钍
镭
化学
放射化学
锕系元素
钡
柠檬酸
离子交换
裂变产物
核化学
无机化学
铀
离子
材料科学
有机化学
冶金
作者
Jonathan Fitzsimmons,Bryan J. Foley,Bryna Torre,Megan Wilken,Cathy S. Cutler,L.F. Mausner,Dmitri Medvedev
出处
期刊:Molecules
[MDPI AG]
日期:2019-05-18
卷期号:24 (10): 1921-1921
被引量:13
标识
DOI:10.3390/molecules24101921
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.
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