首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >A new detection system for laser induced breakdown spectroscopy based on an acousto-optical tunable filter coupled to a photomultiplier: Application for manganese determination in steel
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A new detection system for laser induced breakdown spectroscopy based on an acousto-optical tunable filter coupled to a photomultiplier: Application for manganese determination in steel

机译:基于与光电倍增管耦合的声光可调滤光片的新型激光诱导击穿光谱检测系统:在钢中锰测定中的应用

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The development of a new detection system for laser induced breakdown spectroscopy (LIBS), based on a collinear quartz acousto-optical tunable filter (AOTF) for the ultraviolet spectral region coupled to a photomultiplier, is described. It was used in conjunction with a 1064 nm, 5 ns pulse duration neodymium-doped yttrium aluminium garnet (Nd:YAG) laser source and also employed a radio-frequency signal generator to control the AOTF and a digital delay generator to delay the start of the detection in relation to the instant of the application of the laser pulse. The detection system was optimized for highest detectivity for the manganese peak at 293.9 nm while analyzing a steel sample by LIBS. The resulting signal to background ratio at the optimal conditions of 2 mus delay time, 40 mus integration time gate and 110 mJ pulse energy was similar to that of a commercial echelle-intensified charge-coupled device (echelle-ICCD) detection system. The new detection system was then employed for manganese determination in steel samples, taking the emission signals at just 15 wavelengths, 5 related to the above mentioned manganese peak, another 5 to background emission around 296.0 nm and the others to the iron peak at 297.3 nm (internal standard). The resulting analytical curve for manganese, obtained using 5 samples in the concentration range of 0.214 to 0.939% w/w, presented a correlation coefficient of 0.979 for an exponential regression function. The relative errors of predicting the manganese concentrations, using the calibration curve, for 2 samples, containing 0.277 and 0.608% w/w, were 20.7 and -1.9%, respectively.
机译:描述了一种新的激光诱导击穿光谱检测系统(LIBS)的开发,该系统基于用于耦合到光电倍增管的紫外光谱区域的共线石英声光可调滤光片(AOTF)。它与1064 nm,5 ns脉冲持续时间的掺钕钇铝石榴石(Nd:YAG)激光源一起使用,还使用了射频信号发生器来控制AOTF,并使用数字延迟发生器来延迟启动。与施加激光脉冲的瞬间有关的检测。该检测系统经过优化,可在通过LIBS分析钢样品时对293.9 nm处的锰峰进行最高检测。在2毫秒延迟时间,40微米积分时间门控和110兆焦耳脉冲能量的最佳条件下,所得到的信噪比与商用埃希勒增强型电荷耦合器件(echelle-ICCD)检测系统的相近。然后,将新的检测系统用于钢样品中的锰测定,仅在15个波长处采集发射信号,其中5个与上述锰峰有关,另外5个与背景发射有关,在296.0 nm附近,而其他与在737.3 nm处的铁峰相关。 (内部标准)。使用浓度范围为0.214至0.939%w / w的5个样品获得的锰分析曲线显示出0.979的指数回归函数相关系数。使用校准曲线预测的两个样品中,含0.277和0.608%w / w的锰浓度的相对误差分别为20.7和-1.9%。

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