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首页> 外文期刊>High temperature materials and processes >Novel Recycling Process of Mn by Sulfurization of Molten Slag from a By-Product of Steelmaking Process
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Novel Recycling Process of Mn by Sulfurization of Molten Slag from a By-Product of Steelmaking Process

机译:炼钢过程副产品硫渣熔融制锰的新循环工艺

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摘要

We propose a novel process to recycle Mn from steelmaking slag. The first step is to sulfurize the slag, producing a liquid sulfide phase (matte) without P. High-purity Fe-Mn alloys can then be made by desulfurizing the matte. However, to our knowledge, there have been no reports to date concerning the sulfurization of P and Mn contained in molten slag. Therefore, knowledge of the distribution of Fe, Mn and P between the matte and the molten slag is required to determine the feasibility of this process. In this study, the equilibrium distributions of Mn, Fe, Ca and P between a FeS-MnS matte and FeO-MnO-SiO_2-MgO-P_2O_5 slag with/without CaO are investigated under controlled partial pressures of oxygen and sulfur. It was found, as P is not present in the matte, that a separation of P from Mn was accomplished. The increament of (CaO + MgO)/SiO_2 in slag can improve the concentrations of Mn and Fe in the matte. The content of Ca in the matte was less than 2 mass%, even when the concentration ratio of CaO/SiO2 in the slag was unity.
机译:我们提出了一种从炼钢炉渣中回收锰的新工艺。第一步是对炉渣进行硫化,生成不含P的液态硫化物相(粗面)。然后,可以通过对粗面进行脱硫来制备高纯度的Fe-Mn合金。然而,据我们所知,迄今为止,还没有关于熔融炉渣中所含的P和Mn硫化的报道。因此,需要了解冰渣和熔融炉渣之间的铁,锰和磷的分布,以确定该方法的可行性。在这项研究中,研究了在有氧和无氧分压控制下,FeS-MnS雾面和FeO-MnO-SiO_2-MgO-P_2O_5含或不含CaO的炉渣中Mn,Fe,Ca和P的平衡分布。已经发现,由于在毛面中不存在P,因此可以实现P与Mn的分离。炉渣中的(CaO + MgO)/ SiO_2可以提高哑光中Mn和Fe的浓度。即使炉渣中的CaO / SiO 2的浓度比为1,也可以使毛坯中的Ca含量小于2质量%。

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