门控PMT联用LIBS技术的高速采集系统研发及其应用
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1.武汉邮电科学研究院;2.华中科技大学武汉光电国家研究中心;3.邵阳学院

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O433.4

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国家自然科学基金项目(52207167,52477112)


Development and application of high speed acquisition system based on gated PMT and LIBS technology
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    摘要:

    激光诱导击穿光谱(Laser Induced Breakdown Spectroscopy, LIBS)结合门控光电倍增管(Gated Photomultiplier Tube, Gated-PMT)技术中信号采集装置是影响LIBS分析系统小型化与集成化的关键组件之一,通过采用微控制芯片与AD9226芯片设计实现了7.6 MHz采集频率的12位PMT信号高速采集系统,并对水溶液中铅(Pb),铬(Cr)元素进行了定量分析。实验结果表明,LIBS结合门控PMT分析系统采用高速采集系统建立的Pb,Cr元素定标曲线拟合度分别为0.988,0.978,相对标准偏差(Relative Standard Deviation,RSD)分别为3.56%,6.57%,检出限分别为0.013与0.087 mg/L,相比未采用PMT的LIBS检测技术降低了一个数量级。与电感耦合等离子体质谱法(Inductively coupled plasma-Mass Spectrometry,ICP-MS)对比结果显示,对浓度为7.0 mg/L的Pb溶液与0.7 mg/L的Cr溶液检测结果的相对误差分别为2.81%,3.26%。因此PMT信号高速采集系统在水溶液中重金属的LIBS分析中具有良好的定量效果,且具有体积小,功耗与成本低的优势,有利于进一步推进LIBS技术在水质重金属检测领域中的应用。

    Abstract:

    Laser Induced Breakdown Spectroscopy (LIBS) combined with Gated Photo Multiplier Tube (Gated-PMT) The signal acquisition device of Gated-PMT technology is one of the key components that affect the miniaturization and integration of the LIBS analysis system. Therefore, a 12-bit PMT signal high-speed acquisition system with a 7.6MHz acquisition frequency is designed and implemented using a microcontrol chip and an AD9226 chip. The element chromium (Cr) was quantitatively analyzed. The experimental results show that LIBS combined with gated PMT analysis system adopts high-speed acquisition system to establish Pb, Cr element calibration curve fitting degree is 0.988, 0.978, relative standard deviation (RSD) is 3.56%, 6.57%, detection limit is 0.013 and 0.087 mg/L, respectively. Compared with the LIBS detection technology without PMT, it is an order of magnitude lower. Compared with Inductively coupled plasma-Mass Spectrometry (ICP-MS), the relative errors of Pb solution with 7.0 mg/L and Cr solution with 0.7 mg/L were 2.81% and 3.26%, respectively. Therefore, the PMT signal high-speed acquisition system has a good quantitative effect in the LIBS analysis of heavy metals in aqueous solutions, and has the advantages of small size, low power consumption and low cost, which is conducive to further promoting the application of LIBS technology in the field of water quality heavy metal detection.

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历史
  • 收稿日期:2024-10-09
  • 最后修改日期:2024-12-27
  • 录用日期:2024-12-27
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