首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Synchrotron radiation induced #mu#-X-ray fluorescence spectroscopy on municipal solid waste fly ashes
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Synchrotron radiation induced #mu#-X-ray fluorescence spectroscopy on municipal solid waste fly ashes

机译:同步辐射诱导的#mu#-X射线荧光光谱法处理城市固体垃圾飞灰

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摘要

The high brightness of synchrotron radiation sources of the 3rd generation and the development of focusing optical elements for X-rays make it possible to create beams of micrometer size with high intensity. These beams can be used to reveal spatially resolved information about structural and chemical properties of particles. Here, the possibility of using synchrotron radiation micro-X-ray fluorescence (#mu#-SRXRF) for the determination of the major and minor components and their distribution within municipal solid waste (MSW) fly ashes has been investigated. By using an excitation energy of 27.0 keV, trace elements of environmental concern, like Cd, Pb and Zn can be detected to their low concentrations (ppm) routinely. The aim of the work was to gain a better understanding of the factors that determine the environmental mobility of each trace element and, in particular, the potential for their dissolution and leaching. Such detailed investigation of the content and distribution of toxic metals on/in individual particles is a valuable complement to the usual elemental analysis of bulk samples.
机译:第三代同步加速器辐射源的高亮度以及用于X射线的聚焦光学元件的发展使得可以创建具有高强度的微米级光束。这些光束可用于揭示有关颗粒的结构和化学性质的空间分辨信息。在这里,研究了使用同步辐射微X射线荧光(#mu#-SRXRF)测定城市固体垃圾(MSW)飞灰中主要和次要成分及其分布的可能性。通过使用27.0 keV的激发能,可以常规地检测到环境相关的痕量元素,如Cd,Pb和Zn,使其低浓度(ppm)。这项工作的目的是更好地了解决定每种微量元素的环境迁移率的因素,尤其是其溶解和浸出的潜力。对单个颗粒上/之中有毒金属的含量和分布进行的详细研究,是对大块样品常规元素分析的宝贵补充。

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