镝
五元
萃取(化学)
钕
三元运算
材料科学
硼
稀土
金属间化合物
选择性
镧系元素
镁
稀土元素
分析化学(期刊)
化学
冶金
无机化学
合金
色谱法
有机化学
离子
激光器
物理
计算机科学
光学
程序设计语言
催化作用
作者
Sangmin Park,Dae-Kyeom Kim,Javid Hussain,Myungsuk Song,Taek‐Soo Kim
出处
期刊:Materials
[Multidisciplinary Digital Publishing Institute]
日期:2022-04-21
卷期号:15 (9): 3032-3032
被引量:5
摘要
Liquid metal extraction (LME) for recycling rare-earth elements from magnets is studied, in the present study, to examine its suitability as an environmentally friendly alternative for a circular economy. While Nd (neodymium) extraction efficiency can easily reach almost 100%, based on the high reactivity of Mg (magnesium), Dy (dysprosium) extraction has been limited because of the Dy-Fe intermetallic phase as the main extractive bottleneck. In the present paper, the boro-additive effect is designed thermodynamically and examined in the ternary and quinary systems to improve the selectivity of recovery. Based on the strong chemical affinity between B (boron) and Fe, the effect of excess boron, which is produced by the depletion of B in FeB by Mg, successfully resulted in the formation of Fe2B instead of Dy-Fe bonding. However, the growth of the Fe2B layer, which is the reason for the isolated Mg, leads to the production of other byproducts, rare-earth borides (RB4, R = Nd and Dy), as the side effect. By adjusting the ratio of FeB, the extraction efficiency of Dy over 12 h with FeB addition is improved to 80%, which is almost the same extraction efficiency of the conventional LME process over 24 h.
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