中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Step-Leaching and Pre-Enrichment of Light and Heavy REEs from Kaolinite and Montmorillonite

文献类型:期刊论文

作者Qiu, Sen1,3; Li, Fujian1,2; Yan, Huashan1,3; Qiu, Tingsheng1,3; Long, Qibang3; Zhou, Xiaowen1,3; Li, Yong3; Xia, Yi3
刊名ACS Sustainable Chemistry and Engineering
出版日期2022-09-12
卷号10期号:36页码:11815-11823
关键词Adsorption - Kaolinite - Leaching - Ores - Rare earths
DOI10.1021/acssuschemeng.2c02366
英文摘要Kaolinite (Kao) and montmorillonite (Mt) are the primary minerals present in ion-adsorption rare earth ores. Better understanding the adsorption/desorption characteristic for light and heavy rare earth elements (REEs) of Kao and Mt will be beneficial for the step-leaching and pre-enrichment of light and heavy REEs from ion-adsorption REE ores. The experiments show that the more negative 味 potential and the larger specific surface area of Mt contribute to the higher adsorption capacity of REEs. The stability of REEs onto Kao and Mt increases with the increase in adsorption pH. There are obvious differences in the desorption characteristic among Nd3+, Eu3+, and Lu3+due to the different adsorption mechanisms. Lu3+almost adsorbed on Kao through electrostatic force, and its recovery is 88% when the desorption pH was higher than 4; however, the recoveries were only 50% for Nd3+and 56% for Eu3+, which interact with the Kao surface dominated by coordination bonds. However, the opposite desorption characteristic occurred on Mt. Based on these different desorption characteristics of light and heavy REEs, step-desorption and pre-enrichment for Nd3+and Lu3+from Kao and Mt were feasible. In the first lixivium of Kao, the percentage of Lu3+is high, up to 68.4%, and Nd3+is enriched in the second lixivium, with a percentage of 73.9%. As for Mt, Lu3+is difficult to be desorbed and enriched in the second lixivium with a percentage of 87.7%. 漏 2022 American Chemical Society. All rights reserved.
学科主题Desorption
项目编号The authors gratefully acknowledge the support from the National Natural Science Foundation of China (No. 52004107), the Collaborative Innovation Center for Development and Utilization of Rare Metal Resources Co-sponsored by the Ministry of Education and Jiangxi Province, Jiangxi University of Science and Technology, China (JXUST-XTCX-2022-01), and the Key research and development program of Jiangxi Province, China (20212BBG73049).
出版者American Chemical Society
源URL[http://ir.ipe.ac.cn/handle/122111/61285]  
作者单位1.Collaborative Innovation Center for Development and Utilization of Rare Metal Resources Co-sponsored by Ministry of Education and Jiangxi Province, Jiangxi University of Science and Technology, Ganzhou; 341000, China
2.Beijing Key Laboratory of Ionic Liquids Clean Process, State Key Laboratory of Multiphase Complex Systems, CAS Key Laboratory of Green Process and Engineering, Institute of Process Engineering, Chinese Academy of Sciences, Beijing; 100190, China
3.College of Resource and Environmental Engineering, Jiangxi University of Science and Technology, Ganzhou; 341000, China
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GB/T 7714
Qiu, Sen,Li, Fujian,Yan, Huashan,et al. Step-Leaching and Pre-Enrichment of Light and Heavy REEs from Kaolinite and Montmorillonite[J]. ACS Sustainable Chemistry and Engineering,2022,10(36):11815-11823.
APA Qiu, Sen.,Li, Fujian.,Yan, Huashan.,Qiu, Tingsheng.,Long, Qibang.,...&Xia, Yi.(2022).Step-Leaching and Pre-Enrichment of Light and Heavy REEs from Kaolinite and Montmorillonite.ACS Sustainable Chemistry and Engineering,10(36),11815-11823.
MLA Qiu, Sen,et al."Step-Leaching and Pre-Enrichment of Light and Heavy REEs from Kaolinite and Montmorillonite".ACS Sustainable Chemistry and Engineering 10.36(2022):11815-11823.

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来源:过程工程研究所

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