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Resonant laser-induced breakdown spectroscopy (RLIBS) analysis of traces through selective excitation of aluminum in aluminum alloys

机译:通过选择性激发铝合金中铝的共振激光诱导击穿光谱(RLIBS)分析痕量

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摘要

We investigated laser-induced breakdown spectroscopy for the detection of traces of magnesium and silicon contained in aluminum alloys by using the same 5 ns optical parametric oscillator laser pulse to ablate the sample and excite selectively an atomic transition of vaporized aluminum (Al I 309.27 nm). The excitation energy of aluminum is then transferred to all components of the gas/plasma phase via particle collisions. The optical emission of the trace elements as a function of the laser wavelength exhibits a high peak when the laser is tuned exactly to the aluminum transition. The on-resonance signal-to-noise ratio of magnesium (Mg 285.21 nm) was maximized near the off-resonance threshold fluence for detection of the magnesium line (~1.78 J cm~(-2)). The detection threshold of the magnesium line decreases below 1.0 J cm~(-2) when the laser is on resonance for a sample of aluminum alloy containing 150 ppm of magnesium. Under optimal conditions, the limits of detection of magnesium and silicon in aluminum alloy were found to be 0.75 ppm and 80 ppm, respectively, compared to 39 ppm and 5000 ppm, respectively, when the laser was off resonance at the same fluence. The limits of detection obtained by using low fluences and low energy per pulse are similar to those obtained using conventional LIBS but with much higher fluences and higher energy per pulse. The main advantage of this technique is that it allows measuring simultaneously relatively low concentrations of several trace elements while minimizing the damage to the sample.
机译:我们使用相同的5 ns光学参量振荡器激光脉冲烧蚀样品并选择性激发汽化铝的原子跃迁(Al I 309.27 nm),研究了激光诱导击穿光谱法以检测铝合金中所含的痕量镁和硅。 。铝的激发能然后通过粒子碰撞转移到气相/等离子相的所有组分。当将激光器精确地调谐到铝跃迁时,痕量元素的光发射随激光器波长的变化呈现出很高的峰值。镁的共振频率信噪比(Mg 285.21 nm)在离共振阈值通量附近检测镁线(〜1.78 J cm〜(-2))时最大。当激光对包含150 ppm镁的铝合金样品共振时,镁线的检测阈值降低到1.0 J cm〜(-2)以下。在最佳条件下,发现铝合金中镁和硅的检出限分别为0.75 ppm和80 ppm,而当激光以相同的通量失谐时,检出限分别为39 ppm和5000 ppm。通过使用低能量密度和低每脉冲能量获得的检测极限与使用常规LIBS所获得的检测限相似,但具有更高的能量密度和更高的每脉冲能量。该技术的主要优点在于,它可以同时测量几种痕量元素的相对较低的浓度,同时最大程度地减少对样品的损害。

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  • 来源
    《Journal of Analytical Atomic Spectrometry》 |2013年第3期|388-395|共8页
  • 作者单位

    INRS-Energie, Materiaux et Telecommunications, 1650 Lionel-Boulet Blvd, Varennes, QC J3X 1S2, Canada National Research Council of Canada, Industrial Materials Institute, 75 de Mortagne Blvd, Bouckerville, QC J4B 6Y4, Canada;

    INRS-Energie, Materiaux et Telecommunications, 1650 Lionel-Boulet Blvd, Varennes, QC J3X 1S2, Canada;

    INRS-Energie, Materiaux et Telecommunications, 1650 Lionel-Boulet Blvd, Varennes, QC J3X 1S2, Canada;

    National Research Council of Canada, Industrial Materials Institute, 75 de Mortagne Blvd, Bouckerville, QC J4B 6Y4, Canada;

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