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Heavy Metal Detection in Soils by Laser Induced Breakdown Spectroscopy Using Hemispherical Spatial Confinement

机译:使用半球形空间限制的激光诱导击穿光谱法检测土壤中的重金属

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Spatial confinement has great potential for Laser Induced Breakdown Spectroscopy (LIBS) instruments after it has been proven that it has the ability to enhance the LIBS signal strength and repeatability. In order to achieve in-situ measurement of heavy metals in farmland soils by LIBS, a hemispherical spatial confinement device is designed and used to collect plasma spectra, in which the optical fibers directly collect the breakdown spectroscopy of the soil samples. This device could effectively increase the stability of the spectrum intensity of soil. It also has other advantages, such as ease of installation, and its small and compact size. The relationship between the spectrum intensity and the laser pulse energy is studied for this device. It is found that the breakdown threshold is 160 cm(-2), and when the laser fluence increases to 250 J/cm(2), the spectrum intensity reaches its maximum. Four different kinds of laser pulse energy were set up and in each case the limits of detection of Cd, Cu, Ni, Pb and Zn were calculated. The results show that when the laser pulse fluence was 2.12 GW/cm(2), we obtained the smallest limits of detection of these heavy metals, which are all under 10 mg/kg. This device can satisfy the needs of heavy metal in-situ detection, and in the next step it will be integrated into a portable LIBS instrument.
机译:事实证明,空间限制具有增强LIBS信号强度和可重复性的能力,对激光诱导击穿光谱(LIBS)仪器具有巨大潜力。为了通过LIBS实现农田土壤中重金属的现场测量,设计了一种半球形的空间限制装置,用于收集等离子体光谱,其中的光纤直接收集了土壤样品的分解光谱。该装置可以有效地提高土壤光谱强度的稳定性。它还具有其他优点,例如易于安装,体积小巧。研究了该装置的光谱强度和激光脉冲能量之间的关系。发现击穿阈值为160 cm(-2),并且当激光通量增加到250 J / cm(2)时,光谱强度达到最大值。设置了四种不同的激光脉冲能量,并分别计算了Cd,Cu,Ni,Pb和Zn的检出限。结果表明,当激光脉冲通量为2.12 GW / cm(2)时,我们获得的这些重金属的最低检出限均为10 mg / kg。该设备可以满足重金属原位检测的需求,并且在下一步中,它将被集成到便携式LIBS仪器中。

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