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Sustainable Hydrometallurgical Recovery of Valuable Elements from Spent Nickel–Metal Hydride HEV Batteries

机译:从废镍-金属氢化物HEV电池中进行可持续的湿法冶金回收有价值的元素

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In the present study, the recovery of valuable metals from a Panasonic Prismatic Module 6.5 Ah NiMH 7.2 V plastic casing hybrid electric vehicle (HEV) battery has been investigated, processing the anode and cathode electrodes separately. The study focuses on the recovery of the most valuable compounds, i.e., nickel, cobalt and rare earth elements (REE). Most of the REE (La, Ce, Nd, Pr and Y) were found in the anode active material (33% by mass), whereas only a small amount of Y was found in the cathode material. The electrodes were leached in sulfuric acid and in hydrochloric acid, respectively, under different conditions. The results indicated that the dissolution kinetics of nickel could be slow as a result of slow dissolution kinetics of nickel oxide. At leaching in sulfuric acid, light rare earths were found to reprecipitate increasingly with increasing temperature and sulfuric acid concentration. Following the leaching, the separation of REE from the sulfuric acid leach liquor by precipitation as NaREE (SO 4 ) 2 ·H 2 O and from the hydrochloric acid leach solution as REE 2 (C 2 O 4 ) 3 ·xH 2 O were investigated. By adding sodium ions, the REE could be precipitated as NaREE (SO 4 ) 2 ·H 2 O with little loss of Co and Ni. By using a stoichiometric oxalic acid excess of 300%, the REE could be precipitated as oxalates while avoiding nickel and cobalt co-precipitation. By using nanofiltration it was possible to recover hydrochloric acid after leaching the anode material.
机译:在本研究中,已经研究了从Panasonic Prismatic Module 6.5 Ah NiMH 7.2 V塑料外壳混合电动汽车(HEV)电池中回收有价金属的方法,分别处理阳极和阴极。这项研究的重点是最有价值的化合物,即镍,钴和稀土元素(REE)的回收。在负极活性物质中发现大部分REE(La,Ce,Nd,Pr和Y)(按质量计33%),而在正极材料中仅发现少量Y。在不同条件下,分别在硫酸和盐酸中浸出电极。结果表明,由于氧化镍的缓慢溶解动力学,镍的溶解动力学可能较慢。在硫酸中浸出时,发现轻稀土随着温度和硫酸浓度的增加而再沉淀。浸出后,研究了通过沉淀以NaREE(SO 4)2·H 2 O的形式从硫酸浸出液中分离REE以及以REE 2(C 2 O 4)3·xH 2 O的形式从盐酸浸出液中分离出REE。 。通过添加钠离子,REE可以以NaREE(SO 4)2·H 2 O的形式沉淀而几乎没有Co和Ni的损失。通过使用化学计量为300%的草酸,REE可以草酸盐形式沉淀,同时避免了镍和钴的共沉淀。通过使用纳滤,可以在浸出阳极材料后回收盐酸。

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