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Factors Affecting Silicomanganese Production using Manganese Rich Slag in the Charge

机译:装料中使用富锰渣影响硅锰生产的因素

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摘要

Silicomanganese is widely used as a complex reducer and an alloying addition in the production of various grades of steel due to its economic and metallurgical advantages. It is also used as a semi-product in the manufacture of medium- and low-carbon ferromanganese and metallic manganese. Manganese-rich slag, resulting from high carbon ferromanganese production, has the advantages of high manganese content, high Mn/Fe ratio, low excess oxygen, low phosphorus content, low fine content and low cost. Such slag seems to be very attractive to use as raw materials for the production of silicomanganese alloys. In the present study, experimental heats were designed and carried out to optimise the factors affecting the production process of silicomanganese using manganese rich slag in the charge. The results of pilot plant experimental heats showed that the optimum metallic yield and recoveries of manganese and silicon are obtained with an initial slag basicity, (CaO + MgO)/(Al_2O_3), of 1.8 by using dolomite as fluxing material and charging quartzite and fluorspar in percentage of 25percent and 4percent of the blend, respectively. The results also showed that an amount of 30 percent of coke in excess of the stoichiometric amount should be added. These results are relative for the specific high Al_2O_3 ores used.
机译:硅锰由于其经济和冶金方面的优势,被广泛用作各种钢的复杂还原剂和合金添加剂。它也被用作中低碳锰铁和金属锰的半成品。高碳铁锰生产产生的富锰渣具有锰含量高,Mn / Fe比高,氧含量低,磷含量低,细粉含量低,成本低的优点。这种炉渣似乎很有吸引力,可以用作生产硅锰合金的原料。在本研究中,设计并进行了实验加热,以优化使用装料中富含锰的炉渣影响硅锰生产过程的因素。中试厂实验加热的结果表明,通过使用白云石作为助熔剂并充填石英岩和萤石,可以得到初始渣碱度(CaO + MgO)/(Al_2O_3)为1.8的最佳金属产量和锰和硅的回收率分别占混合物的25%和4%。结果还表明,应添加超过化学计量的30%的焦炭。这些结果与所用的特定高Al_2O_3矿石有关。

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