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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >A novel process to upgrade the copper slag by direct reduction-magnetic separation with the addition of Na2CO3 and CaO
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A novel process to upgrade the copper slag by direct reduction-magnetic separation with the addition of Na2CO3 and CaO

机译:通过添加Na 2CO3和CaO直接减少磁性分离来提升铜渣的新方法

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An innovative technology for direct reduction-magnetic separation with the addition of Na2CO3 and CaO was studied to upgrade copper slag assaying 40.33% Fe-total and 0.65% Cu. It is difficult to recover iron and copper from the slag by direct reduction since the iron mainly occurs in fayalite and the copper exists in copper sulfide. Additives such as Na2CO3 and CaO has been proven to be capable of reinforcing the reduction of refractory iron ore in many papers. In this study, the effect of Na(2)CO(3 )dosage and binary basicity (CaO/SiO2) on the coal-based reduction of copper slag was investigated. The results show that the addition of CaO at 0.5 basicity and 8% sodium carbonate, the recovery of the iron and copper can be significantly improved to 94.3% and 86.5%, respectively. Meanwhile, the iron and copper content of magnetic concentrate are maintained at 90.5% and 1.2%, respectively, which can be used as burden for smelting of weathering steel, and the nonmagnetic tailings obtained in this process can be applied as raw materials in cement and industry, and the dust collected from the direct reduction process contains 50.65% Zn and 8.56% Pb at a recovery of 99.16% and 91.89%, and can be used as feed for extraction of Zn and Pb. (C) 2019 Elsevier B.V. All rights reserved.
机译:研究了通过添加Na 2 CO 3和CaO直接减少磁性分离的创新技术,升级铜渣测定40.33%Fe-总和0.65%Cu。通过直接减少,难以从炉渣中恢复铁和铜,因为铁主要发生在硫酸盐中,铜存在于硫化铜中。已被证明能够加强许多论文中的难治性铁矿石的减少的添加剂。在该研究中,研究了Na(2)CO(3)剂量和二元碱度(CAO / SiO2)对铜渣的煤基降低的影响。结果表明,加入0.5碱度和8%碳酸钠,铁和铜的回收率分别升高至94.3%和86.5%。同时,磁性浓缩物的铁和铜含量分别保持在90.5%和1.2%,可用作熔化耐候钢的负担,并且在该过程中获得的非磁性尾矿可以作为水泥中的原料应用于原料和行业,从直接还原过程中收集的灰尘含有50.65%的Zn和8.56%的Pb,回收率为99.16%和91.89%,可用作Zn和Pb的饲料。 (c)2019年Elsevier B.V.保留所有权利。

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