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使用 fsLA 单收集器 ICP-SFMS 进行同位素成像,直接对小型考古碳酸盐进行 U/Th 年代测定。

Isotopic Imaging Using fsLA Single-Collector ICP-SFMS for Direct U/Th Dating of Small Archaeological Carbonates.

机构信息

Universite de Pau et des Pays de l'Adour, E2S UPPA, CNRS, IPREM, Avenue de l'Université, BP 576, 64012 Pau Cedex, France.

IRAMAT-CRP2A, Université Bordeaux Montaigne, CNRS: UMR 5060, Esplanade des Antilles, 33607 Pessac Cedex, France.

出版信息

Anal Chem. 2022 Feb 22;94(7):3046-3055. doi: 10.1021/acs.analchem.1c02241. Epub 2022 Jan 21.

Abstract

We present a new methodology for the U/Th dating of carbonate materials using femtosecond laser ablation single-collector inductively coupled plasma sector field mass spectrometry (fsLA single-collector ICP-SFMS), isotopic mappings, and image processing. This approach allows working on samples at very low U levels (ng·g). One of the major advantages of this imaging method is that it allows us to exploit deteriorated samples that could not be analyzed by conventional bulk U/Th dating methods, thanks to the identification of contaminated or leached areas at the scale of a few tens of microns and the subsequent correction for detrital Th incorporation. Only a few milligrams of material are required for measurement, which allows us to work on small samples such as shell fragments. The parameters of the fsLA single-collector ICP-SFMS coupling have been carefully optimized to ensure very high sensitivity detection and ultralow background while preserving good plasma robustness and a spatial resolution of 30 × 50 μm. The accuracy was evaluated from low-level U speleothems previously dated by a conventional U/Th dating technique involving digestion, resin purification, double spike, and detection by multicollector inductively coupled plasma mass spectrometry (MC-ICPMS). U/Th ages of two archaeological samples with U at low ng·g levels, a giant terrestrial snail shell and a burned ostrich eggshell, were determined. The measured U/Th ages are consistent with the expected ages determined by luminescence dating methods.

摘要

我们提出了一种使用飞秒激光烧蚀单收集器电感耦合等离子体质谱(fsLA 单收集器 ICP-SFMS)、同位素绘图和图像处理来测定碳酸盐材料 U/Th 年代的新方法。这种方法可以在 U 含量非常低(ng·g)的情况下对样品进行分析。这种成像方法的主要优点之一是,它可以让我们利用那些无法通过传统的 U/Th 年代测定方法进行分析的受损样品,这要归功于可以识别几十微米范围内的污染或淋滤区域,并对碎屑 Th 掺入进行后续校正。仅需几毫克的材料即可进行测量,这使得我们可以处理贝壳碎片等小样本。fsLA 单收集器 ICP-SFMS 耦合的参数已被仔细优化,以确保在保持良好等离子体稳定性的同时,实现非常高的灵敏度检测和超低的背景,同时保留 30×50μm 的空间分辨率。对以前通过涉及消化、树脂纯化、双尖峰和多收集器电感耦合等离子体质谱(MC-ICPMS)检测的常规 U/Th 年代测定技术测定的低水平 U 洞穴石进行了精度评估。测定了两个 U 含量在低 ng·g 水平的考古样品,一个巨型陆生蜗牛壳和一个烧焦的鸵鸟蛋壳的 U/Th 年龄。测量的 U/Th 年龄与发光测年法确定的预期年龄一致。

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