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2013 Atomic spectrometry update-A review of advances in X-ray fluorescence spectrometry

机译:2013原子光谱仪更新-X射线荧光光谱仪研究进展回顾

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摘要

This review comments on the ever expanding range of work using the XRF group of techniques published approximately between April 2012 and March 2013. It presents innovative work as opposed to the wealth of contributions that combine XRF spectrometry in conjunction with other analytical techniques and those descriptions of the valuable routine applications published during the review period. New specialised laboratory instruments, X-ray sources and data processing procedures have been introduced as well as further detector development. Portable and hand-held systems have been increasingly used and the literature represents the widening application of μ-SR techniques for XRF mapping and insights of the sub-cellular metabolisms of animals and plants. Applications using TXRF were published dealing with samples from the pharmaceutical industry, biological tissues, extraterrestrial samples and the analysis of nuclear fuels. Nano-particles feature in many applications and this review is enlivened by reports on more space missions. Climate change, environmental studies and green chemistry feature along with work on archaeological and cultural heritage samples including the authentication of an eighteenth century harpsichord varnish.
机译:这篇评论评论了大约在2012年4月至2013年3月之间发布的XRF技术组工作范围的不断扩大。它提出了创新的工作,而不是将XRF光谱技术与其他分析技术结合起来的大量贡献以及对这些技术的描述。审查期间发布的有价值的常规应用程序。引入了新的专用实验室仪器,X射线源和数据处理程序以及进一步的探测器开发。便携式和手持式系统已得到越来越多的使用,文献报道了μ-SR技术在XRF绘图和动植物亚细胞代谢方面的广泛应用。发表了使用TXRF的应用程序,涉及制药行业的样品,生物组织,地外样品以及核燃料分析。纳米粒子在许多应用中都有特色,有关更多太空任务的报告使这一评论更加活跃。气候变化,环境研究和绿色化学的特色以及考古和文化遗产样本的工作,包括对18世纪大键琴清漆的鉴定。

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  • 来源
    《Journal of Analytical Atomic Spectrometry》 |2013年第10期|1544-1590|共47页
  • 作者单位

    West X-ray Solutions, 405 Whirlowdale Road, Sheffield S11 9NF, UK;

    Oxford Instruments X-ray Technology, 360 El Pueblo Road, Scotts Valley, CA 95066, USA;

    Faculty of Science, The Open University, Walton Hall, Milton Keynes, MK7 6AA, UK;

    Vienna University of Technology, Atominstitut, Stadionallee 2,1020, Vienna, Austria;

    Flemish Institute for Technological Research (VITO), Boeretang 200, 2400 Mol, Belgium;

    Office of Safeguards Analytical Services, IAEA Laboratories, A-2444 Seibersdorf, Austria;

    Vienna University of Technology, Atominstitut, Stadionallee 2,1020, Vienna, Austria;

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