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Comparison of the Detection Characteristics of Trace Species Using Laser-Induced Breakdown Spectroscopy and Laser Breakdown Time-of-Flight Mass Spectrometry

机译:激光诱导击穿光谱法和激光击穿飞行时间质谱法对痕量物质检测特性的比较

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The rapid and precise element measurement of trace species, such as mercury, iodine, strontium, cesium, etc. is imperative for various applications, especially for industrial needs. The elements mercury and iodine were measured by two detection methods for comparison of the corresponding detection features. A laser beam was focused to induce plasma. Emission and ion signals were detected using laser-induced breakdown spectroscopy (LIBS) and laser breakdown time-of-flight mass spectrometry (LB-TOFMS). Multi-photon ionization and electron impact ionization in the plasma generation process can be controlled by the pressure and pulse width. The effect of electron impact ionization on continuum emission, coexisting molecular and atomic emissions became weakened in low pressure condition. When the pressure was less than 1 Pa, the plasma was induced by laser dissociation and multi-photon ionization in LB-TOFMS. According to the experimental results, the detection limits of mercury and iodine in N2 were 3.5 ppb and 60 ppb using low pressure LIBS. The mercury and iodine detection limits using LB-TOFMS were 1.2 ppb and 9.0 ppb, which were enhanced due to different detection features. The detection systems of LIBS and LB-TOFMS can be selected depending on the condition of each application.
机译:对于各种应用,尤其是工业需求,必须快速,精确地测量痕量物质(例如汞,碘,锶,铯等)的元素。通过两种检测方法测量了汞和碘元素,以比较相应的检测特征。聚焦激光束以诱发等离子体。使用激光诱导击穿光谱(LIBS)和激光击穿飞行时间质谱(LB-TOFMS)检测发射和离子信号。等离子体产生过程中的多光子电离和电子碰撞电离可通过压力和脉冲宽度来控制。在低压条件下,电子碰撞电离对连续发射,分子和原子共存的影响减弱了。当压力小于1 Pa时,在LB-TOFMS中通过激光离解和多光子电离诱导等离子体。根据实验结果,使用低压LIBS对N 2 中的汞和碘的检出限分别为3.5 ppb和60 ppb。使用LB-TOFMS的汞和碘检出限分别为1.2 ppb和9.0 ppb,这是由于检测特征不同而提高的。可以根据每种应用的条件选择LIBS和LB-TOFMS的检测系统。

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