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Multi-Pulse Excitation for Underwater Analysis of Copper-Based Alloys Using a Novel Remote Laser-Induced Breakdown Spectroscopy (LIBS) System

机译:新型远程激光诱导击穿光谱系统(LIBS)的多脉冲激励用于铜基合金的水下分析

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In this work, the use of multi-pulse excitation has been evaluated as an effective solution to mitigate the preferential ablation of the most volatile elements, namely Sn, Pb, and Zn, observed during laser-induced breakdown spectroscopy (LIBS) analysis of copper-based alloys. The novel remote LIBS prototype used in this experiments featured both single-pulse (SP-LIBS) and multi-pulse excitation (MP-LIBS). The remote instrument is capable of performing chemical analysis of submersed materials up to a depth of 50 m. Laser-induced breakdown spectroscopy analysis was performed at air pressure settings simulating the conditions during a real subsea analysis. A set of five certified bronze standards with variable concentration of Cu, As, Sn, Pb, and Zn were used. In SP-LIBS, signal emission is strongly sensitive to ambient pressure. In this case, fractionation effect was observed. Multi-pulse excitation circumvents the effect of pressure over the quantitative analysis, thus avoiding the fractionation phenomena observed in single pulse LIBS. The use of copper as internal standard minimizes matrix effects and discrepancies due to variation in ablated mass.
机译:在这项工作中,使用多脉冲激励已被评估为减轻在铜的激光诱导击穿光谱(LIBS)分析中观察到的最易挥发元素(即Sn,Pb和Zn)优先剥蚀的有效解决方案。基合金。本实验中使用的新型远程LIBS原型具有单脉冲(SP-LIBS)和多脉冲激励(MP-LIBS)的特征。远程仪器能够对水下材料进行化学分析,深度可达50 m。激光诱导击穿光谱分析是在模拟实际海底分析过程中的条件的气压设置下进行的。使用了一套五种经认证的铜标准品,它们具有可变的Cu,As,Sn,Pb和Zn浓度。在SP-LIBS中,信号发射对环境压力非常敏感。在这种情况下,观察到分馏效果。多脉冲激发避免了定量分析中压力的影响,从而避免了单脉冲LIBS中观察到的分馏现象。使用铜作为内标可最大程度地减少由于烧蚀质量的变化而引起的基体效应和差异。

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