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在弹丸碎裂装置上收获同位素的可行性:⁶⁷铜

Feasibility of isotope harvesting at a projectile fragmentation facility: ⁶⁷Cu.

作者信息

Mastren Tara, Pen Aranh, Peaslee Graham F, Wozniak Nick, Loveless Shaun, Essenmacher Scott, Sobotka Lee G, Morrissey David J, Lapi Suzanne E

机构信息

Department of Chemistry, Washington University, St. Louis, MO. 63110.

Department of Chemistry, Hope College, Holland, MI 49423.

出版信息

Sci Rep. 2014 Oct 21;4:6706. doi: 10.1038/srep06706.

Abstract

The work presented here describes a proof-of-principle experiment for the chemical extraction of (67)Cu from an aqueous beam stop at the National Superconducting Cyclotron Laboratory (NSCL). A 76 MeV/A (67)Cu beam was stopped in water, successfully isolated from the aqueous solution through a series of chemical separations involving a chelating disk and anion exchange chromatography, then bound to NOTA-conjugated Herceptin antibodies, and the bound activity was validated using instant thin-layer chromatography (ITLC). The chemical extraction efficiency was found to be 88 ± 3% and the radiochemical yield was ≥95%. These results show that extraction of radioisotopes from an aqueous projectile-fragment beam dump is a feasible method for obtaining radiochemically pure isotopes.

摘要

本文介绍了在国家超导回旋加速器实验室(NSCL)从水靶中化学提取(67)铜的原理验证实验。一束能量为76 MeV/A的(67)铜束流被阻止在水中,通过一系列涉及螯合盘和阴离子交换色谱的化学分离步骤成功地从水溶液中分离出来,然后与NOTA共轭的赫赛汀抗体结合,并使用即时薄层色谱法(ITLC)验证结合活性。发现化学提取效率为88±3%,放射化学产率≥95%。这些结果表明,从水相弹丸碎片束流捕集器中提取放射性同位素是获得放射化学纯同位素的一种可行方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23ff/4204030/0c3d1697bd6d/srep06706-f1.jpg

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