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'non-invasive' portable laser ablation sampling of art and archaeological materials with subsequent Sr-Nd isotope analysis by TIMS using 1013 Ω amplifiers

机译:使用1013Ω放大器通过TIMS对艺术品和考古材料进行“非侵入式”便携式激光烧蚀采样以及随后的Sr-Nd同位素分析

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摘要

A new integrated trace element and multi-isotope provenancing methodology is presented that uses a portable "non-invasive" pulsed laser ablation sampling technique. Samples are collected on location onto Teflon filters for return to a clean laboratory for low blank (pg) geochemical procedures. Ablation pits approximately 60 or 120 μm in width and depth remove μg amounts of material. Following dissolution, trace element ratios are determined by inductively coupled plasma mass spectrometry and combined Sr-Nd isotopes by thermal ionization mass spectrometry. Use of 1013 Ω resistors allows precise analysis of subnanogram amounts of Sr-Nd isotopes, which coupled with the trace element data, provides highly effective multi-variant discrimination for material provenance and authenticity verification. Monitoring of blank contributions is required.
机译:提出了一种新的集成的痕量元素和多同位素出处方法,该方法使用便携式“非侵入式”脉冲激光烧蚀采样技术。将样品就地收集到Teflon过滤器上,送回干净的实验室进行低空白(pg)地球化学程序。宽度和深度约为60或120μm的消融坑可去除微克的材料。溶解后,通过电感耦合等离子体质谱法测定痕量元素比率,并通过热电离质谱法测定组合的Sr-Nd同位素。通过使用1013Ω电阻器,可以精确分析亚纳克级的Sr-Nd同位素,再加上痕量元素数据,可为材料出处和真实性验证提供高效的多变量判别。需要监控空白捐款。

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