放射性碳年代测定
绝对年代测定
光谱学
放射性核素
地质学
放射化学
矿物学
化学
古生物学
核物理学
物理
天文
作者
Zuguang Guan,Yan Zhou,Qiang Ling,Luca Varricchio,Amelia Detti,Saverio Bartalini,Daru Chen
出处
期刊:Radiocarbon
[Cambridge University Press]
日期:2025-03-13
卷期号:67 (3): 565-577
被引量:3
摘要
Abstract Radiocarbon ( 14 C) measurements play important roles in dating and tracing applications where the isotopic concentration can differ from 0.1 to 10 6 pMC (percent modern carbon). A liquid scintillation counter cannot provide enough sensitivity when dealing with low-concentration samples of limited amounts over a reasonable time period. Accelerator mass spectroscopy (AMS) measures low-concentrations well but must first do dilution for high-concentration samples, and suffers from high instrument and maintenance costs. S aturated absorption CA vity R ing-down spectroscopy (SCAR) has now been developed into a practical technique with performances close to AMS but at much lower costs. The dynamic range covers 1–10 5 pMC, and the measurement uncertainties in the range of 0.4–1 pMC can be achieved within 0.5–2.5 hr of operation time. SCAR measures CO 2 gases directly without graphitization in sample preparation. The typical sample consumption is ∼1 mg of carbon mass and the time for sample preparation can be as short as 15 min. Applications of SCAR to Suess-effect evaluation, biogenic-component analysis, ancient- and modern-sample dating, food-fraud detection and medicine-metabolism study have all been demonstrated by employing a close-to-automatic sample preparation system.
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