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在环境氦气条件下激光诱导击穿光谱法对锆合金-4进行定量氢分析。

Quantitative hydrogen analysis of zircaloy-4 in laser-induced breakdown spectroscopy with ambient helium gas.

作者信息

Ramli Muliadi, Fukumoto Ken-Ichi, Niki Hideaki, Abdulmadjid Syahrun Nur, Idris Nasrullah, Maruyama Tadashi, Kagawa Kiichiro, Tjia May On, Pardede Marincan, Kurniawan Koo Hendrik, Hedwig Rinda, Lie Zener Sukra, Lie Tjung Jie, Kurniawan Davy Putra

机构信息

Program of Nuclear Power and Energy Safety Engineering, Graduate School of Engineering, Fukui University, Fukui 910-8507, Japan.

出版信息

Appl Opt. 2007 Dec 1;46(34):8298-304. doi: 10.1364/ao.46.008298.

Abstract

This experiment was carried out to address the need for overcoming the difficulties encountered in hydrogen analysis by means of plasma emission spectroscopy in atmospheric ambient gas. The result of this study on zircaloy-4 samples from a nuclear power plant demonstrates the possibility of attaining a very sharp emission line from impure hydrogen with a very low background and practical elimination of spectral contamination of hydrogen emission arising from surface water and water vapor in atmospheric ambient gas. This was achieved by employing ultrapure ambient helium gas as well as the proper defocusing of the laser irradiation and a large number of repeated precleaning laser shots at the same spot of the sample surface. Further adjustment of the gating time has led to significant reduction of spectral width and improvement of detection sensitivity to ~50 ppm. Finally, a linear calibration curve was also obtained for the zircaloy-4 samples with zero intercept. These results demonstrate the feasibility of this technique for practical in situ and quantitative analysis of hydrogen impurity in zircaloy-4 tubes used in a light water nuclear power plant.

摘要

进行本实验是为了满足克服在大气环境气体中通过等离子体发射光谱法进行氢分析时遇到的困难的需求。对来自核电站的锆合金-4样品的这项研究结果表明,有可能从不纯氢气中获得非常尖锐的发射线,背景非常低,并且能实际消除大气环境气体中地表水和水蒸气对氢发射造成的光谱污染。这是通过使用超纯环境氦气、对激光照射进行适当散焦以及在样品表面的同一点进行大量重复的预清洁激光脉冲实现的。进一步调整选通时间导致光谱宽度显著减小,检测灵敏度提高到约50 ppm。最后,还获得了截距为零的锆合金-4样品的线性校准曲线。这些结果证明了该技术用于轻水核电站中锆合金-4管内氢杂质实际原位定量分析的可行性。

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