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Rapid detection of trace heavy metals using laser breakdown time-of-flight mass spectrometry

机译:使用激光击穿飞行时间质谱法快速检测痕量重金属

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It has been highly recognized heavy metals pollution concerns the environment,as well as human health.Mercury (Hg) pollution has greatly increased and been considered as a global pollutant because of its long residence time in surrounding.This paper describes the rapid detection of mercury using laser breakdown time-of-flight mass spectrometry at high sensitivity without fragmentation interference from other species.Two irradiation wavelengths 1064nm and 532nm were employed under various experimental conditions.The second harmonic 532nm performs excellent measurement results.The influence of pressure on mercury signal intensity displays a liner growth when increasing the pressure.These results also show as the laser power increased,nitrogen signal intensity increased,but mercury signal intensity increased first and then decreased.Experiment with different buffer gases clarified the recombination of Hg ions and electrons when increasing the laser power,resulting in the decrease of mercury signal intensity.According to these measurement results,the method of enlarging focus area and reducing laser power by tilting the focus lens was applied to decrease the recombination rate to enhance the detection limit.It is demonstrated that the detection limit with lppb can be acquired facilely.
机译:汞(Hg)污染由于其在环境中的长时间停留而大大增加并被认为是全球污染物。使用高灵敏度的激光击穿飞行时间质谱仪,没有其他物种的碎片干扰。在不同的实验条件下使用了1064nm和532nm的两个照射波长,二次谐波532nm表现出优异的测量结果。压力对汞信号强度的影响这些结果还表明,随着激光功率的增加,氮信号强度增加,但汞信号强度先增加,然后下降。当缓冲气体不同时,实验表明,增加汞离子强度时,汞离子和电子的重组。激光功率,导致汞减少根据这些测量结果,采用了扩大聚焦面积和通过倾斜聚焦透镜来降低激光功率的方法来降低复合率,从而提高了检测限。证明了可以达到lppb的检测限轻而易举地。

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