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Ni-Co Alloy Production from Secondary Spent Batteries by Electrowinning

机译:电解废旧电池生产镍钴合金

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Secondary spent Ni-Cd, Ni-MH and Li-ion batteries are motley and composite materials thus before any metallurgical recovery process, it is necessary to separate the different materials by means of mechanical pre-treatment, in this way scrap metals and plastics can be recovered and sold on the market, minimizing waste deriving from the breaking separation process. By considering the hydrometallurgical processes, they require several steps for dissolving and separating various metals. The main drawback, in recycling secondary batteries, is to separate the different types of battery because they contain not only different metals, but also different Ni and Co concentrations. This work shows as the latter problem could be overcome, by demonstrating that, whatever the resulting Ni/Co ratio in the purified solution, a co- deposition of good quality Ni-Co alloy, having determined composition, can be obtained. Ni-Co alloys have been electrowon, from a pH 4 acidic sulphate catholyte containing 40 g/L Ni and Co in the range 0.1-16 g/L, at 60 °C temperature and 250 A/m~2 current density. A cell having cathodic and anodic compartment separated by a polypropylene membrane has been used. The electrowinning tests results have been compared with those obtained, in the same operative conditions, by using an anionic membrane. The effect of cobalt ion concentration in the electrolyte on current efficiency, specific energy consumption and on composition, morphology and structure of the produced binary alloys has been investigated.
机译:二手镍镉,镍氢和锂离子废电池是杂色和复合材料,因此在进行任何冶金回收过程之前,必须通过机械预处理将不同的材料分开,这样废旧的金属和塑料罐可以可回收并在市场上出售,从而最大程度地减少了分离过程中产生的废物。通过考虑湿法冶金工艺,他们需要几个步骤来溶解和分离各种金属。回收二次电池的主要缺点是分离不同类型的电池,因为它们不仅包含不同的金属,而且包含不同的Ni和Co浓度。该工作表明,通过证明无论纯化溶液中所得的Ni / Co比率如何,均可获得具有确定成分的优质Ni-Co合金的共沉积,从而可以克服后一个问题。 Ni-Co合金是在60°C的温度和250 A / m〜2的电流密度下,从pH 40的含40 g / L Ni和Co的0.1-16 g / L的酸性硫酸盐阴极电解液中电解制成的。已经使用了具有被聚丙烯膜隔开的阴极和阳极隔室的电池。将电沉积测试结果与在相同操作条件下使用阴离子膜获得的结果进行了比较。研究了电解质中钴离子浓度对电流效率,比能量消耗以及所产生的二元合金的组成,形态和结构的影响。

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