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Optimization of Cation Exchange for the Separation of Actinium-225 from Radioactive Thorium Radium-223 and Other Metals

机译:阳离子交换法优化in 225与放射性Thor镭223和其他金属的分离

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摘要

Actinium-225 (225Ac) can be produced with a linear accelerator by proton irradiation of a thorium (Th) target, but the Th also underdoes fission and produces 400 other radioisotopes. No research exists on optimization of the cation step for the purification. The research herein examines the optimization of the cation exchange step for the purification of 225Ac. The following variables were tested: pH of load solution (1.5–4.6); rinse steps with various concentrations of HCl, HNO3, H2SO4, and combinations of HCl and HNO3; various thorium chelators to block retention; MP50 and AG50 resins; and retention of 20–45 elements with different rinse sequences. The research indicated that HCl removes more isotopes earlier than HNO3, but that some elements, such as barium and radium, could be eluted with ≥2.5 M HNO3. The optimal pH of the load solution was 1.5–2.0, and the optimized rinse sequence was five bed volumes (BV) of 1 M citric acid pH 2.0, 3 BV of water, 3 BV of 2 M HNO3, 6 BV of 2.5 M HNO3 and 20 BV of 6 M HNO3. The sequence recovered >90% of 225Ac with minimal 223Ra and thorium present.
机译:linear(Th)靶可以通过质子辐照,用线性加速器生产225( 225 Ac),但Th也会发生裂变并产生400个其他放射性同位素。尚无优化阳离子纯化步骤的研究。本文的研究考察了用于纯化 225 Ac的阳离子交换步骤的优化。测试了以下变量:负载溶液的pH(1.5–4.6);用各种浓度的HCl,HNO3,H2SO4以及HCl和HNO3的组合冲洗步骤;各种or螯合剂以阻止保留; MP50和AG50树脂;并使用不同的冲洗顺序保留20–45个元素。研究表明,HCl可以比HNO3清除更多的同位素,但是某些元素(如钡和镭)可以被≥2.5M HNO3洗脱。上样溶液的最佳pH为1.5–2.0,最佳漂洗顺序为5床体积(BV)的1 M柠檬酸pH 2.0、3 BV的水,3 BV的2 M HNO3、6 BV的2.5 M HNO3和20 BV的6 M HNO3。该序列回收了 225 Ac的> 90%,并且存在最少的 223 Ra和or。

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