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Laser-induced fluorescence detection of lead atoms in a laser-induced plasma: an experimental analytical optimization study

机译:激光诱导的等离子体中铅原子的激光诱导荧光检测:实验分析优化研究

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摘要

The combination of the laser-induced breakdown spectroscopy (LIBS) and laser-induced fluorescence (LIF) techniques was investigated to improve the limit of detection (LOD) of trace elements in solid matrices. The influence of the main experimental parameters on the LIF signal, namely the ablation fluence, the excitation energy, and the inter-pulse delay, was studied experimentally and a discussion of the results was presented. For illustrative purpose we considered detection of lead in brass samples. The plasma was produced by a Q-switched Nd:YAG laser and then re-excited by a nanosecond Optical Parametric Oscillator (OPO) laser. The experiments were performed in air at atmospheric pressure. We found out that the optimal conditions were obtained for our experimental set-up using relatively weak ablation fluence of 2-3 J/cmub2 and an inter-pulse delay of abuot 5-10 ub5s. Also, a few tens of microjoules was typically required to maximize the LIF signal. Using the LIBS-LIFS technique, a single-shot LOD for lead of about 1.5 part per million (ppm) was obtained while a value of 0.2 ppm was obtained after accumulating over 100 shots. These values represent an improvement of about two orders of magnitude with respect to LIBS.
机译:研究了激光诱导击穿光谱法(LIBS)和激光诱导荧光(LIF)技术的结合,以提高固体基质中痕量元素的检出限(LOD)。实验研究了主要实验参数对LIF信号的影响,即消融能量密度,激发能和脉冲间延迟,并对结果进行了讨论。为了说明目的,我们考虑了检测黄铜样品中的铅。等离子体由调Q的Nd:YAG激光器产生,然后由纳秒级光学参量振荡器(OPO)激光器激发。实验在大气压下在空气中进行。我们发现,使用2-3 J / cm ub2的相对较弱的消融能量通量和5-10 ub5s的脉冲间延迟为我们的实验装置获得了最佳条件。而且,通常需要几十微焦耳来最大化LIF信号。使用LIBS-LIFS技术,铅的单次LOD约为百万分之1.5(ppm),而累积超过100次后可获得0.2 ppm的值。这些值相对于LIBS大约提高了两个数量级。

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