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Optimized Transport Setup for High Repetition Rate Pulse-Separated Analysis in Laser Ablation-Inductively Coupled Plasma Mass Spectrometry

机译:激光烧蚀-电感耦合等离子体质谱法中高重复率脉冲分离分析的优化传输设置

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摘要

An optimized laser ablation setup, proposed for high repetition rate inductively coupled plasma mass spectrometry (ICPMS) analyses such as 2D imaging or depth profiling, is presented. For such applications, the particle washout time needs to be as short as possible to allow high laser pulse frequencies for reduced analysis time. Therefore, it is desirable to have an ablation setup that operates as a laminar flow reactor (LFR). A top-down strategy was applied that resulted in the present design. In the first step, a previously applied ablation setup was analyzed on the basis of computational fluid dynamics (CFD) results presented by D. Autrique et al. (Spectrochim. Acta, B 2008, 63, 257-270). By means of CFD simulations, the design was modified in such a way that it operated in the LFR regime. Experimental results demonstrate that the current design can indeed be regarded as an LFR. Furthermore, the operation under LFR conditions allowed some insight into the initial radial concentration distribution if the experimental ICPMS signal and analytical expressions are taken into account. Recommendations for a modified setup for more resilient spatial distributions are given. With the present setup, a washout time of 140 ms has been achieved for a 3percent signal area criterion. Therefore, 7 Hz repetition rates can be applied with the present setup. Using elementary formulas of the analytical model, an upper bound for the washout times for similar setups can be predicted. The authors believe that the presented setup geometry comes close to the achievable limit for reliable short washout times.
机译:提出了一种优化的激光烧蚀设置,建议用于高重复频率感应耦合等离子体质谱(ICPMS)分析,例如2D成像或深度分析。对于此类应用,粒子冲洗时间需要尽可能短,以允许较高的激光脉冲频率以减少分析时间。因此,理想的是具有起层流反应器(LFR)作用的消融装置。应用了自上而下的策略,得出了本设计。第一步,根据D. Autrique等人提出的计算流体动力学(CFD)结果,分析了先前应用的消融设置。 (Spectrochim.Acta,B 2008,63,257-270)。通过CFD仿真,对设计进行了修改,使其可以在LFR模式下运行。实验结果表明,当前的设计确实可以视为LFR。此外,如果考虑到实验ICPMS信号和分析表达式,那么在LFR条件下的操作可以对初始径向浓度分布有一些了解。给出了针对更灵活的空间分布的修改设置的建议。使用当前设置,对于3%的信号区域标准,已实现140 ms的清除时间。因此,在当前设置中可以应用7 Hz的重复频率。使用分析模型的基本公式,可以预测类似设置的冲洗时间上限。作者认为,提出的设置几何形状已接近可靠的短冲洗时间可达到的极限。

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