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Intercomparison of alpha and gamma spectrometry techniques used in ~(210)Pb geochronology

机译:〜(210)Pb地球年代学中使用的α和γ光谱技术的比对

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摘要

~(210)Pb geochronology is a widely used tool in sedimentological studies aimed at the absolute ages of modern sediments (up to 100 years). ~(210)Pb activities required to model sedimentation regimes are measured using either alpha, gamma or beta spectrometry. Sediment accumulation rates derived from ~(210)Pb activity profiles measured by these methods are often used interchangeably in mass balance studies. Yet there is a lack of investigations considering the comparability of data derived using different analytical methods. Differences between methods could be caused by different behaviors of ~(210)Pb and ~(210)Po (used for alpha measurement) in the marine environment. In gamma spectrometry errors may arise when many gamma emitters are measured simultaneously and their activity peaks overlap. In alpha spectrometry chemical separation of ~(210)Po may result in analytical error due to incomplete sample dissolution. In the present study we evaluate total, supported and excess ~(210)Pb activities and their use in deriving sediment accumulation rates and ~(210)Pb excess inventories for three sediment cores collected from the Barents Sea. ~(210)Pb activities derived by alpha and gamma methods are shown to agree within counting error and there is also good agreement in the derived sediment accumulation rates. The inherent compatibility of analytical results based on alpha or gamma techniques is established.
机译:〜(210)Pb年代学是针对现代沉积物绝对年龄(长达100年)的沉积学研究中广泛使用的工具。使用α,γ或β光谱法测量模拟沉积制度所需的〜(210)Pb活性。通过这些方法测得的〜(210)Pb活性曲线得出的沉积物积聚率经常在质量平衡研究中互换使用。然而,缺乏考虑使用不同分析方法得出的数据的可比性的研究。方法之间的差异可能是由海洋环境中〜(210)Pb和〜(210)Po(用于alpha测量)的不同行为引起的。在伽玛光谱中,当同时测量许多伽玛发射器并且它们的活性峰重叠时,可能会出现误差。在α光谱中,〜(210)Po的化学分离可能会由于样品溶解不完全而导致分析误差。在本研究中,我们评估了从巴伦支海采集的三个沉积物芯的总量,受支持的和过量的〜(210)Pb活度及其在推导沉积物积累速率和〜(210)Pb过量清单中的用途。用α和γ方法测得的〜(210)Pb活度在计数误差范围内是一致的,在导出的沉积物累积速率上也有很好的一致性。建立了基于alpha或gamma技术的分析结果的固有兼容性。

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