A direct-AMS assessment of Re-Os in a Cigar Lake uranium ore specimen

NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION B-BEAM INTERACTIONS WITH MATERIALS AND ATOMS(2024)

引用 0|浏览9
暂无评分
摘要
The decay constant of Re-187 is known to change when its inner shell electrons are ionized; the possibility of a small change occurring in a terrestrial radioactive environment has not been assessed. A recently completed multi-isotope survey of uranium ore concentrates (UOC) has prompted the question. As an extension of that work, using direct accelerator mass spectrometry (direct-AMS), this paper reports a closer investigation of such possibility in an unaltered natural rock specimen of the Cigar Lake uranium ore, containing wt.30-60 % uranium oxide. Stimulated by this research goal, the direct-AMS quantification methods were first investigated, and later tested in connection with the Re-Os assessment. Complete sets of measurement of the anion beams of (ReOn-)-Re-185, (Re-187+Os-187)O-n(-) and (OsOn-)-Os-189 (n = 0-5) were carried out to find suitable sputter target matrices that would yield self-consistent solutions of (Os-187/Os-189)(Today) and (Re-187/Re-185)(Today). These two quantities are best determined by these multi-beam measurements to be 4400 +/- 500 (2 sigma) and 1.635 +/- 0.060 (2 sigma), respectively. The sample is then reasoned to contain [Re/Os](Initial) similar to 42,000. These results do not show apparent Re-187 decay constant changes, but cannot rule out the possibility, either. As a quick follow-up inspection, a simplified approach was used to surveying Re-187/Re-185 in a series of uranium-concentrated materials, in which this ratio was all measured somewhat smaller than the natural known value. This work was also intended to be a pilot feasibility study of using the direct-AMS method as a form of sensitive secondary ionization mass spectrometry (SIMS) for rapid Re-Os assessment in mg-sized raw minerals and environmental samples.
更多
查看译文
关键词
Direct-AMS,Re-Os assessment,187Re decay constant,Cigar Lake uranium ore
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要