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Separation of cobalt from Ni(OH)2 positive materials by a reduction and dissolution process in alkali solution

机译:通过碱溶液中的还原和溶解过程从Ni(OH)2正极材料中分离钴

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Nickel metal hydride (NiMH) batteries are used in wireless electric tools and hybrid electric cars recently, which produces many spent NiMH batteries. Reuse and recycle of them is a must to eliminate possible pollutions, as well as to make sustainable production of them, as they use quite a lot of nickel, cobalt and rare earths. Here we report the separation of cobalt from Ni(OH)2 of spent NiMH batteries, which is required by a recycle process proposed by us, with a reduction and dissolution process in alkali solution. It shows that the alkali concentration plays a key role in the separation of cobalt from spent positive electrode materials. When the concentration of KOH solution increases from 1.0 mol L~(-1) to 11.0 mol L~(-1) the cobalt content in the solid materials continuously decreases from 5.09 wt% to the minimum of 1.84 wt% because of the reduction of the CoOOH (and/or Co3O4) formed during the charging of electrodes and dissolution of Co(OH)2 in the alkali solution. When the concentration goes further higher, however, it increases a little. The regenerated Ni(OH)2 remains the structure of p-Ni(OH)2. In addition, cobalt in the filtrate can be recovered by air oxidation and be reduced into Co(OH)2 by hydrazine, which can be again used as the conductive additive for Ni(OH)2 positive electrodes.
机译:镍氢(NiMH)电池最近在无线电动工具和混合动力汽车中使用,生产许多废NiMH电池。由于它们使用大量的镍,钴和稀土,因此必须对它们进行再利用和再循环以消除可能的污染并实现其可持续生产。在这里,我们报告了镍从废NiMH电池的Ni(OH)2中分离出来的情况,这是我们提出的循环工艺所要求的,其中需要在碱溶液中进行还原和溶解。结果表明,碱浓度在废旧正极材料中钴的分离中起着关键作用。当KOH溶液的浓度从1.0 mol L〜(-1)增加到11.0 mol L〜(-1)时,由于减少了KOH,固体材料中的钴含量从5.09 wt%连续降低到最小1.84 wt%。电极充电和Co(OH)2在碱溶液中溶解过程中形成的CoOOH(和/或Co3O4)。但是,当浓度进一步升高时,它会稍微增加。再生的Ni(OH)2保持对-Ni(OH)2的结构。此外,滤液中的钴可通过空气氧化回收,并通过肼还原为Co(OH)2,可再次用作Ni(OH)2正极的导电添加剂。

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