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Perspectives for the recovery of critical elements from future energy-efficient refrigeration materials

机译:从未来的节能制冷材料中回收关键元素的前景

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摘要

Rare earth elements (REEs) are the core of many future-sustainable technologies. One example is magnetocaloric refrigeration, an emerging field essential for the efficient use of energy. Future adoption of this technology will require adequate processing of end-of-life units and production residues. Currently, REEs have very high supply risk, and their recovery rates are below 1%. So far, their recovery from magnetocaloric materials has not been addressed. This work reports on a leaching and solvent extraction process to recover REEs from genuine magnetocaloric materials comprising cerium, iron, lanthanum, manganese and silicon. Leaching was studied using nitric, hydrochloric and sulfuric acid solutions, with optimizations in terms of temperature, acid concentration and solid-to-liquid ratio. Recovery of REEs from nitric, hydrochloric, and sulfuric acid leachates was investigated with three types of solvating extractants: tributyl phosphate (TBP), trioctylphosphine oxides (Cyanex 923) and tetraoctyl digylcol amide (TODGA). Extraction was most effective from nitric acid media. Very good extraction selectivity between REEs and non-REEs was achieved with TODGA. Cyanex 923 showed better extraction efficiency than TBP, and performed best in aliphatic diluents. A separation factor of 3.3 between cerium and lanthanum was achieved with 1 mol/L Cyanex 923 in Isopar L. (C) 2018 Elsevier Ltd. All rights reserved.
机译:稀土元素(REE)是许多未来可持续技术的核心。一个例子是磁热制冷,这是有效利用能源必不可少的新兴领域。未来采用该技术将需要对报废单元和生产残留物进行充分处理。当前,稀土元素具有很高的供应风险,其回收率低于1%。迄今为止,尚未解决从磁热材料中回收它们的问题。这项工作报道了一种浸提和溶剂萃取工艺,可从包括铈,铁,镧,锰和硅的真正磁热材料中回收稀土元素。使用硝酸,盐酸和硫酸溶液对浸出进行了研究,并在温度,酸浓度和固液比方面进行了优化。用三种类型的溶剂化萃取剂研究了从硝酸,盐酸和硫酸浸出液中回收稀土元素的方法:磷酸三丁酯(TBP),三辛基氧化膦(Cyanex 923)和四辛基二甘醇酰胺(TODGA)。从硝酸介质中提取是最有效的。用TODGA可以实现稀土元素和非稀土元素之间非常好的萃取选择性。 Cyanex 923具有比TBP更好的萃取效率,并且在脂族稀释剂中表现最佳。在Isopar L.(C)2018 Elsevier Ltd.中使用1 mol / L Cyanex 923可实现铈与镧之间的3.3分离系数。保留所有权利。

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