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Direct recovery of cadmium and nickel from Ni-Cd spent batteries by electroassisted leaching and electrodeposition in a single-cell process

机译:通过单电池工艺中的电辅助浸出和电沉积直接从Ni-Cd废电池中回收镉和镍

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摘要

The investigation was aimed at developing a new electrochemical process for recovery of nickel, cobalt and cadmium mainly present in the form of hydroxides in Ni-Cd batteries, in view to obtain, a solid residue composed of metal nickel and carbon, a pure cadmium-free solution of metal salts and metal cadmium. This process relies upon coupling leaching of the metal hydroxides by electrogenerated protons to electrodeposition in a single divided cell. The feasibility of the technique has been first demonstrated in a lab cell operated in batch mode: cadmium-free solution of nickel and cobalt cations could effectively be produced at the end of the 5-h run, with nearly complete leaching of the hydroxides and a current efficiency of the cathode near 73%: occurrence of side hydrogen evolution at the cathode reduced the efficiency during the last hour of the treatment because of insufficient amounts of Cd2+ cations. In a second test, the waste (called black mass) was added at regular intervals, in view to allowing more regular transfer rates of Cd2+ species to the cathode chamber. The more even profiles of concentrations allowed avoiding depletion of this cation, which resulted in higher current efficiency in cadmium deposition. The efficiency of fed-batch mode is finally discussed in relation to the compromise to be found between purity of the cadmium-free solution and current efficiency of cadmium. (C) 2016 Elsevier B.V. All rights reserved.
机译:该研究旨在开发一种新的电化学方法,用于回收镍,钴和镉,这些镍,钴和镉主要以氢氧化物的形式存在于镍镉电池中,以期获得由金属镍和碳组成的固体残渣,纯镉金属盐和金属镉的游离溶液。该过程依赖于在单个分开的电池中通过电生质子将金属氢氧化物的浸出与电沉积偶联。该技术的可行性首先在以批处理模式运行的实验室电池中得到了证明:在5小时运行结束时,可以有效地生产镍和钴阳离子的无镉溶液,并且几乎完全浸出了氢氧化物和氢氧化钠。阴极的电流效率接近73%:由于Cd2 +阳离子的量不足,在阴极的侧面放氢的发生降低了处理最后一个小时的效率。在第二项测试中,为了使Cd2 +物质更规则地转移到阴极室,应定期添加废物(称为黑块)。浓度分布更均匀,可以避免这种阳离子的消耗,从而导致镉沉积中的电流效率更高。最后,针对无镉溶液的纯度与镉的电流效率之间的折衷关系,讨论了分批补料模式的效率。 (C)2016 Elsevier B.V.保留所有权利。

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