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Ultrasonic nebulization-sample introduction system for quantitative analysis of liquid samples by laser-induced breakdown spectroscopy

机译:超声波雾化-样品引入系统,用于通过激光诱导击穿光谱对液体样品进行定量分析

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摘要

In this study, design and optimization studies of a sample introduction system based on ultrasonic nebulization of metal salts in aqueous environment for laser-induced breakdown spectroscopic detection were presented. The system consisted of an ultrasonic nebulizer connected to a tandem heater-condenser- membrane dryer unit that produces sub-micron size aerosols. Results indicate improvements in detection limits for some elements with the use of membrane dryer. Optimization studies were performed by systematical investigation of LIBS emission signal with respect to laser energy, carrier gas flow rate and detector timing parameters. Under optimized conditions, calibration graphs for Na, K, Mg, Ca, Cu, Al, Cr, Cd, Pb and Zn were constructed and detection limits were calculated. The applicability of the ultrasonic nebulization-LIBS system was tested on real water samples. This system establishes LIBS as an effective analytical tool for both qualitative and quantitative determination of metal aerosols in aqueous environments. This technique is sufficiently rapid to provide real-time monitoring of toxic metals.
机译:在这项研究中,提出了基于金属盐在水环境中超声雾化的样品引入系统的设计和优化研究,该系统用于激光诱导击穿光谱检测。该系统由连接到串联加热器-冷凝器-膜干燥器单元的超声雾化器组成,该单元产生亚微米尺寸的气溶胶。结果表明,使用膜干燥器可以提高某些元素的检出限。通过系统研究LIBS发射信号的激光能量,载气流速和检测器定时参数,进行了优化研究。在优化的条件下,绘制了Na,K,Mg,Ca,Cu,Al,Cr,Cd,Pb和Zn的校准图,并计算了检出限。超声雾化-LIBS系统的适用性在真实水样上进行了测试。该系统使LIBS成为定性和定量测定水性环境中金属气溶胶的有效分析工具。该技术足够迅速,可以提供有毒金属的实时监控。

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