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Nickel recovery from metallurgical slags

机译:从冶金渣中回收镍

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摘要

In ferronickel (Fe-Ni) production from oxidized nickeliferous ores, mechanical losses of ferronickel in the slag are reduced by magnetic separation. Slag from the electric furnaces (E/Fs) contains 0.16% Ni. Its magnetic separation gave a pre-concentrate with 0.76% Ni, weighing approximately 6.5% of the feed. Nickel recovery was 29.7%. This pre-concentrate was then treated in a second (concentration) plant. Concentration treatment involves screening, crushing and magnetic separation. A pre-concentrate with 0.76% Ni gave a magnetic concentrate with 2.58% Ni and a nonmagnetic part with 0.35% Ni. Smelting of the non-magnetic part without the addition of a reduction agent in a laboratory electric arc furnace, gave a ferronickel alloy with approximately 20% Ni and a slag with 0.16% Ni.
机译:在从氧化的镍矿中生产镍铁(Fe-Ni)时,通过磁选减少了炉渣中镍铁的机械损耗。电炉(E / Fs)产生的炉渣中含有0.16%的镍。其磁分离得到0.76%的镍的预浓缩物,约占进料的6.5%。镍回收率为29.7%。然后将该预浓缩液在第二(浓缩)工厂中进行处理。浓缩处理包括筛分,粉碎和磁选。含0.76%Ni的预浓缩物可得到含2.58%Ni的磁性浓缩物和含0.35%Ni的非磁性部分。在实验室电弧炉中,在不添加还原剂的情况下进行非磁性部件的熔融,得到镍含量约为20%的镍铁合金和镍含量为0.16%的炉渣。

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