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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >A novel specimen-preparing method using epoxy resin as binding material for LIBS analysis of powder samples
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A novel specimen-preparing method using epoxy resin as binding material for LIBS analysis of powder samples

机译:用环氧树脂作为粘结材料的新型样品制备方法,用于粉末样品的LIBS分析

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摘要

In view of the inevitable preprocessing of powder samples for LIBS detection, epoxy resin glue was investigated for the first time as a binder of powder samples due to its superior property of improved performance in laser induced breakdown spectroscopy (LIBS) technique as a quantitative analytical tool. For comparative studies of the epoxy resin and traditional polyethylene (PE) pellets in soil, sample detection, the signal intensities of Fe (I) at 404.58 nm, Ca (I) at 443.57 nm, and Cr (I) at 453.52 nm, were studied and subsequently, the calibration curves for these elements were constructed using the standard samples with variable concentrations. The signal intensities of epoxy resin samples were, on average, about 2 times greater than those obtained with the traditional PE pellet samples. Meanwhile, the resin samples showed better R square values of 0.981, 0.985 and 0.979 for curves of Fe (1) 404.58 nm, Ca (I) 443.57 nm, and Cr (I) 453.52 nm, compared to the 0.974, 0.950 and 0.934, of the PE pellet samples. Furthermore, the former represented lower limits of detection (LOD) for Fe, Ca and Cr. These experimental results indicated that this proposed novel method based on epoxy resin can attach samples of properties of high homogeneity, cohesiveness, smoothness and hardness, which are conducive to system stability, testing accuracy and signal enhancement. This method can make LIBS more practical in powder sample analysis. (C) 2015 Elsevier B.V. All rights reserved.
机译:鉴于不可避免地需要对粉末样品进行预处理以进行LIBS检测,环氧树脂胶作为粉末样品的粘合剂首次被研究,这是由于其在激光诱导击穿光谱(LIBS)技术中作为定量分析工具的性能提高具有优越的性能。 。为了对土壤中的环氧树脂和传统聚乙烯(PE)颗粒进行比较研究,样品检测,分别获得了404.58 nm的Fe(I),443.57 nm的Ca(I)和453.52 nm的Cr(I)的信号强度。经过研究,随后使用浓度可变的标准样品绘制了这些元素的校准曲线。环氧树脂样品的信号强度平均是传统PE颗粒样品的信号强度的2倍左右。同时,树脂样品的Fe(1)404.58 nm,Ca(I)443.57 nm和Cr(I)453.52 nm曲线的R平方值分别为0.981、0.950和0.934,分别为0.981、0.985和0.979, PE颗粒样品。此外,前者代表了Fe,Ca和Cr的最低检测限(LOD)。这些实验结果表明,该基于环氧树脂的新方法可以附着高均质性,内聚性,光滑性和硬度的样品,有利于系统的稳定性,测试精度和信号增强。这种方法可以使LIBS在粉末样品分析中更加实用。 (C)2015 Elsevier B.V.保留所有权利。

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