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Separation of rare earths and other valuable metals from deep-eutectic solvents: a new alternative for the recycling of used NdFeB magnets

机译:从深共熔溶剂中分离稀土和其他有价金属:回收使用过的钕铁硼磁体的新方法

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摘要

Deep-eutectic solvents (DESs) are used as a promising alternative to aqueous solutions for the recovery of valuable metals from NdFeB magnets. A deep-eutectic solvent based on choline chloride and lactic acid (molar ratio 1 : 2) was used for the leaching of rare earths and other metals from NdFeB magnets. A process for the separation of Fe, B and Co from Nd and Dy in the deep-eutectic solvent was developed by using the ionic liquid tricaprylmethylammonium thiocyanate (Aliquat 336 SCN, [A336][SCN]) diluted in toluene (0.9 M). The extraction parameters were optimized and stripping of B was efficiently carried out by HCl, while EDTA was employed for the recovery of Fe and Co. The separation of Nd and Dy was assessed by using two different types of extractants, a mixture of trialkylphosphine oxides (Cyanex 923) and bis(2-ethylhexyl)phosphoric acid (D2EHPA). Based on the distribution ratios, separation factors and the ease of subsequent stripping, Cyanex 923 was chosen as the most effective extractant. The purified Dy present in the less polar phase was easily recovered by stripping with water, while the Nd present in the deep-eutectic solvent was recovered by precipitation stripping with a stoichiometric amount of oxalic acid. Nd2O3 and Dy2O3 were recovered with a purity of 99.87% and 99.94%, respectively. The feasibility to scale up this separation process was corroborated by a setup of mixer-settlers and highlighted by the possibility to fully recover and reuse the deep-eutectic solvent and the less polar phases employed in the extractions. The new proposed system based on a deep-eutectic solvent combined with traditional organic extraction phases presented higher selectivities and efficiencies than the analogous aqueous system. Extended X-ray absorption fine structure (EXAFS) was employed to elucidate the different mechanisms for extraction of Co and Fe from the deep-eutectic solvent and from an aqueous solution.
机译:深共熔溶剂(DES)被用作从NdFeB磁体中回收有价值金属的水溶液的有前途的替代品。使用基于氯化胆碱和乳酸(摩尔比为1:2)的深共熔溶剂从NdFeB磁铁中浸出稀土和其他金属。通过使用在甲苯(0.9 M)中稀释的离子液体三辛基甲基硫氰酸铵(Aliquat 336 SCN,[A336] [SCN])开发了一种在深共熔溶剂中从Nd和Dy中分离Fe,B和Co的方法。优化了萃取参数,并通过HCl有效地进行了B的汽提,而EDTA用于回收铁和钴。通过使用两种不同类型的萃取剂,三烷基氧化膦的混合物( Cyanex 923)和双(2-乙基己基)磷酸(D2EHPA)。基于分布比,分离因子和后续剥离的难易程度,Cyanex 923被选为最有效的萃取剂。极性较小的相中存在的纯化的Dy可以通过用水汽提而容易地回收,而深共熔溶剂中存在的Nd可通过化学计量的草酸沉淀汽提来回收。回收的Nd2O3和Dy2O3的纯度分别为99.87%和99.94%。通过设置混合沉降器,可以证实扩大分离工艺规模的可行性,并强调了完全回收和再利用深层共溶溶剂和萃取中使用的极性较小的相的可能性。新提出的基于深共熔溶剂与传统有机萃取相结合的系统比类似的水性系统具有更高的选择性和效率。采用扩展的X射线吸收精细结构(EXAFS)阐明了从深共熔溶剂和水溶液中提取Co和Fe的不同机理。

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