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Atomic spectrometry update: review of advances in atomic spectrometry and related techniques

机译:原子光谱法更新:原子光谱法和相关技术的进展回顾

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摘要

This review of 166 references covers developments in 'Atomic Spectrometry' published in the twelve months from November 2016 to November 2017 inclusive. It covers atomic emission, absorption, fluorescence and mass spectrometry, but excludes material on speciation and coupled techniques which is included in a separate review. It should be read in conjunction with the previous review and the other related reviews in the series.~(1-6) A critical approach to the selection of material has been adopted, with only novel developments in instrumentation, techniques and methodology being included. Novel trends are evenly spread across the techniques this year, with no single bandwagon' rolling ahead of the rest. The most significant development seems to be the advance of 2D and 3D imaging using LA-ICP-MS, and the challenges associated with how to process the large amounts of data produced. In this context, there were some useful reports of user-friendly software for imaging large datasets and methods of compressed sensing to reduce the amount of data in the first place. Single particle analysis using ICP-MS is now well established in the literature which, as well as being a useful technique for particle analysis in its own right, it also offer interesting insights into the mechanisms of atomisation and ionisation in the ICP. New methods of vapour generation using a plasma as both vapour generation and excitation/ionisation cell show some promise for the analysis of single drops of solution using a relatively simple, miniaturised instrumental set-up. Methods for IR-ICP-MS of non-radiogenic isotopes continues to grow, with more elements being added to the list in this review period.
机译:这篇对166篇参考文献的综述涵盖了2016年11月至2017年11月这12个月内发布的《原子光谱法》的发展。它涵盖了原子发射,吸收,荧光和质谱分析,但不包括有关物种形成和耦合技术的材料,这些材料均包含在单独的评论中。应该将其与以前的评论以及该系列的其他相关评论一起阅读。〜(1-6)已采用一种选择材料的关键方法,仅包括仪器,技术和方法学方面的新颖发展。今年,各种技术均出现了新颖的趋势,没有其他潮流赶上其他技术。最重要的发展似乎是使用LA-ICP-MS进行2D和3D成像的进步,以及与如何处理产生的大量数据相关的挑战。在这种情况下,有一些有用的用户友好软件报告,这些软件可用于对大型数据集进行成像,并提供压缩传感方法以减少数据量。现在,使用ICP-MS进行单颗粒分析已经在文献中得到了很好的确立,它本身就是一种有用的颗粒分析技术,它还为ICP中的雾化和电离机理提供了有趣的见解。使用等离子体作为蒸气产生和激发/电离池的蒸气产生的新方法显示了使用相对简单,小型化的仪器分析单滴溶液的一些希望。非放射性同位素的IR-ICP-MS方法继续发展,在本报告所述期间,更多元素被添加到列表中。

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  • 来源
    《Journal of Analytical Atomic Spectrometry》 |2018年第5期|684-705|共22页
  • 作者单位

    School of Geography, Earth, and Environmental Sciences, University of Plymouth, Drake Circus, Plymouth, UKPL4 8AA;

    University of Oviedo, Faculty of Science, Department of Physics, c/ Calvo Sotelo s, 33006 Oviedo, Spain;

    St. Ambrose High School, Blair Road, Coatbridge, Lanarkshire, UK ML5 2EW;

    Ocean and Earth Science, University of Southampton, NOC, Southampton, UK SO14 3ZH;

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