首页> 外文会议>Geoscience and Remote Sensing Symposium, 1996. IGARSS '96. 'Remote Sensing for a Sustainable Future.', International >Influences on detectability of heavy metals in soils by laser-induced breakdown spectroscopy
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Influences on detectability of heavy metals in soils by laser-induced breakdown spectroscopy

机译:激光诱导击穿光谱对土壤中重金属可检测性的影响

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Laser-induced breakdown spectroscopy (LIBS) is a rapid remote measurement method for determination of levels of metals in the environment. A major factor in the acceptance of this technique involves the detection limits under both laboratory and field operations. Research on limits of detection of heavy metals in different types of soils under various conditions using LIBS has been carried out. Pulses from a Nd:YAG laser operating at 150 mJ at /spl lambda/=1.06 /spl mu/m are focused on sample surfaces to produce laser sparks (plasmas). Atomic emissions from the plasmas are recorded using an optical multichannel analyzer after delays of a few microseconds when interference from broadband emissions is reduced. Research has been performed on the detection limits of As, Cd, Cr, Hg, Pb, and Zn in soil matrices. Results are reported on the detectability of Cr in sand samples. The LIBS method described is well-suited to monitoring of subsurface soils using this technique installed in a cone penetrometer. Conditions that would be encountered by a cone penetrometer-based LIBS system are simulated by compressing soil samples and then allowing them to relax for specific intervals before LIBS analysis. Results are presented of the dependence of LIBS measurements on the relaxation time after soil sample compression. This data is important to understand how to implement field-deployable LIBS systems.
机译:激光诱导的击穿光谱(Libs)是一种快速的远程测量方法,用于测定环境中金属水平。接受该技术的主要因素涉及实验室和现场操作下的检测限。采用了利用LIBS在各种条件下不同类型土壤中重金属检测限值的研究。来自ND的脉冲:在150 MJ处运行的YAG激光器在/ SPL Lambda / = 1.06 / SPL mu / m上聚焦在样品表面上以产生激光火花(等离子体)。当从宽带排放的干扰减少时,使用光学多通道分析仪记录来自等离子体的原子发射。已经对土壤基质中的AS,Cd,Cr,Hg,Pb和Zn的检测限制进行了研究。报道了砂样中Cr的可检测性。所描述的LIBS方法非常适合使用安装在锥形孔径计中的该技术的地下土壤监测。通过压缩土壤样品,模拟基于锥形孔径计的Libs系统遇到的条件,然后在Libs分析之前允许它们以特定的间隔放松。结果提出了LIBS测量对土壤样品压缩后弛豫时间的依赖性。此数据对于了解如何实现现场部署的Libs系统非常重要。

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