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Recovery of rare earth elements from waste permanent magnet (WPMs) via selective leaching using the Taguchi method

机译:通过使用Taguchi方法通过选择性浸出从废永磁体(WPMS)中回收稀土元素

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Waste permanent magnets (WPMs) containing neodymium, praseodymium, and dysprosium are rare earth elements (REEs) that are in high demand in the global market. This study investigates the recovery of REEs in the WPMs through a leaching experiment using a variety of experimental parameters such as modification of sample, acid type, acid concentration, time, temperature, S/L ratio, stirring speed, and particle size. Recovery of REEs in WPMs has been conducted using pyro-hydrometallurgical process. Taguchi L18 orthogonal array was performed to identify the influential process parameters for higher rate of recovery With increased leaching of REEs from WPMs. The influential of parameters were examined by Analysis of variance (ANOVA) through the percentage of contribution. The investigation of the optimized REE's leaching is; unmodified WPMs, 5 M of HCl, 338 K temperature, 24 h, 2% S/L ratio, 800 rpm stirring speed, 0.250 mm particle size. Therefore, the result that acid type was the most influential factor with the percentage of contribution for leaching of rare earth elements 78% (Nd), 83% (Pr), and 76% (Dy) alongside p-values 0.007, 0.01 and 0.071, respectively. (C) 2019 Taiwan Institute of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:含有钕,镨和镝的废物永磁体(WPM)是全球市场需求量高的稀土元素(REES)。本研究通过各种实验参数调查通过浸出实验在WPMS中恢复REES,例如样品,酸类型,酸浓度,时间,温度,S / L比,搅拌速度和粒度。使用PYRO-RIFTOMALLGURGICAL PROCESS进行WPMS中的REES回收。进行Taguchi L18正交阵列,以确定具有较高恢复速率的有影响力的过程参数,随着WPMS的REES的浸出而增加。通过贡献百分比分析方差(ANOVA)来检查参数的有影响力。对优化的REE浸出的调查是;未经修改的WPM,HCl,338k温度,24小时,2%S / L比,800rpm搅拌速度,0.250mm粒径为800毫升。因此,酸类型的结果是最有影响力的因素,罕见的稀土元素浸出78%(Nd),83%(Pr)和76%(Dy)的贡献百分比与p值0.007,0.01和0.071 , 分别。 (c)2019年台湾化工工程师研究所。 elsevier b.v出版。保留所有权利。

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