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首页> 外文期刊>Journal of Analytical Atomic Spectrometry >Solid sampling: advantages and challenges for chemical element determination-a critical review
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Solid sampling: advantages and challenges for chemical element determination-a critical review

机译:固体抽样:化学元素确定的优缺点 - 批判性评论

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摘要

In recent decades, direct solid sample analysis has been reported in the literature as an alternative to traditional methods of sample preparation, becoming well established in the atomic spectrometry field. Therefore, this review discusses recent advances in different techniques such as flame atomic absorption spectrometry, graphite furnace atomic absorption spectrometry, high-resolution continuum source graphite furnace atomic absorption spectrometry, electrothermal vaporization, laser ablation, laser-induced breakdown spectroscopy. X-ray fluorescence spectrometry, glow discharge optical emission and mass spectrometry and arc/spark optical emission spectrometry, which are the most commonly used techniques for solid sample analysis. New possibilities such as nonmetal detection through molecular emission or absorption signals, speciation analysis, portable instrumentation for in situ analysis, and surface elemental mapping for obtaining chemical imaging will be discussed. Aspects associated with advantages and limitations are presented, relating the main instrumental advances to the expansion of the methods developed in this subject, pointing out the potential ability to overcome spectral interference and matrix effects through the development of calibration strategies to achieve the success of solid sampling in several application areas.
机译:近几十年来,在文献中报道了直接固体样品分析作为样品制备方法的替代方法,在原子光谱场中成立了很好。因此,本综述讨论了近期不同技术的预期,如火焰原子吸收光谱法,石墨炉原子吸收光谱法,高分辨率连续源石墨炉原子吸收光谱法,电热蒸发,激光烧蚀,激光诱导的击穿光谱。 X射线荧光光谱法,辉光放电光发射和质谱和电弧/火花光发射光谱法,这是最常用的固体样品分析技术。通过分子发射或吸收信号,物质分析,用于原位分析的便携式仪器以及用于获得化学成像的表面元素映射,如非金属检测等新可能性。提出了与优点和限制相关的各个方面,将主要乐器进步与该主题开发的方法的扩展相关,指出通过开发校准策略来实现固体采样的成功来克服光谱干扰和矩阵效应的潜在能力在几个应用领域。

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  • 来源
    《Journal of Analytical Atomic Spectrometry》 |2020年第1期|54-77|共24页
  • 作者单位

    Group for Applied Instrumental Analysis Department of Chemistry Federal University of Sao Carlos P.O. Box 676 Sao Carlos State 13565-905 Brazil;

    Group for Applied Instrumental Analysis Department of Chemistry Federal University of Sao Carlos P.O. Box 676 Sao Carlos State 13565-905 Brazil;

    Group for Applied Instrumental Analysis Department of Chemistry Federal University of Sao Carlos P.O. Box 676 Sao Carlos State 13565-905 Brazil;

    Group for Applied Instrumental Analysis Department of Chemistry Federal University of Sao Carlos P.O. Box 676 Sao Carlos State 13565-905 Brazil;

    Group for Applied Instrumental Analysis Department of Chemistry Federal University of Sao Carlos P.O. Box 676 Sao Carlos State 13565-905 Brazil;

    Group for Applied Instrumental Analysis Department of Chemistry Federal University of Sao Carlos P.O. Box 676 Sao Carlos State 13565-905 Brazil;

    Group for Applied Instrumental Analysis Department of Chemistry Federal University of Sao Carlos P.O. Box 676 Sao Carlos State 13565-905 Brazil;

    Group for Applied Instrumental Analysis Department of Chemistry Federal University of Sao Carlos P.O. Box 676 Sao Carlos State 13565-905 Brazil;

    Group for Applied Instrumental Analysis Department of Chemistry Federal University of Sao Carlos P.O. Box 676 Sao Carlos State 13565-905 Brazil;

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