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Estimating the size distribution of anode and cathode activating agents in the crushed products of nickel metal hydride batteries from hybrid vehicles and its classification

机译:估计混合动力汽车镍氢电池碎料中阳极活化剂和阴极活化剂的尺寸分布及其分类

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摘要

Nickel metal hydride batteries of hybrid vehicles contain Co and rare earth elements in the anode and cathode activating agents as well as in the main electrode component, Ni. The cathode electrodes comprise a porous Ni plate (cathode substrate) with nickel hydroxide as the cathode activating agent and the anode electrodes consist of a hydrogen storage alloy powder as the anode activating agent on a metal mesh substrate. A direct smelting method has been used to recover Ni from waste batteries, but the Co and rare earth elements are difficult to extract by this conventional method. To recycle Co and rare earth elements, physical pretreatment is necessary to separate the anode and cathode compounds before smelting. This study investigated the separation of anode and cathode activating agents in the <0.075 mm fraction of crushed nickel metal hydride batteries using a cyclone and the anode activating agent was concentrated in the underflow product. After crushing the waste batteries a mixture of cathode and anode activating agents is recovered as fines, and a simple and fast size distribution measurement method for each activating agent is desirable to evaluate the physical separation results and improve the separation efficiency. The results show that further size classification of the b0.075 mm fraction is effective to concentrate the anode activating agent for cylindrical type batteries.
机译:混合动力汽车的镍氢电池在阳极和阴极活化剂以及主要电极成分Ni中均含有Co和稀土元素。阴极电极包括多孔镍板(阴极基板),其具有氢氧化镍作为阴极活化剂,并且阳极电极在金属网状基板上由储氢合金粉末作为阳极活化剂组成。已经采用直接熔炼法从废电池中回收镍,但是用这种常规方法很难提取钴和稀土元素。为了回收钴和稀土元素,在冶炼之前必须进行物理预处理以分离阳极和阴极化合物。这项研究研究了使用旋风分离器在破碎的镍金属氢化物电池中,在<0.075 mm的馏分中分离阳极和阴极活化剂,并将阳极活化剂浓缩在底流产物中。在粉碎废电池后,将正极和负极活化剂的混合物细末回收,因此需要一种简单快速的尺寸分布测量方法来评估物理分离结果并提高分离效率。结果表明,b0.075mm部分的进一步尺寸分类对于浓缩用于圆柱型电池的阳极活化剂是有效的。

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