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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Laser-Induced Breakdown Spectroscopy for the On-Line Multielement Analysis of Highly Radioactive Glass Melt. Part I: Characterization and Evaluation of the Method
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Laser-Induced Breakdown Spectroscopy for the On-Line Multielement Analysis of Highly Radioactive Glass Melt. Part I: Characterization and Evaluation of the Method

机译:用于高放射性玻璃熔体在线多元素分析的激光诱导击穿光谱。第一部分:方法的表征和评估

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Laser-induced breakdown spectroscopy (LIBS) is presented for the on-line multielement analysis of molten radioactive glass at a simulated vitrification process of high level liquid waste (HLLW). A plasma plume is produced by focusing the third harmonic of a Nd:YAG laser (λ=355 nm) onto the glass melt surface at 1200℃, and the plasma emission is guided via optical fiber and is characterized by an echelle spectrometer for the spectral range from 200 to 780 nm with a resolution of ±0.01 nm. Compared to a Czerny-Turner spectrometer, the echelle spectrometer appears distinctively superior for its broad operational spectral range and high resolution. The laser-induced plasma is found as optically thin and locally in thermodynamic equilibrium (LTE) as characterized by measuring the electron density and plasma temperature. The matrix temperature effect on the spectral emission is observed as significant, increasing the emission line intensities with increasing temperature, but differently from element to element. The applicability of LIBS is demonstrated on a laboratory scale with an inactive simulated HLLW glass melt for various analytical characteristics concerned.
机译:提出了激光诱导击穿光谱法(LIBS),用于在高放废液(HLLW)的模拟玻璃化过程中对熔融放射性玻璃进行在线多元素分析。通过将Nd:YAG激光的三次谐波(λ= 355 nm)聚焦在1200℃的玻璃熔体表面上,产生等离子体羽流,并通过光纤引导等离子体的发射,并用埃歇尔光谱仪表征其光谱。范围从200到780 nm,分辨率为±0.01 nm。与Czerny-Turner光谱仪相比,Echelle光谱仪以其宽广的工作光谱范围和高分辨率而显得特别优越。通过测量电子密度和等离子体温度来表征,发现激光诱导的等离子体光学上薄且局部处于热力学平衡(LTE)中。观察到基质温度对光谱发射的影响是显着的,随着温度的升高,发射线的强度增加,但元素之间的影响不同。 LIBS的适用性在实验室规模下得到了证明,它具有针对各种相关分析特征的非活性模拟HLLW玻璃熔体。

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