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三价铁和二价铁对稀土硫酸盐水合物结晶的影响。

Impact of Ferric and Ferrous Iron on the Crystallization of Rare Earth Sulphate Hydrates.

作者信息

Pawar Nitin, Chagnes Alexandre, Boiron Marie Christine, Cathelineau Michel, Svärd Michael, Forsberg Kerstin

机构信息

Department of Chemical Engineering, KTH Royal Institute of Technology, SE-11428, Stockholm, Sweden.

Université de Lorraine, CNRS, GeoRessources, 54000, Nancy, France.

出版信息

ChemSusChem. 2025 Aug 6;18(16):e202500285. doi: 10.1002/cssc.202500285. Epub 2025 Jul 17.

Abstract

Rare earth elements (REEs) are important for permanent magnets used in for example wind turbines and motors. There is an imbalance in supply and demand of this commodity and the REE have been identified as critical raw materials by the European Union. This study focuses on recovery of REEs from sulfuric acid solutions using antisolvent crystallization in recycling of magnet waste. Ethanol is used as an antisolvent to crystallize Nd(SO)·8HO and (Nd/Dy)(SO)·8HO. The impact of the presence of Fe in ferrous and ferric states, and of different seeding strategies, on the quality of the crystal product in terms of purity, crystal size, morphology and agglomeration has been investigated. Higher purity (above 99%) is obtained for seeded experiments and the purity is higher for higher seed loading and lower antisolvent dosing rate. Furthermore, Fe(III) has a higher tendency to be incorporated into the pure Nd phase compared to the Nd phase containing 10% of Dy, while Fe(II) is not detected in any of the phases. By balancing the addition of antisolvent and seed loading the optimum conditions in terms of high purity and productivity can be found. The results provide insights to improve the recovery of REEs as a pure concentrate.

摘要

稀土元素(REEs)对于例如风力涡轮机和电机中使用的永磁体很重要。这种商品存在供需不平衡,并且稀土元素已被欧盟确定为关键原材料。本研究重点在于在磁体废料回收中使用反溶剂结晶法从硫酸溶液中回收稀土元素。乙醇用作反溶剂以结晶Nd(SO)·8HO和(Nd/Dy)(SO)·8HO。研究了亚铁态和铁态铁的存在以及不同的晶种添加策略对晶体产物在纯度、晶体尺寸、形态和团聚方面质量的影响。晶种实验可获得更高的纯度(高于99%),且晶种负载量越高、反溶剂添加速率越低,纯度越高。此外,与含10%镝的钕相相比,铁(III)更倾向于掺入纯钕相中,而在任何相中均未检测到铁(II)。通过平衡反溶剂的添加量和晶种负载量,可以找到高纯度和高生产率方面的最佳条件。这些结果为提高稀土元素作为纯精矿的回收率提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/13d4/12330332/6e5de1226c1d/CSSC-18-e202500285-g003.jpg

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