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首页> 外文期刊>Geostandards and geoanalytical research >Assessment of Nanosecond Laser Ablation Multi‐Collector Inductively Coupled Plasma‐Mass Spectrometry for Pb and Sr Isotopic Determination in Archaeological Glass: Mass Bias Correction Strategies and Results for Corning Glass Reference Materials
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Assessment of Nanosecond Laser Ablation Multi‐Collector Inductively Coupled Plasma‐Mass Spectrometry for Pb and Sr Isotopic Determination in Archaeological Glass: Mass Bias Correction Strategies and Results for Corning Glass Reference Materials

机译:评估纳秒激光烧蚀多集聚器电感耦合等离子体质谱,用于考古玻璃的PB和Sr同位素测定:质量偏置校正和康宁玻璃参考资料的结果

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> This work presents an evaluation of various methods for in?situ high‐precision Sr and Pb isotopic determination in archaeological glass (containing 100–500?μg?g ?1 target element) by nanosecond laser ablation multi‐collector‐inductively coupled plasma‐mass spectrometry (ns‐LA‐MC‐ICP‐MS). A set of four soda‐lime silicate glasses, Corning A–D, mimicking the composition of archaeological glass and produced by the Corning Museum of Glass (Corning, New York, USA), were investigated as candidates for matrix‐matched reference materials for use in the analysis of archaeological glass. Common geological reference materials with known isotopic compositions (USGS basalt glasses BHVO‐2G, GSE‐1G and NKT‐1G, soda‐lime silicate glass NIST SRM 610 and several archaeological glass samples with known Sr isotopic composition) were used to evaluate the ns‐LA‐MC‐ICP‐MS analytical procedures. When available, ns‐LA‐MC‐ICP‐MS results for the Corning glasses are reported. These were found to be in good agreement with results obtained via pneumatic nebulisation ( pn ) MC‐ICP‐MS after digestion of the glass matrix and target element isolation. The presence of potential spectral interference from doubly charged rare earth element (REE) ions affecting Sr isotopic determination was investigated by admixing Er and Yb aerosols by means of pneumatic nebulisation into the gas flow from the laser ablation system. It was shown that doubly charged REE ions affect the Sr isotope ratios, but that this could be circumvented by operating the instrument at higher mass resolution. Multiple strategies to correct for instrumental mass discrimination in ns‐LA‐MC‐ICP‐MS and the effects of relevant interferences were evaluated. Application of common glass reference m
机译: >本工作提出了对在纳秒玻璃(含100-500ΩμgΩ·g α1/1/ sup>靶元素)中的纳秒激光消融多收集器电感耦合的高精度Sr和Pb同位素测定等离子体质谱(NS-LA-MC-ICP-MS)。一组四种苏打硅酸盐玻璃,康宁A-D,模仿考古学玻璃的组成并由康宁博物馆(Corning,New York,USA)制作,作为用于使用的基质匹配参考资料的候选者在考古玻璃分析中。使用已知同位素组合物的常见地质参考材料(USGS玄武岩玻璃BHVO-2g,GSE-1G和NKT-1g,钠钙硅酸盐玻璃NIST SRM 610和几种具有已知Sr同位素组合物的考古玻璃样品)来评估NS- La-MC-ICP-MS分析程序。据报道,当可用时,NS-LA-MC-ICP-MS结果为康宁眼镜。发现这些与在消化玻璃基质和靶元素隔离后通过通过气动雾化( pn )MC-ICP-MS获得的结果非常一致。通过将ER和Yb气溶胶混合到来自激光烧蚀系统的气体流动的气体雾化,研究了影响SR同位素测定的双电荷稀土元素(REE)离子的潜在光谱干扰。结果表明,双电荷的REE离子会影响SR同位素比,但这可以通过在更高质量的质量分辨率下操作仪器来避难。评估了NS-LA-MC-ICP-MS中仪器质量歧视的多种策略以及相关干扰的影响。普通玻璃参考M的应用

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