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Analytical Efficacy of a Gas Mixer and Stabilizer for Laser Ablation ICP Mass Spectrometry

机译:气体混合器和稳定剂激光烧蚀ICP质谱法的分析疗效

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The analytical efficacy of five gas mixers and five stabilizers on signal stabilization and washout time obtained for laser ablation inductively coupled plasma mass spectrometry (LA-ICPMS) was evaluated in the present study. In the case of gas mixers examined, a total of 95 patterns of their attitudes as well as different directions of the gas flows were examined, and it was found that the signal variation and the washout time were strongly dependent on these factors. Even in a simple Y-shaped fitting (Y-mixer), signal stability and washout time had large variations with respect to its different attitudes as well as gas flow directions. The shortest washout time for each gas mixer was almost the same ranging from 1.0 to 1.2 s. The signal variations observed were 11–15% of relative standard deviation (RSD) under optimum conditions for each gas mixer. The optimum condition of a Y-mixer for LA-ICPMS represented 11% RSD and 1.0 s for signal variation and washout time, respectively. In the case of stabilizers examined, almost all stabilizers improved signal variations from 11 to 3.0–9.3%, but washout times became longer than those of the only Y-mixer from 1.0 to 1.2–8.9 s. The important thing is that the signal stability and the washout time are trade-off correlations for gas mixers and stabilizers. A suitable gas mixer or a stabilizer on the trade-off line can be selected with respect to different applications. It was also observed that variations of both signal stability and washout time correlated with the volume of stabilizers despite their different inner structures; that is, a stable signal and longer washout time seemed to be observed when the volume of the chamber became larger. This suggested that the signal stabilization obtained by stabilizers was ascribable to not only elimination of larger particles from laser ablation but also particle mixing effect, which compensated signal variation.
机译:在本研究中评估了五种气体混合器和五种稳定剂对激光烧蚀感应耦合等离子体质谱(La-ICPMS)的信号稳定和冲洗时间进行的分析效果。在检查气体混合器的情况下,检查了总共95种态度和气流的不同方向,发现信号变化和冲洗时间强烈依赖于这些因素。即使在简单的Y形拟合(Y型混合器)中,信号稳定性和冲洗时间也相对于其不同的态度以及气体流动方向具有大的变化。每个气体混合器的最短冲洗时间几乎与1.0至1.2秒相同。观察到的信号变化是每个气体混合器的最佳条件下相对标准偏差(RSD)的11-15%。 La-ICPMS的Y型混合器的最佳条件分别表示11%RSD和1.0秒,分别用于信号变化和冲洗时间。在检查稳定剂的情况下,几乎所有稳定剂都会改善11至3.0-9.3%的信号变化,但冲洗时间变得比唯一的Y型混合器从1.0到1.2-8.9秒更长。重要的是,信号稳定性和冲洗时间是气体混合器和稳定剂的权衡相关性。可以相对于不同的应用选择合适的气体混合器或折衷方型折磨线。还观察到,尽管其内部结构不同,信号稳定性和冲洗时间与稳定剂的体积相关的变化;也就是说,当腔室的体积变大时,似乎似乎观察到稳定的信号和较长的冲洗时间。这表明通过稳定剂获得的信号稳定性不仅可以消除来自激光烧蚀的较大颗粒,而且是颗粒混合效果,其补偿信号变化。

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