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首页> 外文期刊>Solvent Extraction Research and Development, Japan >Recovery of Neodymium from Waste Permanent Magnets by Hydrometallurgy Using Hollow Fibre Supported Liquid Membranes
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Recovery of Neodymium from Waste Permanent Magnets by Hydrometallurgy Using Hollow Fibre Supported Liquid Membranes

机译:使用中空纤维支撑的液体膜通过氢晶冶金从废永久磁体中恢复钕

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The recycling of the rare earth neodymium (Nd) is vital to providing greener technology for many industries. In this paper its recovery from waste permanent magnets (WPMs) is explored using a hydrometallurgical process involving separation using hollow fiber supported liquid membranes (HFSLMs). After demagnetization, the options for WPMs leaching were investigated by varying mineral acids, acid concentrations and solid/liquid (S/L) ratios. The separation Nd from iron (Fe) was carried out by precipitation using oxalic acid. Nd in WPMs was recovered by solvent extraction using D2EHPA in Isopar-L. The influence of various parameters such as pH and organic/aqueous (O/A) phase ratio were investigated. Optimum leaching was achieved using 3 M H2SO4 with an S/L ratio of 1 g/50 mL to obtain 485 g/kg of Nd. Nd-separation from Fe was successfully performed using 0.6 M D2EHPA with an O/A phase ratio of 3 at a pH of 1.26 - 2.0 resulting in Nd-recovery of 97.48%. The optimum stripping was achieved using 6 M HNO3. In the HFSLM experiments, the concentration of Nd in the aqueous strip solution was 4120 mg/L whilst that in the aqueous feed solutions was 658 mg/L. The HFSLM module used recovered 90.82% of the Nd within 35 min.
机译:稀土钕(Nd)的回收对于为许多行业提供更环保的技术至关重要。本文采用中空纤维支撑液膜(HFSLMs)分离湿法冶金工艺,探索了从废永磁体(WPMs)中回收该物质的方法。退磁后,通过改变矿物酸、酸浓度和固液比(S/L)来研究WPMs浸出的选择。用草酸沉淀法从铁中分离钕。在Isopar-L中使用D2EHPA通过溶剂萃取法回收WPMs中的钕。考察了pH值和有机/水相(O/A)比等参数的影响。使用S/L比为1 g/50 mL的3 M H2SO4实现最佳浸出,以获得485 g/kg的钕。在pH值为1.26-2.0、O/A相比为3的条件下,使用0.6 M D2EHPA成功地从铁中分离钕,从而使钕回收率达到97.48%。使用6 M HNO3实现最佳汽提。在HFSLM实验中,试纸水溶液中的Nd浓度为4120 mg/L,而进料水溶液中的Nd浓度为658 mg/L。使用的HFSLM模块在35分钟内回收了90.82%的Nd。

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    Chung Yuan Christian Univ Dept Environm Engn 200 Chung Pei Rd Chungli 320 Taiwan;

    Chung Yuan Christian Univ Dept Environm Engn 200 Chung Pei Rd Chungli 320 Taiwan;

    Chung Yuan Christian Univ Dept Environm Engn 200 Chung Pei Rd Chungli 320 Taiwan;

    Chung Yuan Christian Univ Dept Environm Engn 200 Chung Pei Rd Chungli 320 Taiwan;

    Chung Yuan Christian Univ Dept Environm Engn 200 Chung Pei Rd Chungli 320 Taiwan;

    Chung Yuan Christian Univ Dept Environm Engn 200 Chung Pei Rd Chungli 320 Taiwan;

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  • 正文语种 eng
  • 中图分类 化学;
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