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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Practical soil analysis by laser induced breakdown spectroscopy employing subtarget supported micro mesh as a powder sample holder
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Practical soil analysis by laser induced breakdown spectroscopy employing subtarget supported micro mesh as a powder sample holder

机译:激光诱导击穿光谱的实际土壤分析采用下划线支撑的微网作为粉末样品架

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摘要

A practical alternative of sample preparation technique is proposed for direct powder analysis using laser-induced breakdown spectroscopy (LIBS) instead of the commonly adopted treatment of pelletizing the powder. The resulted pellet is known to suffer from reduced sensitivity of emission. Besides, it may also give rise to interfering effect from the binder emission. We introduce in this report a more practical technique of using a subtarget supported micro mesh (SSMM) powder sample holder. The LIBS spectrum of standard soil powder measured with 13 mJ 1064 nm Nd:YAG laser in 0.65 kPa ambient air is shown to exhibit the sharp emission lines of all the major elements in the sample. A comparison with the emission spectra measured from the pelletized powder, the spectrum obtained using the SSMM sample holder shows distinctly superior spectral quality marked by the absence of matrix effect found in pelletized powder samples, and the much stronger intensity due to the more effective shock wave plasma induced thermal excitation process produced by the hard subtarget in the sample holder. Repeating the measurement on a number of the standard soil samples of various Pb contents is shown to yield a linear calibration line with practically zero intercept and a detection limit of less than 10 ppm. We have thus demonstrated the viability of the proposed powder sample holder for the development of practical and quantitative powder analysis in the field. (C) 2017 Elsevier B.V. All rights reserved.
机译:提出了使用激光诱导的击穿光谱(Libs)直接粉末分析的样品制备技术的实际替代方案代替通常采用的造粒粉末的常用处理。已知得到的颗粒患有降低的发射敏感性。此外,它还可能导致干扰粘合剂排放的影响。我们在本报告中介绍了使用子条件支持的微网(SSMM)粉末样品架的更实用的技术。用13MJ1064nm Nd:YAG激光测量的标准土壤粉末的Libs光谱显示在0.65kPa环境空气中,显示出样品中所有主要元素的急剧发射线。与从粒状粉末测量的发射光谱的比较,使用SSMM样品保持器获得的光谱显示出明显优异的光谱质量,其不存在在粒化粉末样品中发现的基质效果,并且由于更有效的冲击波导致的强度更强的强度等离子体诱导通过样品架中的硬质子特征产生的热激励过程。显示在各种Pb内容物的许多标准土壤样品上重复测量,以产生具有实际零截取的线性校准线,检测限度小于10ppm。因此,我们证明了所提出的粉末样品架的可行性,用于开发现场实际和定量粉末分析。 (c)2017 Elsevier B.v.保留所有权利。

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