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Single-stage production of the nickel concentrate with processing of the rhenium-containing refractory alloy

机译:镍浓缩的单级生产,加工含铼耐火合金

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摘要

The results of electrochemical processing of the ZhS32-VI refractory alloy in nitric acid solutions are discussed. The main production idea involves the performance of an electrochemical process under the controlled value of the anodic potential. This procedure provides the preferential transfer of nickel, which is the alloy base, into the solution and the formation of the cathodic product or metallic nickel with a purity no lower than 95%. Experiments on the electrochemical dissolution of the mentioned alloy at various values of the anodic potential are performed. It is determined that the cathodic product contains at E (a) = 1.05 V, %: Ni 94.9, Re 0.2, Co 4.7, and Cr 0.1. It is established that the incorporation of the chloride ion (20 g/L) into the nitric acid electrolyte exerts no substantial effect on process characteristics; notably, the amount of nickel in the anodic slime decreases from 2.4 to 1.6%, and no considerable increase in the nickel content in the cathodic product takes place. The exclusion is a considerable increase in the transfer rate of rhenium into the electrolyte; notably, the rhenium concentration in the nitric acid electrolyte after the 10-h production process is 1.26 g/L, and that in the nitric acid electrolyte with the addition of the chloride ion is 8.90 g/L. It is shown that the process performance of the electrochemical dissolution of Re-containing nickel-based refractory alloys under the controlled anodic potential E (a) = 1.05 V in nitric acid electrolytes provides the formation of a nickel concentrate with a purity no lower than 95% in one stage and makes it possible to concentrate rhenium in the anodic slime.
机译:讨论了硝酸溶液中ZHS32-VI耐火合金的电化学加工结果。主要生产思想涉及在阳极电位的受控值下进行电化学过程的性能。该方法提供镍的优先转移,即合金基础,进入溶液中的溶液和形成的阴极产品或金属镍的形成,纯度不低于95%。进行对阳极电位各种值的所提述合金的电化学溶解的实验。确定阴极产品在e(a)= 1.05V,%:Ni 94.9,Re 0.2,Co 4.7和Cr 0.1。建立将氯离子(20g / L)掺入硝酸电解质对工艺特征没有大量影响;值得注意的是,阳极粘液中镍的量从2.4降低至1.6%,并且在阴极产品中没有显着增加镍含量。排斥是铼转移到电解质的转移率的大大增加;值得注意的是,在10-H生产过程之后硝酸电解质中的铼浓度为1.26g / L,并且在硝酸电解质中加入氯离子是8.90g / l。结果表明,在受控阳极电位E(A)= 1.05V下的含有Re的镍基耐火合金的电化学溶解的过程性能提供硝酸电解质的镍浓缩物的形成,纯度不低于95一个阶段中的%,使得可以在阳极粘液中浓缩铼。

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