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Interfaced SEM/EDX and micro-Raman Spectrometry for characterisation of heterogeneous environmental particles - Fundamental and practical challenges

机译:介面SEM / EDX和显微拉曼光谱法用于表征异质环境颗粒-基本和实际挑战

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摘要

The molecular character of atmospheric particulate matter is of prime importance when interpreting air pollution trends and its subsequent influence on environmental monitoring and preventative conservation. The known methods of estimating the molecular composition normally involve elemental analysis of particles (both as bulk and computer controlled analyses of single particles) with subsequent multivariate analyses to clusterise the elements in groups of elements that are closely related to each other. With this approach one can at best suggest associations. Evidently the application of molecular spectroscopy in addition to elemental concentration profiles would provide intimate information regarding the nature of the particles and consequently their fate. This paper gives an overview of research performed in our laboratory and describes the optimisation of experimental parameters to use scanning electron microscopy with energy-dispersive X-ray detection (SEM/EDX) or electron probe X-ray microanalysis (EPXMA) in parallel with micro-Raman Spectrometry (MRS) to investigate single environmental particles. The challenges associated with the two stand-alone techniques are revealed and consequently those posed with an interfaced approach are discussed. Preliminary results. of an initial investigation of the SEM/EDX interfaced with MRS to ultra-fine heterogeneous environmental particles, are given.
机译:当解释空气污染趋势及其对环境监测和预防性养护的影响时,大气颗粒物的分子特性至关重要。估计分子组成的已知方法通常包括对颗粒进行元素分析(对单个颗粒进行本体分析和计算机控制分析),然后进行多变量分析,以将元素彼此紧密关联地聚类。使用这种方法,最多只能建议关联。显然,除了元素浓度​​分布图外,分子光谱的应用将提供有关颗粒性质以及其命运的详尽信息。本文概述了在我们实验室中进行的研究,并介绍了优化实验参数的方法,以结合使用扫描电子显微镜,能量色散X射线检测(SEM / EDX)或电子探针X射线显微分析(EPXMA)并同时进行显微-拉曼光谱法(MRS)研究单个环境粒子。揭示了与两种独立技术相关的挑战,并因此讨论了由接口方法带来的挑战。初步结果。给出了与MRS接触到超细异质环境颗粒的SEM / EDX的初步研究结果。

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