首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Calibration-free analysis of immersed brass alloys using long-ns-duration pulse laser-induced breakdown spectroscopy with and without correction for nonstoichiometric ablation
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Calibration-free analysis of immersed brass alloys using long-ns-duration pulse laser-induced breakdown spectroscopy with and without correction for nonstoichiometric ablation

机译:使用长ns持续时间脉冲激光诱导击穿光谱法对非化学计量烧蚀进行校正和不进行校正的沉浸黄铜合金的无标定分析

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Long-ns-duration, single pulse laser-induced breakdown spectroscopy CUBS) is known tote an effective method to observe well resolved spectra from samples immersed in water at high hydrostatic pressures. The aim of this study is to investigate whether the signals obtained using this method are suitable for quantitative analysis of chemical composition. Six certified brass alloys consisting of copper (Cu), zinc (Zn) and lead (Pb) were measured underwater using a laser pulse of duration 250 ns, and their compositions were determined using calibration-free LIBS (CF-LIBS) and corrected CF-LIBS (CCF-LIBS) methods. The mass fractions of Cu and Zn calculated using CF-LIBS showed better agreement with the certified values than those determined using CCF-LIBS, with relative errors of Cu 4.2 +/- 3.3% and Zn 72 +/- 6.4%. From the results, it can be said that the difference of preferential evaporation and ablation among elements does not need to be considered for underwater measurements with the long-pulse LIBS setup used in this work. While the results indicate that the CF-LIBS method can be applied for in situ quantitative analysis of major elements with concentrations > similar to 10%, the mass fractions determined for Pb, with concentrations < 5 % had large relative errors, suggesting that an alternative method is required to quantify minor elements. (C) 2015 The Authors. Published by Elsevier B.V.
机译:长ns持续时间,单脉冲激光诱导击穿光谱法(CUBS)是一种有效的方法,可以观察高静水压力下浸入水中的样品的分辨良好的光谱。这项研究的目的是调查使用此方法获得的信号是否适合化学成分的定量分析。使用持续时间为250 ns的激光脉冲在水下测量六种由铜(Cu),锌(Zn)和铅(Pb)组成的认证黄铜合金,并使用无标定LIBS(CF-LIBS)和校正后的CF确定其成分-LIBS(CCF-LIBS)方法。与使用CCF-LIBS所测定的质量分数相比,使用CF-LIBS所计算的Cu和Zn的质量分数显示出与认证值更好的一致性,相对误差为Cu 4.2 +/- 3.3%和Zn 72 +/- 6.4%。从结果可以看出,在这项工作中使用的长脉冲LIBS装置进行水下测量时,不需要考虑元素之间优先蒸发和烧蚀的差异。虽然结果表明CF-LIBS方法可用于浓度>接近10%的主要元素的原位定量分析,但浓度<5%的Pb的质量分数具有较大的相对误差,这表明有另一种选择需要使用方法来量化次要元素。 (C)2015作者。由Elsevier B.V.发布

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