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Development and validation of a laser-induced breakdown spectroscopic method for ultra-trace determination of Cu, Mn, Cd and Pb metals in aqueous droplets after drying

机译:激光诱导击穿光谱法在干燥后以超痕量测定水滴中的铜,锰,镉和铅金属的开发和验证

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摘要

The present study reports a fast and accurate methodology for laser-induced breakdown spectroscopic, LIBS, analysis of aqueous samples for environmental monitoring purposes. This methodology has two important attributes: one is the use of a 300 nm oxide coated silicon wafer substrate (Si+SiO2) for the first time for manual injection of 0.5 microliter aqueous metal solutions, and two is the use of high energy laser pulses focused outside the minimum focus position of a plano convex lens at which relatively large laser beam spot covers the entire droplet area for plasma formation. Optimization of instrumental LIBS parameters like detector delay time, gate width and laser energy has been performed to maximize atomic emission signal of target analytes; Cu, Mn, Cd and Pb. Under the optimal conditions, calibration curves were constructed and enhancements in the LIBS emission signal were obtained compared to the results of similar studies given in the literature. The analytical capability of the LIBS technique in liquid analysis has been improved. Absolute detection limits of 1.3 pg Cu, 3.3 pg Mn, 79 pg Cd and 48 pg Pb in 0.5 microliter volume of droplets were obtained from single shot analysis of five sequential droplets. The applicability of the proposed methodology to real water samples was tested on the Certified Reference Material, Trace Metals in Drinking Water, CRM-TMDW and on ICP multi-element standard samples. The accuracy of the method was found at a level of minimum 92% with relative standard deviations of at most 20%. Results suggest that 300 nm oxide coated silicon wafer has an excellent potential to be used as a substrate for direct analysis of contaminants in water supplies by LIBS and further research, development and engineering will increase the performance and applicability of the methodology.
机译:本研究报告了一种快速准确的方法,用于激光诱导击穿光谱,LIBS,用于环境监测目的的水性样品分析。这种方法具有两个重要属性:一是首次使用300 nm氧化物涂层的硅晶片衬底(Si + SiO2)手动注入0.5微升金属水溶液,二是使用聚焦的高能激光脉冲在平凸透镜的最小聚焦位置之外,在该位置上较大的激光束点覆盖了整个液滴区域以形成等离子体。已经对仪器的LIBS参数进行了优化,例如检测器延迟时间,门宽和激光能量,以使目标分析物的原子发射信号最大化。铜,锰,镉和铅在最佳条件下,与文献中类似研究的结果相比,可以构建校准曲线并获得LIBS发射信号的增强。 LIBS技术在液体分析中的分析能力得到了提高。通过对五个连续液滴的单次分析,获得了在0.5微升液滴中的1.3 pg Cu,3.3 pg Mn,79 pg Cd和48 pg Pb的绝对检测限。在认证的参考材料,饮用水中的痕量金属,CRM-TMDW和ICP多元标准样品上测试了所提出方法对真实水样品的适用性。发现该方法的准确性最低为92%,相对标准偏差最高为20%。结果表明300 nm氧化物涂层的硅片具有极好的潜力,可以用作LIBS直接分析供水中污染物的基质,进一步的研究,开发和工程将提高该方法的性能和适用性。

著录项

  • 作者

    Aras Nadir; Yalçın Şerife;

  • 作者单位
  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 eng
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