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Application of magnetic separation to steelmaking slags for reclamation

机译:磁选技术在炼钢渣回收中的应用

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摘要

Integrated iron and steel plants generate large amounts of metallurgical slag, which usually contains some quantity of metals or mixtures of oxides that could be treated to be recycled in various applications. The conventional method for disposal of slags is dumping. However, it is possible to process the slags to be used in the production of metallic iron, or as an additive in cement making. In this study, a basic oxygen furnace (BOF) steelwork slag obtained from the Kardemir integrated iron and steel works, Karabuk, Turkey is used. A drum magnetic separator system with pre-engineered crucial processing parameters of drum revolution speed, drum radius, drum flesh thickness, and magnitude of the magnetic field applied is utilized, as these parameters have a competing influence on the results. Subsequently, the effects of slag grain size and the drum-blade gap are investigated in the separation efficiency of magnetic grains. It is found that collection of magnetic grains is improved by decreasing the grain size of slags and moreover, the collection of magnetic grains fraction is increased with an increase in the gap between the blades and drum.
机译:钢铁联合厂产生大量的冶金渣,通常含有一些金属或氧化物混合物,这些金属或氧化物混合物经处理可在各种应用中循环利用。处置炉渣的常规方法是倾倒。但是,可以处理要用于生产金属铁或用作水泥制造添加剂的矿渣。在这项研究中,使用了从土耳其卡拉布克的Kardemir钢铁联合厂获得的碱性氧气炉(BOF)钢渣。采用了鼓式磁选机系统,该系统具有预先设计的关键处理参数,如鼓转速,鼓半径,鼓肉厚和所施加磁场的大小,因为这些参数对结果产生竞争性影响。随后,研究了炉渣粒度和鼓形叶片间隙对磁性颗粒分离效率的影响。已经发现,通过减小炉渣的晶粒尺寸可以改善磁性颗粒的收集,此外,随着叶片和鼓之间的间隙的增加,磁性颗粒分数的收集也可以增加。

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