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Improving Separation of Cu-Fe from Copper Slag by Modification of the Molten Slag

机译:通过熔渣的改性改善铜渣中铜铁的分离

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Iron mainly exists as the magnetite and fayalite, while copper is primarily dispersed in the form of fine matte particles in the copper slag, which is difficult to recover by conventional separation techniques. In this paper, the feasibility of an integrated technological route to improve beneficiation of copper and iron components from copper slag through the modification of molten slag was investigated, and the results shows that: the copper grade of rougher copper concentrate was increased from 6.43 to 11.04%, iron recovery from magnetic separation was increased significantly from 32.40 to 63.36%, and other evaluation indexes were changed slightly, in comparison with unmodified copper slag. Meanwhile, the grains of the target minerals in the modified slag grew considerably to a mean size >50 μm after slow cooling. Ultimately, the beneficiation efficiency of copper and iron was improved because of the ease with which the target minerals were liberated.
机译:铁主要以磁铁矿和铁橄榄石的形式存在,而铜主要以细磨砂颗粒的形式分散在铜渣中,这很难通过常规分离技术进行回收。本文研究了通过熔融熔渣改性来改善铜渣中铜铁成分的综合工艺路线的可行性,结果表明:粗铜精矿的铜品位从6.43提高到11.04 %,与未改性的铜渣相比,从磁选中回收的铁从32.40显着提高到63.36%,其他评估指标也有轻微变化。同时,经过缓慢冷却后,改性矿渣中目标矿物的晶粒长大至平均粒径> 50μm。最终,由于容易释放目标矿物,铜和铁的选矿效率得以提高。

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