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[激光诱导击穿光谱法检测水溶液中的金属离子]

[Detection of metal ions in water solution by laser induced breakdown spectroscopy].

作者信息

Wu Jiang-lai, Fu Yuan-xia, Li Ying, Lu Yuan, Cui Zhi-feng, Zheng Rong-er

机构信息

Optics and Optoelectronics Laboratory, Ocean University of China, Qingdao 266100, China.

出版信息

Guang Pu Xue Yu Guang Pu Fen Xi. 2008 Sep;28(9):1979-82.

Abstract

Environmental concerns about the hazardous heavy metals in seawaters have been greatly increased in these years. To evaluate the potential application of laser induced breakdown spectroscopy (LIBS) to on-line toxic metals pollution monitoring in ocean, some experimental investigations with LIBS technique to detect metal ions in CuSO4 and Pb(NO3)2 water solutions have been carried out in our laboratory. A Q-switched Nd:YAG laser operating at 532 nm with pulse width of 10 ns and repetition frequency of 10 Hz was utilized to generate plasma on a flowing liquid surface. The ensuing plasma emission was coupled by a quartz lens to a double grating monochromator and recorded with a PMT in conjunction with a computer controlled boxcar integrator. The temporal characteristic of the laser induced plasma and the power dependence of LIBS signal were investigated. The operation condition was improved with the optimal ablation pulse energy and the delay time for LIBS signal detection. The ablation location was varied to achieve better LIBS signal. The optimized ablation location for lead was found to be different from that for copper due to the breakdown of the ambient air. The detection limit of metal ion in water solution under the optimized operation conditions was found to be 31 ppm for copper and 50 ppm for lead. The experimental results proved that the flexibility of LIBS has the potential to be applied to the detection of toxic metals in seawaters, but the limits of detection for each element should be improved further to make a practical application of LIBS in this field.

摘要

近年来,人们对海水中有害重金属的环境担忧大幅增加。为评估激光诱导击穿光谱技术(LIBS)在海洋在线有毒金属污染监测中的潜在应用,我们实验室开展了一些利用LIBS技术检测硫酸铜和硝酸铅水溶液中金属离子的实验研究。采用一台调Q Nd:YAG激光器,其工作波长为532 nm,脉冲宽度为10 ns,重复频率为10 Hz,在流动的液体表面产生等离子体。随后产生的等离子体发射光通过石英透镜耦合到双光栅单色仪,并由光电倍增管(PMT)结合计算机控制的盒式积分器进行记录。研究了激光诱导等离子体的时间特性以及LIBS信号的功率依赖性。通过优化烧蚀脉冲能量和LIBS信号检测的延迟时间来改善操作条件。改变烧蚀位置以获得更好的LIBS信号。由于周围空气的击穿,发现铅的最佳烧蚀位置与铜的不同。在优化操作条件下,水溶液中金属离子的检测限为铜31 ppm,铅50 ppm。实验结果证明,LIBS的灵活性使其有潜力应用于海水中有毒金属的检测,但为使LIBS在该领域实际应用,各元素的检测限还需进一步提高。

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