limestone. Manganese oxide, contained in it, decreases the sinter smelting temperature, calcium carbonate acts as a flux, while water and physical properties of the limestone improve the increase of the burden lump-forming capacity and sinter strength. The aim of the study was to check the manganous limestone influence on the production process and raw pellets strength, change of roasting parameters and strength of roasted pellets, as well as change of high-temperature properties of fluxed pellets made of Stojlensky GOK concentrates. The study were carried out in laboratory conditions by usage of Dash-Salakhlin bentonite and manganous limestone. The results of laboratory study of both raw and roasted pellets, obtained at utilization of manganous limestone as a fluxing additive to burden, showed, that their physical and mechanical properties are higher and metallurgical properties are higher, compared with non-fluxed pellets.
锰石灰石作为助熔剂在球团生产中的应用
高炉使用无熔剂球团会造成炉底焦炭填充堵塞,降低高炉生产效率,提高出焦率。造成这种后果的主要原因是球团的塑性粘滞状态范围大,以及充焦后球团渣部分的过滤能力不足。助熔剂球团的塑粘状态间隔较窄,通过充焦对球团渣部分的过滤性能较好。它们的使用可以降低高炉凝聚区的气动阻力,消除炉膛的进行性堵塞,强化铁水生产过程,提高其经济效益。在上世纪70 - 80年代,人们尝试用水合石灰和燃烧石灰、泥灰泥、非膨润土粘土、红泥和其他添加剂代替膨润土在球团生产中的配料,结合了原球团的强化和助熔剂性能。但所列举的方法在实际应用中并没有得到很好的实施,特别是难以将这两种特性有效地结合起来。去年在助熔剂市场上出现了一种新的原料——含锰石灰石。其中所含的氧化锰降低了烧结矿冶炼温度,碳酸钙起到助熔剂的作用,而石灰石的水分和物理性质提高了炉料结块能力和烧结矿强度。研究了锰石灰石对Stojlensky GOK精矿熔炼球团生产工艺和生球团强度的影响,焙烧参数和焙烧球团强度的变化,以及熔炼球团高温性能的变化。在实验室条件下,采用Dash-Salakhlin膨润土和含锰石灰石进行了研究。利用含锰石灰石作为炉料助熔剂获得的生球团和焙烧球团的实验室研究结果表明,与未助熔剂的球团相比,其物理力学性能和冶金性能更高。
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