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Process for recovery of metal values from alnico scarps by electro-chemical leaching technique

机译:通过电化学浸出技术从铝镍钴合金中回收金属价值的方法

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This paper reports the study on the dissolution behavior of the alnico scraps generated during the manufacture of alnico permanganate magnets. Composition of the scrap used in the study was: 26.09% Co, 16.36% Ni, 47.02% Fe and 8.04% AI. Electroless leaching of the alnico scraps with sulphuric acid had no significant influence on the extraction of metals and which was due to the low surface area and less activity of the scraps. In order to improve the leaching efficiency, electric current was introduced to the system. Various experimental factors such as time, sulphuric acid concentration and current density were studied to determine the best conditions for the dissolution of the metal values. Effective leaching of scrap was due to the synergistic effect of ferric sulphate and temperature both generated during leaching with the current and sulphuric acid concentration in the system. Based on the leaching efficiency, they could be order as Ni > Fe > Co > Al. Under optimum leaching conditions (sulphuric acid 10% (v/v), current density 400 A/m(2) and equilibrium time 4 h), more than 99% of the metal content was dissolved. Based on the process steps involved, a flow sheet was proposed for the commercial application. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文报道了在制造高锰酸铝磁铁时产生的铝屑废料的溶解行为的研究。该研究中使用的废料成分为:26.09%Co,16.36%Ni,47.02%Fe和8.04%AI。用硫酸对铝镍合金废料进行化学浸出对金属的提取没有显着影响,这是由于废料的表面积小和活性较低。为了提高浸出效率,将电流引入系统。研究了各种实验因素,例如时间,硫酸浓度和电流密度,以确定溶解金属值的最佳条件。废料的有效浸出是由于浸出过程中产生的硫酸铁和温度与系统中电流和硫酸浓度的协同作用。基于浸出效率,它们的顺序可以是Ni> Fe> Co> Al。在最佳浸出条件下(硫酸10%(v / v),电流密度400 A / m(2)和平衡时间4 h),溶解了99%以上的金属。基于所涉及的过程步骤,提出了用于商业应用的流程图。 (C)2016 Elsevier B.V.保留所有权利。

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