首页> 外文期刊>Journal of Analytical Atomic Spectrometry >Laser ablation-inductively coupled plasma-dynamic reaction cell-mass spectrometry for the determination of lead isotope ratios in ancient glazed ceramics for discriminating purposes
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Laser ablation-inductively coupled plasma-dynamic reaction cell-mass spectrometry for the determination of lead isotope ratios in ancient glazed ceramics for discriminating purposes

机译:激光烧蚀-电感耦合等离子体-动态反应池-质谱法测定古釉陶瓷中铅同位素比

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The potential of laser ablation-single collector-inductively coupled plasma-mass spectrometry for discrimination among Spanish antique lead-glazed ceramics according to age and workshop has been investigated. In order to obtain the required precision, pressurizing the dynamic reaction cell (DRC) with Ne proved to be a significant help. In this way, it was feasible to obtain RSD values in the range 0.15-0.25°/) (internal precision) for the ratios calculated using the most abundant Pb isotopes (~(206)Pb, ~(207)Pb and ~(208)Pb), under optimized conditions. These values are 2-3 times lower than those that could be achieved in standard (vented) mode and proved to be sufficient for distinguishing between the different groups of samples under study.rnThe method finally proposed was demonstrated to show interesting features, such as the potential to obtain spatially resolved isotopic information in approximately 30 min measurement time per sample, with negligible (ng level) sample damage. On the other hand, it has to be mentioned that the use of the DRC results in an undesired enhancement in the mass discrimination that has to be corrected for. Only by using a perfectly matrix-matched standard (in the current work, one sample of each group that was analyzed by an alternative procedure in order to obtain a suitable reference value), accurate correction for this effect became possible. Obviously, this is somewhat inconvenient, but the possibility of analyzing the vast majority of the samples in a fast, quasi non-destructive, spatially resolved and cost-effective way (particularly when comparing with the use of dedicated techniques for isotopic analysis) may be appealing for archaeological laboratories.
机译:研究了激光烧蚀-单收集器-电感耦合等离子体质谱法根据年龄和车间区分西班牙古董铅釉陶瓷的潜力。为了获得所需的精度,事实证明,用Ne加压动态反应池(DRC)会有很大帮助。这样,对于使用最丰富的Pb同位素(〜(206)Pb,〜(207)Pb和〜(208)计算的比率,获得0.15-0.25°/)(内部精度)范围内的RSD值是可行的)Pb),在最佳条件下。这些值比标准(通风)模式下可达到的值低2-3倍,并被证明足以区分正在研究的不同样本组。rn最后提出的方法被证明具有有趣的特征,例如每个样品在大约30分钟的测量时间内获得空间分辨的同位素信息的潜力,而样品的破坏程度(ng级)可忽略不计。另一方面,必须提到的是,使用DRC会导致不必要的质量歧视性增强,必须对此进行校正。仅通过使用完全匹配的基质标准品(在当前工作中,每组中的一个样品已通过替代程序进行分析,以获得合适的参考值),可以对该效果进行精确校正。显然,这有点不方便,但是以快速,准无损,空间分辨和成本有效的方式分析绝大多数样品的可能性(尤其是与使用专门的同位素分析技术进行比较时)吸引考古实验室。

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