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Automated Chemical Analysis of Internally Mixed Aerosol Particles Using X-ray Spectromicroscopy at the Carbon K-Edge

机译:在碳K边缘使用X射线光谱显微镜对内部混合的气溶胶颗粒进行自动化学分析

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摘要

We have developed an automated data analysis method for atmospheric particles using scanning transmission X-ray microscopy coupled with near edge X-ray fine structure spectroscopy (STXM/NEXAFS). This method is applied to complex internally mixed submicrometer particles containing organic and inorganic material. Several algorithms were developed to exploit NEXAFS spectral features in the energy range from 278 to 320 eV for quantitative mapping of the spatial distribution of elemental carbon, organic carbon, potassium, and noncarbonaceous elements in particles of mixed composition. This energy range encompasses the carbon K-edge and potassium L2 and L3 edges. STXM/NEXAFS maps of different chemical components were complemented with a subsequent analysis using elemental maps obtained by scanning electron microscopy coupled with energy dispersive X-ray analysis (SEM/EDX). We demonstrate the application of the automated mapping algorithms for data analysis and the statistical classification of particles.
机译:我们已经开发了一种自动数据分析方法,该方法使用扫描透射X射线显微镜和近边缘X射线精细结构光谱法(STXM / NEXAFS)进行大气颗粒物的自动分析。该方法适用于含有有机和无机材料的内部复杂混合的亚微米颗粒。开发了几种算法来利用NEXAFS光谱特征,其能量范围为278至320 eV,用于定量绘制混合成分颗粒中元素碳,有机碳,钾和非碳元素的空间分布。该能量范围包括碳K边缘和钾L2和L3边缘。使用通过扫描电子显微镜结合能量色散X射线分析(SEM / EDX)获得的元素图,通过随后的分析对不同化学成分的STXM / NEXAFS图进行补充。我们演示了自动映射算法在数据分析和粒子统计分类中的应用。

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