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首页> 外文期刊>Russian Metallurgy(Metally) >Metallurgical Beneficiation of Iron Laterite Ores with the Formation of a Metallic Nickel–Cobalt Concentrate
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Metallurgical Beneficiation of Iron Laterite Ores with the Formation of a Metallic Nickel–Cobalt Concentrate

机译:铁红土矿石的冶金矿物,形成金属镍 - 钴浓缩物

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摘要

A new process is developed for metallurgical beneficiation of iron laterite nickel-containing (limonite) ores with the formation of a metallic nickel–cobalt concentrate. This process includes reducing roasting of the ores with sulfur-containing additions in the temperature range 1100–1200°C, the fragmentation of the roasting product, and the magnetic separation of metallic and slag phases. The coarsening of metallic particles in roasting is shown to occur with the participation of a low-melting-point phase (iron oxysulfide Fe(O,S)). In this case, nickel and cobalt concentrate in a metallic phase in the form of an alloy with iron (ferronickel). At the optimum charge composition and reducing roasting parameters, ferronickel particles coalesce and grow to 40–100 μm, which creates favorable conditions for the subsequent beneficiation of the roasting product (cinder) by magnetic separation. After wet magnetic separation of a fragmented cinder, the extraction of nickel and cobalt into a magnetic fraction is 92 and 84%, respectively. When a poor limonite ore (1.03% Ni, 0.05% Co) is processed according to the developed technology, the synthesized metallic concentrate contains up to 8.3% Ni and 0.37% Co.
机译:开发了一种新的方法,用于含金金属镍镍(褐铁矿)矿石的冶金矿物,形成金属镍钴浓缩物。该方法包括在1100-1200℃的温度范围内,焙烧产物的破碎和金属和炉渣相的磁分离,减少含硫添加的矿石的烘烤。随着低熔点相的参与(铁氧氟氢硫醚Fe(O,S)),显示了金属颗粒在烘焙中的粗化。在这种情况下,镍和钴浓缩成具有铁(Ferronickel)的合金形式的金属相。在最佳电荷组成和减少焙烧参数中,铁龙尼克利颗粒聚结并生长至40-100μm,这为通过磁分离产生了随后的焙烧产品(煤渣)的有利条件。在碎裂的碎片的湿法分离后,分别将镍和钴的萃取分别为92和84%。根据发达的技术处理较差的褐铁矿矿石(1.03%,0.05%CO),合成的金属浓缩物含有高达8.3%的Ni和0.37%Co.

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