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真空蒸馏法从废稀土熔盐电解渣中回收稀土氟化物的研究

Investigation on the Recovery of Rare Earth Fluorides from Spent Rare Earth Molten Electrolytic Slag by Vacuum Distillation.

作者信息

Yang Ziyan, Xiao Faxin, Sun Shuchen, Tu Ganfeng, Zhou Zhentao, Chen Jingyi, Hong Xin, He Wei, Sui Chengfu, Yu Kuopei

机构信息

School of Metallurgy, Northeastern University, Shenyang 110819, China.

Key Laboratory for Recycling of Nonferrous Metal Resources (Shenyang), Shenyang 110819, China.

出版信息

Materials (Basel). 2025 Mar 28;18(7):1538. doi: 10.3390/ma18071538.

Abstract

Spent rare earth molten salt electrolytic slag (REMES) needs to be recovered not only because of its economic value of rare earth elements (REEs), lithium, and fluorine, but also for the environmental benefits. Vacuum distillation has many advantages, such as a short process and less wastewater. Aiming to find an environmentally friendly method to recover REEs, this research studied the challenges in recovering REMES by vacuum distillation and the solutions to handle these obstacles. Distillation experiments for the raw material were initially implemented and XRD, XPS, DSC, and SEM methods were used to investigate the phase changes of REMES, thus discovering that oxide impurities could transform REF into REOF, which significantly affected the REEs recovery. Only 42.04% of the REEs could be evaporated at 1573 K and 0.1 Pa for 4 h with 99.99% of LiF. To tackle this issue, a fluorination pretreatment was proposed. NHHF was utilized to transform oxide impurities, REO, and REOF to fluorides with almost no waste gas released, significantly improving the recovery efficiency of the REEs, which was 86.23%. Therefore, this paper proposes this fluorination-vacuum distillation method, which has a short process to recover REF from REMES efficiently with almost no wastewater or gas released.

摘要

废稀土熔盐电解渣(REMES)需要回收,这不仅是因为其所含稀土元素(REEs)、锂和氟具有经济价值,还出于环境效益的考虑。真空蒸馏具有诸多优点,比如流程短且废水少。为了找到一种环保的方法来回收稀土元素,本研究探讨了通过真空蒸馏回收REMES所面临的挑战以及应对这些障碍的解决方案。首先对原材料进行了蒸馏实验,并使用XRD、XPS、DSC和SEM方法研究REMES的相变,从而发现氧化物杂质会将REF转化为REOF,这对稀土元素的回收有显著影响。在1573 K、0.1 Pa条件下处理4小时,对于含有99.99% LiF的原料,仅有42.04%的稀土元素能够蒸发。为解决此问题,提出了氟化预处理方法。使用NHHF将氧化物杂质、REO和REOF转化为氟化物,几乎不释放废气,显著提高了稀土元素的回收效率,达到了86.23%。因此,本文提出了这种氟化 - 真空蒸馏方法,该方法流程短,能高效地从REMES中回收REF,几乎不产生废水或废气。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5175/11990493/c10515cb765f/materials-18-01538-g001.jpg

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