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Attenuated Total Reflectance FT-IR Imaging and Quantitative Energy Dispersive-Electron Probe X-ray Microanalysis Techniques for Single Particle Analysis of Atmospheric Aerosol Particles

机译:大气气溶胶粒子单粒子分析的衰减全反射FT-IR成像和定量能量色散电子探针X射线微分析技术

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摘要

This work demonstrates the practical applicability of the combined use of attenuated total reflectance (ATR) FT-IR imaging and low-Z particle electron probe X-ray microanalysis (EPMA) techniques for the characterization of individual aerosol particles. These two single particle analytical techniques provide complementary information on the physicochemical characteristics of the same individual particles, that is, the low-Z particle EPMA for the information on the morphology and elemental concentration and the ATR-FT-IR imaging on the functional group, molecular species, and crystal structure. It was confirmed that the ATR-FT-IR imaging technique can provide sufficient FT-IR absorption signals to perform molecular speciation of individual particles of micrometer size when applied to artificially generated aerosol particles such as ascorbic acid and NaNO_(3) aerosols. An exemplar indoor atmospheric aerosol sample was investigated to demonstrate the practical feasibility of the combined application of ATR-FT-IR imaging and low-Z particle EPMA techniques for the characterization of individual airborne particles.
机译:这项工作证明了衰减全反射率(ATR)FT-IR成像和低Z粒子电子探针X射线微分析(EPMA)技术结合用于表征单个气溶胶粒子的实际适用性。这两种单粒子分析技术可提供有关同一单个粒子的理化特性的补充信息,即低Z粒子EPMA可提供有关形态和元素浓度以及官能团上ATR-FT-IR成像的信息,分子种类和晶体结构。已确认,当将ATR-FT-IR成像技术应用于人工产生的气溶胶颗粒(如抗坏血酸和NaNO_(3)气溶胶)时,可以提供足够的FT-IR吸收信号,以执行对微米大小的单个颗粒的分子形成。对一个示例性室内大气气溶胶样品进行了研究,以证明结合使用ATR-FT-IR成像和低Z粒子EPMA技术表征单个机载粒子的实际可行性。

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