Eseller Kemal E, Yueh Fang-Yu, Singh Jagdish P, Melikechi Noureddine
Institute for Clean Energy Technology, Mississippi State University, 205 Research Boulevard, Starkville, Mississippi 39759, USA.
Appl Opt. 2012 Mar 1;51(7):B171-5. doi: 10.1364/AO.51.00B171.
Laser-induced breakdown spectroscopy (LIBS) has been evaluated as a tool for monitoring trace levels of helium in gas mixtures consisting mostly of hydrogen. Calibration data for helium in hydrogen was investigated at different helium concentration levels. At high concentrations of helium (>7.25%), the LIBS signal is quenched due to Penning ionization. The hydrogen alpha line (656.28 nm) was observed to broaden as the concentration of helium impurities in the hydrogen gas mixture increased. The helium line at 587.56 nm was selected as the analyte line for helium impurity detection. The effects of laser energy, the delay time between the laser pulse and data acquisition, and the gas pressure on the LIBS signal of helium were investigated to determine the optimum conditions for helium detection. The LIBS signal from the helium line at 587.56 nm shows good linear correlation with helium concentration for He concentrations below 1%. Thus, LIBS can be reliably used to detect the low levels of helium. The limit of detection for helium was found to be 78 ppm.
激光诱导击穿光谱法(LIBS)已被评估为一种监测主要由氢气组成的气体混合物中痕量氦的工具。研究了不同氦浓度水平下氢气中氦的校准数据。在高浓度氦(>7.25%)时,由于彭宁电离,LIBS信号会猝灭。观察到随着氢气混合物中氦杂质浓度的增加,氢α线(656.28 nm)变宽。选择587.56 nm处的氦线作为检测氦杂质的分析线。研究了激光能量、激光脉冲与数据采集之间的延迟时间以及气压对氦的LIBS信号的影响,以确定检测氦的最佳条件。对于低于1%的氦浓度,587.56 nm处氦线的LIBS信号与氦浓度呈现良好的线性相关性。因此,LIBS可可靠地用于检测低水平的氦。氦的检测限为78 ppm。