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The Preparation of High-Purity Iron (99.987) Employing a Process of Direct Reduction–Melting Separation–Slag Refining

机译:直接还原熔融分离渣精制高纯铁(99.987%)

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摘要

In this study, high-purity iron with purity of 99.987 wt.% was prepared employing a process of direct reduction–melting separation–slag refining. The iron ore after pelletizing and roasting was reduced by hydrogen to obtain direct reduced iron (DRI). Carbon and sulfur were removed in this step and other impurities such as silicon, manganese, titanium and aluminum were excluded from metallic iron. Dephosphorization was implemented simultaneously during the melting separation step by making use of the ferrous oxide (FeO) contained in DRI. The problem of deoxidization for pure iron was solved, and the oxygen content of pure iron was reduced to 10 ppm by refining with a high basicity slag. Compared with electrolytic iron, the pure iron prepared by this method has tremendous advantages in cost and scale and has more outstanding quality than technically pure iron, making it possible to produce high-purity iron in a short-flow, large-scale, low-cost and environmentally friendly way.
机译:在这项研究中,采用直接还原-熔融分离-炉渣精炼的方法制备了纯度为99.987 wt。%的高纯铁。制粒和焙烧后的铁矿石用氢气还原,得到直接还原铁(DRI)。在此步骤中除去了碳和硫,并从金属铁中排除了其他杂质,例如硅,锰,钛和铝。通过使用DRI中包含的二氧化亚铁(FeO)在熔融分离步骤中同时进行脱磷。解决了纯铁的脱氧问题,并且通过用高碱性炉渣精炼将纯铁的氧含量降低至10ppm。与电解铁相比,用这种方法制得的纯铁在成本和规模上具有极大的优势,并且比技术纯铁具有更优异的质量,从而可以以短流量,大规模,低成本生产高纯度铁。成本和环保方式。

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