Optimization of Solvent Extraction Parameters for Separation of Samarium and Lutetium from Acidic Media Using Response Surface Methodology (RSM)

IF 1.1 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY Iranian Journal of Materials Science and Engineering Pub Date : 2021-03-10 DOI:10.22068/IJMSE.18.1.6
H. Tavakoli, M. Aboutalebi, S. H. Seyedein, S. N. Ashrafizadeh
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Abstract

Separation of samarium and lutetium was investigated through solvent extraction from their mixed aqueous species using commercial extractants of D2EHPA and PC88A. The Response Surface Method (RSM) was utilized to design the solvent extraction experiments. Where, a Central Composite Design (CCD) was applied to set the optimum conditions for highest separation factors between Sm and Lu. Design of Experiments (DOE) was conducted by making use of four operating variables, namely initial pH of the aqueous solutions (A: 0.2–2.6), extractant concentration (B: 0.01-0.09 molar), mole fraction of D2EHPA in the extractant mixture (C: 0 0.8) and a type of acidic solution (D: sulfuric and nitric acid) at three levels. The results indicated that the initial pH was the most paramount variable in solvent extraction of samarium and lutetium, while in the case of lutetium, the molar fraction of D2EHPA in the mixed extractants was non-influential. The statistical model predictions were confirmed by experiments for both samarium and lutetium extraction with high validity parameter of 97 and 98%, respectively. The optimum conditions for samarium and lutetium separation were identified as: A=0.8, B= 0.05, C= 0.2 and D= sulfuric acid. According to the findings of the model, the desirability value at the optimum conditions was evaluated as about 0.93, in which 71% of lutetium was extracted while the amount of extracted samarium was only less than 1%.
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响应面法优化酸性介质中钐、镥分离溶剂萃取参数
用D2EHPA和PC88A商用萃取剂从钐和镥的混合水溶液中进行溶剂萃取,研究了钐和钐的分离。采用响应面法设计了溶剂萃取实验。其中,应用中央复合设计(CCD)来设置Sm和Lu之间最高分离因子的最佳条件。通过使用四个操作变量进行实验设计(DOE),即水溶液的初始pH(a:0.2~2.6)、萃取剂浓度(B:0.01-0.09摩尔),D2EHPA在萃取剂混合物中的摩尔分数(C:00.8)和一种酸性溶液(D:硫酸和硝酸)。结果表明,在钐和镥的溶剂萃取中,初始pH是最重要的变量,而在镥的情况下,混合萃取剂中D2EHPA的摩尔分数不受影响。钐和镥提取的实验证实了统计模型的预测,有效性参数分别为97%和98%。确定了钐和镥分离的最佳条件为:A=0.8,B=0.05,C=0.2,D=硫酸。根据该模型的发现,在最佳条件下的期望值约为0.93,其中提取了71%的镥,而提取的钐的量仅小于1%。
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来源期刊
Iranian Journal of Materials Science and Engineering
Iranian Journal of Materials Science and Engineering MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
1.30
自引率
10.00%
发文量
0
审稿时长
18 weeks
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