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New perspective on the interface reaction and morphology evolution in the reduction of manganese silicate for silicomanganese alloy production

机译:硅锰合金生产锰硅酸盐减少界面反应和形态演化的新视角

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SiMn alloy is the largest consumption product in the Mn series alloys. Manganese silicates generated during the pre-treatment procedures of manganese ores are the main ingredient for SiMn alloy production. However, conventional cognition is that manganese and silicon in the silicates are respectively reduced to Mn7C3 and SiC by carbon, and then the carbides interact to form alloy. In current study, pure MnSiO3 was synthesized firstly and then a new perspective on the interface reaction and morphology evolution for the reduction of pure MnSiO3 were investigated via XRD, SEM, OS and thermodynamics analyses. Interface reaction showed that the MnSiO3 was firstly reduced to manganese carbides and SiO2, and then the SiO2 was further reduced by the carbides to generate SiMn alloy. The intermediate product Mn7C3 played a crucial role since the reduction of SiO2 by newly born Mn7C3 preferentially conducted than the carbon reductant. Morphology evolution of the interface between C and MnSiO3 as well as thermodynamic calculations of Mn-Si-O and Mn-Si-C-O systems were minutely clarified in this work to clarify the reduction mechanism. In addition, decomposition of SiMn alloy to SiC ceramic at 1700 degrees C was an important inducement to illustrate the frangibility of industrial SiMn alloy product.
机译:SIMN合金是MN系列合金中最大的消费产品。在锰矿矿石预处理程序期间产生的锰硅酸盐是SIMN合金生产的主要成分。然而,常规认知是硅酸盐中的锰和硅分别通过碳减少到Mn7C3和SiC,然后碳化物相互作用以形成合金。在目前的研究中,首先合成纯MNSIO3,然后通过XRD,SEM,OS和热力学分析研究了对界面反应的新的界面反应和形态演化的新观点。界面反应显示,首先将MNSIO3还原为碳化物和SiO 2,然后通过碳化物进一步减少SiO 2以产生SIMN合金。中间产物MN7C3起到至关重要的作用,因为通过新出生的MN7C3优先于碳还原剂减少SiO 2。在这项工作中,小心地阐明了C和MNSIO3之间的界面的形态学以及Mn-Si-O和Mn-Si-C-O系统的热力学计算,以阐明减少机制。此外,SIMN合金在1700摄氏度下对SiC陶瓷的分解是说明工业SIMN合金产品脆性的重要诱因。

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