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Lab-scale Experiment and Industrial Test for Direct Alloying with the Ferrosilicon-MoO3 Self-reducing Briquette

机译:硅铁-MoO 3 自还原团块直接合金化的实验室规模试验和工业试验

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Lab-scale experiment and industrial test for direct alloying with ferrosilicon-MoO_(3) self-reducing briquette have been conducted. In order to avoid volatilization of MoO_(3) during direct alloying, the high-temperature volatilization characteristics of MoO_(3) has been studied, and it can inhibit the volatilization of MoO_(3) when adding ~25% MgO during the heating. Furthermore, lab-scale direct alloying experiments with self-reducing briquette were carried out to determine the optimum composition of briquette to get high yield of Mo in a medium frequency induction furnace. The Mo yield was related to the excess reducing agent (ferrosilicon) and the right flux addition (MgO, CaF_(2)) inside the briquette. The results indicated that the amount of ferrosilicon maintaining the mixing molar ratio Si/O at 2 should be added. The flux addition must be controlled to form molten slag rapidly inside the self-reducing briquette. With the optimum composition of reducing agent and flux addition, the yield of Mo could reach as high as ~96%. When adding the self-reducing briquette into a 60 t ladle of Shijiazhuang Iron and Steel Co. Ltd. for industrial test, the average yield of Mo was 98.25%, and the change in the technology did not have an impact on the quality of products.
机译:进行了硅铁-MoO_(3)自还原团块直接合金化的实验室规模试验和工业试验。为了避免直接合金化过程中MoO_(3)的挥发,研究了MoO_(3)的高温挥发特性,在加热过程中添加约25%的MgO可以抑制MoO_(3)的挥发。此外,在中频感应炉中,进行了具有自还原性团块的实验室规模直接合金化实验,以确定获得高Mo产量的团块的最佳组成。 Mo的产量与团块内部过量的还原剂(硅铁)和正确的助熔剂添加量(MgO,CaF_(2))有关。结果表明,应添加保持混合摩尔比Si / O为2的硅铁量。必须控制助熔剂的添加,以在自还原团块内迅速形成熔融炉渣。借助最佳的还原剂组成和助熔剂添加量,Mo的收率可高达〜96%。在石家庄钢铁有限公司60吨钢包中加入自还原型团块进行工业试验时,钼的平均产率为98.25%,技术的变化对产品质量没有影响。 。

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