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Combined Use of Optical and Electron Microscopic Techniques for the Measurement of Hygroscopic Property, Chemical Composition, and Morphology of Individual Aerosol Particles

机译:光学和电子显微镜技术的结合使用,用于测量单个气溶胶颗粒的吸湿性,化学成分和形态

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In this work, an analytical method for the characterization of the hygroscopic property, chemical composition, and morphology of individual aerosol particles is introduced. The method, which is based on the combined use of optical and electron microscopic techniques, is simple and easy to apply. An optical microscopic technique was used to perform the visual observation of the phase transformation and hygroscopic growth of aerosol particles on a single particle level. A quantitative energy-dispersive electron probe X-ray microanalysis, named low-Z particle EPMA, was used to perform a quantitative chemical speciation of the same individual particles after the measurement of the hygroscopic property. To validate the analytical methodology, the hygroscopic properties of artificially generated NaCl, KCl, (NH_(4))_(2)SO_(4), and Na_(2)SO_(4) aerosol particles of micrometer size were investigated. The practical applicability of the analytical method for studying the hygroscopic property, chemical composition, and morphology of ambient aerosol particles is demonstrated.
机译:在这项工作中,介绍了一种用于表征单个气溶胶颗粒的吸湿性,化学成分和形态的分析方法。该方法基于光学和电子显微镜技术的结合使用,简便易行。光学显微镜技术用于在单个颗粒水平上目视观察气溶胶颗粒的相变和吸湿性生长。定量吸能电子探针X射线显微分析(称为低Z粒子EPMA)用于在测量吸湿性后对同一单个粒子进行定量化学形态分析。为了验证该分析方法的有效性,研究了人工生成的NaCl,KCl,(NH_(4))_(2)SO_(4)和Na_(2)SO_(4)微米尺寸气溶胶颗粒的吸湿性能。证明了该分析方法用于研究环境气溶胶颗粒的吸湿性,化学组成和形态的实用性。

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