Thermodynamic analysis of volatile organometallic fission products

被引:0
作者
John D. Auxier
Jacob A. Jordan
S. Adam Stratz
Shayan Shahbazi
Daniel E. Hanson
Derek Cressy
Howard L. Hall
机构
[1] University of Tennessee,Department of Nuclear Engineering
[2] University of Tennessee,Radiochemistry Center of Excellence (RCOE)
[3] University of Tennessee,Center for Public Policy, Institute for Nuclear Security
[4] University of Tennessee,Department of Chemistry
来源
Journal of Radioanalytical and Nuclear Chemistry | 2016年 / 307卷
关键词
Nuclear forensics; Thermogravimetric analysis; Differential thermal analysis; Rapid separations;
D O I
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学科分类号
摘要
The ability to perform rapid separations in a post nuclear weapon detonation scenario is an important aspect of national security. In the past, separations of fission products have been performed using solvent extraction, precipitation, etc. The focus of this work is to explore the feasibility of using thermochromatography, a technique largely employed in superheavy element chemistry, to expedite the separation of fission products from fuel components. A series of fission product complexes were synthesized and the thermodynamic parameters were measured using TGA/DSC methods. Once measured, these parameters were used to predict their retention times using thermochromatography.
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页码:1621 / 1627
页数:6
相关论文
共 36 条
[1]  
Garrison J(2012)Monte Carlo analysis of thermochromatography as a fast separation method for nuclear forensics J Radioanal Nucl Chem 291 885-894
[2]  
Hanson D(2011)Assessing thermochromatography as a separation method for nuclear forensics: current capability vis-à-vis forensic requirement J Radioanal Nucl Chem 289 213-223
[3]  
Hall H(2014)Synthesis and detection of a seaborgium carbonyl complex Science 345 1491-1494
[4]  
Hanson D(2014)Superheavy element flerovium (Element 114) is a volatile metal Inorg Chem 53 1624-1629
[5]  
Garrison J(1968)Fractional sublimation of the B-diketone chelates of the lanthanide and related elements Anal Chim Acta 40 101-113
[6]  
Hall H(1964)Luminescence of europium hexafluoroacetylacetonate J Chem Phys 40 2790-2792
[7]  
Evan J(1964)Photoluminescence of lanthanide complexes. II. Enhancement by an insulating sheath J Chem Phys 41 157-163
[8]  
Yakushev A(2000)Crystal structure and vacuum sublimation of the product of reaction of yttrium hexafluoroacetylacetonate and copper acetylacetonate [Y(Hfa) Russ J Coord Chem 26 390-395
[9]  
Yakushev A(2010)(H Inorg Chim Acta 363 2606-2615
[10]  
Gates J(2012)O)2Cu(Acac) Inorg Chim Acta. 392 165-176