Optimal Extraction and Separation of Europium and Samarium from Nitrate Medium Using Binary Mixture of Cyanex 572 and Tertiary Amine Extractants

IF 1.8 4区 化学 Q3 CHEMISTRY, MULTIDISCIPLINARY
Soad E. Rizk, Rasha Gamal, Naglaa E. El-Hefny
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Abstract

ABSTRACTExtraction and separation of rare-earth elements (Eu(III) and Sm(III)) from nitrate solutions were studied using Cyanex 572 and Alamine 336 type extractants, as well as their binary mixtures in kerosene. Separate studies were carried out on the parameters that influence the extraction process. According to the slope analysis method, the composition of extracted species in the organic phase is [MNO3A2(HA)2][R3NH.NO3]2(Org). The mixture loading capacity towards Eu(III) and Sm(III), as well as the stripping of their loads from the organic phases, were also tested. After being treated with a NaOH solution, the stripped binary mixture was regenerated. The FT-IR spectra of the binary mixture organic phase, the organic phase loaded with metals, the stripped organic phase, and the regenerated organic phase were identified and compared. The separation method is based on a combined reduction-precipitation process in which europium is reduced to its bivalent state by commercial zinc metal, followed by the precipitation of its sparingly soluble europous sulphate. The developed method was used to separate a synthetic mixture of Eu(III) and Sm(III) from an analogous solution in nitrate medium to that expected from spent nuclear fuel leach liquor. Extraction and separation processes for Eu(III) and Sm(III) were detailed in a flowchart.KEYWORDS: Alamine 336Cyanex 572Europium(III)Samarium(III)solvent extraction AcknowledgmentsThe authors would like to thank Cytec Industries for supplying a commercial sample of Cyanex 572. The Egyptian Atomic Energy Authority funded this research, which received no specific funding from public, commercial, or non-profit funding agencies.Disclosure statementNo potential conflict of interest was reported by the author(s).
cyanex572与叔胺萃取剂二元混合物萃取分离硝酸介质中的铕和钐
摘要采用cyanex572型和Alamine 336型萃取剂及其二元混合物,研究了稀土(Eu(III)和Sm(III))在煤油溶液中的萃取分离。对影响提取过程的参数进行了单独的研究。根据坡度分析法,有机相中提取物质的组成为[MNO3A2(HA)2][r3nhh . no3]2(Org)。还测试了混合物对Eu(III)和Sm(III)的载荷能力,以及它们从有机相中剥离载荷的能力。用氢氧化钠溶液处理后,使剥离后的二元混合物再生。对二元混合有机相、载金属有机相、剥离有机相和再生有机相的FT-IR光谱进行了鉴定和比较。分离方法是基于一个联合的还原沉淀过程,其中铕被商业锌金属还原到其二价状态,然后沉淀其少溶的硫酸铕。该方法用于从硝酸盐介质中的类似溶液中分离出Eu(III)和Sm(III)的合成混合物。对Eu(III)和Sm(III)的萃取分离工艺流程图进行了详细介绍。关键词:Alamine 336Cyanex 572铕(III)钐(III)溶剂萃取感谢作者感谢Cytec Industries提供的Cyanex 572商业样品。这项研究由埃及原子能管理局资助,没有从公共、商业或非营利资助机构获得具体资助。披露声明作者未报告潜在的利益冲突。
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来源期刊
CiteScore
4.40
自引率
5.00%
发文量
15
审稿时长
8.4 months
期刊介绍: Solvent Extraction and Ion Exchange is an international journal that publishes original research papers, reviews, and notes that address all aspects of solvent extraction, ion exchange, and closely related methods involving, for example, liquid membranes, extraction chromatography, supercritical fluids, ionic liquids, microfluidics, and adsorption. We welcome submissions that look at: The underlying principles in solvent extraction and ion exchange; Solvent extraction and ion exchange process development; New materials or reagents, their syntheses and properties; Computational methods of molecular design and simulation; Advances in equipment, fluid dynamics, and engineering; Interfacial phenomena, kinetics, and coalescence; Spectroscopic and diffraction analysis of structure and dynamics; Host-guest chemistry, ion receptors, and molecular recognition.
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