Separation of Thorium from Light Rare Earth Elements from Monazite Chloride Leach Liquor

独居石 浸出(土壤学) 盐酸 稀土元素 化学 等离子体原子发射光谱 核化学 感应耦合等离子体 稀土 放射化学 材料科学 锆石 矿物学 无机化学 冶金 地质学 地球化学 土壤水分 土壤科学 物理 等离子体 量子力学
作者
Ana Carolina Santos de Souza,Luiz Rogério Pinho de Andrade Lima
出处
期刊:Nuclear Science and Engineering [Taylor & Francis]
卷期号:198 (5): 1051-1061 被引量:2
标识
DOI:10.1080/00295639.2023.2229600
摘要

AbstractMonazite is one of the main light rare earth element (REE) minerals and is associated with the presence of Th. This poses challenges in processing due to the strong radiation present in this mineral. However, the use of Th as a nuclear fuel, after the transformation of 232Th into 233U, has been considered a better option than the currently more widespread use of 235U. Therefore, the separation of Th from the REE after leaching is an essential step that requires optimization.In this study, the treatment of a leach solution in a hydrochloric medium from dephosphorized monazite is addressed. The separation of Th from light REEs was performed by solvent extraction with Cyanex 572 or 272. The tests considered included (1) the ratio of the monazite leaching liquor and organic solution, (2) the initial pH values, and (3) the concentration of the extractants. The aqueous-phase samples were analyzed by Inductively Coupled Plasma Optical Emission spectroscopy (ICP-OES). It was observed that at low pH, 60% of the Th was extracted by Cyanex 272 and 90% by Cyanex 572 in one single step. Acidity had little effect on Th extraction. The extractions of light REEs by Cyanex 272 and 572 were negligible in most cases, but for pH values greater than 2, Cyanex 272 extracted a considerable fraction of these elements, which did not occur with Cyanex 572. The results show that Th can be easily separated from light REEs in an acidic and hydrochloric medium by both Cyanex 272 and Cyanex 572.Keywords: Rare earththoriumthorium separationsolvent extractionCyanex 572/272 Disclosure StatementNo potential conflict of interest was reported by the authors.Additional informationFundingThe authors wish to acknowledge the financial support from Brazilian National Research Council grants 407914/2022-6, 407784/2021-7 and 313912/2018-1.
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