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Influence of Desulfurization with Fe 2 O 3 on the Reduction of Nickel Converter Slag

机译:脱硫与Fe 2 O 3对镍变渣还原的影响

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Generally in the nickel converter slag, metals are mainly in the form of sulfides, which are difficult to separate from slag. Although metal oxides in the slag, such as NiO, CoO, and Cu 2 O, are easily reduced into metal using carbon, the presence of sulfur inhibits the reduction reaction. In this study, the addition of Fe 2 O 3 to nickel converter slag produced desulfurized slag, which enhanced the carbothermal reduction process. Increasing the desulfurization rate promoted the conversion of sulfides into oxides in slag, which significantly increased the activity of NiO, Cu 2 O, and Fe 2 O 3 . However, the residual sulfur content had no significant effect on the activity of FeO and CoO, due to the high initial FeO content and cobalt existing mainly in the form of oxides. The optimum addition of Fe 2 O 3 was 15.0 g per 100 g nickel slag, while the desulfurization ratio was 36.84% and the rates of nikel, cobalt and copper recovery were 95.33%, 77.73%, and 73.83%, respectively.
机译:通常在镍转换器炉渣中,金属主要是硫化物的形式,这难以与炉渣分离。虽然炉渣中的金属氧化物,例如NiO,CoO和Cu 2 O,但是使用碳容易减少到金属中,但硫的存在抑制还原反应。在该研究中,加入Fe 2 O 3至镍转换器渣产生的脱硫渣,其增强了碳热还原过程。增加脱硫率促进硫化物将硫化物转化为炉渣中的氧化物,这显着增加了NiO,Cu 2 O和Fe 2 O 3的活性。然而,由于主要以氧化物形式存在,残留的硫含量对FeO和CoO的活性没有显着影响。 Fe 2 O 3的最佳加入为每100g镍渣15.0g,而脱硫率为36.84%,尼克尔,钴和铜回收率分别为95.33%,77.73%和73.83%。

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