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Spent NiMH batteries: Characterization and metal recovery through mechanical processing

机译:废镍氢电池:通过机械加工进行表征和金属回收

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摘要

The growing concern about the environment, associated with the continuous increase in the production of electronic equipment, such as computers, cell phones, mobile devices and consequently batteries, has induced research to develop new technologies to recycle the huge numbers of spent batteries generated in the last few years. The amount of spent NiMH batteries will tend to grow continuaEy over the next few years. These batteries have in their chemical composition, valuable metals such as Ni, Co and rare earths. In the first stage of this work a characterization of NiMH batteries was done. Batteries from different brands and models were disembled and their components were characterized in relation to their chemical composition and main phases. In a second stage of this work, a sample of spent NiMH batteries was milled and the polymeric and metallic fractions were magnetically separated. The results obtained demonstrate that the recycling study, aimed at the recovery of Ni, Co and rare earths, is viable due to the great amount of these metals that are present batteries. It also demonstrates that magnetic separation is a very efficient process to recovery nickel alloys. However the effects of cadmium contamination (originating from fake batteries) will cause the recycling processes to be re-evaluated.
机译:随着人们对环境的日益关注,以及计算机,手机,移动设备以及随之而来的电池等电子设备产量的不断增长,促使人们进行研究以开发新技术,以回收利用电池中产生的大量废电池。最近几年。在接下来的几年中,镍氢电池的用电量将趋于持续增长。这些电池的化学成分中包含有价值的金属,例如镍,钴和稀土。在这项工作的第一阶段,完成了镍氢电池的表征。分解了不同品牌和型号的电池,并根据其化学成分和主要相对其成分进行了表征。在这项工作的第二阶段,将镍氢废电池样品磨碎,然后将聚合物和金属部分进行磁分离。获得的结果表明,针对回收镍,钴和稀土的回收研究是可行的,因为目前存在大量的这些金属。它还表明,磁选是回收镍合金的非常有效的方法。但是,镉污染(源自假电池)的影响将导致对回收过程进行重新评估。

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