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Detection of lead in brass by Laser-Induced Breakdown Spectroscopy combined with Laser-Induced Fluorescence

机译:激光诱导击穿光谱结合激光诱导荧光检测黄铜中的铅

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摘要

Laser-Induced Breakdown Spectroscopy (LIBS) technique combined with Laser-Induced Fluorescence (LIF) is known to be a high sensitivity and high selectivity analytical technique. Although sub-ppm limits of detection (LoD) have already been demonstrated, there is still a constant and urgent need to reach lower LoDs. Here, we report results obtained for the detection of lead trace in brass samples. The plasma was produced by a Q-switched Nd:YAG laser at 1064 nm and then re-excited by a nanosecond optical parametric oscillator (OPO) laser tuned at 283.31 nm. Emission from Pb atoms was then observed at 405.78 nm. The experiments were performed in air at atmospheric pressure. We found out that the optimal conditions were obtained for an ablation fluence of 2-3 J/cm2 and inter-pulse delay of 8-10 \u3bcs. Also, excitation energy of about 200 \u3bcJ was required to maximize the Pb(I) 405.78 nm emission. Using the LIBS-LIFS technique, the LoD was estimated to be about 180 ppb over 100 laser shots, which corresponds to an improvement of about two orders of magnitude with that obtained using conventional LIBS.
机译:结合激光诱导荧光(LIF)的激光诱导击穿光谱(LIBS)技术是一种高灵敏度和高选择性的分析技术。尽管已经证明了亚ppm的检测限(LoD),但仍存在持续而迫切的需求,以达到更低的LoD。在这里,我们报告为检测黄铜样品中的痕量铅而获得的结果。等离子体由1064 nm的Q开关Nd:YAG激光器产生,然后由调谐至283.31 nm的纳秒光学参量振荡器(OPO)激光器激发。然后在405.78 nm处观察到Pb原子的发射。实验在大气压下在空气中进行。我们发现最佳条件是获得了2-3 J / cm2的消融能量密度和8-10 u3bcs的脉冲间延迟。同样,需要大约200立方米的激发能才能使Pb(I)405.78 nm的发射最大化。使用LIBS-LIFS技术,在100次激光照射中,LoD估计约为180 ppb,这与使用常规LIBS获得的LOD相比提高了大约两个数量级。

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