首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Attenuated Total Reflection Fourier Transform Infrared Spectroscopy to Investigate Water Uptake and Phase Transitions in Atmospherically Relevant Particles
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Attenuated Total Reflection Fourier Transform Infrared Spectroscopy to Investigate Water Uptake and Phase Transitions in Atmospherically Relevant Particles

机译:衰减全反射傅立叶变换红外光谱法研究大气相关颗粒的吸水率和相变

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摘要

In this study, attenuated total reflection Fourier transform infrared (ATR-FT-IR) spectroscopy is used to investigate water uptake and phase transitions for atmospherically relevant particles. Changes in the ATR-FT-IR spectra of NaCl, NH_(4)NO_(3), (NH_(4))_(2)SO_(4), Ca(NO_(3))_(2), and SiO_(2) as a function of relative humidity (RH) are presented and discussed. For these various particles, water can (1) become adsorbed on the particle surface; and/or (2) become absorbed in the particle structure to form a hydrate sa and/or (3) become absorbed by the particle to form a liquid solution. Spectral features and analyses that distinguish these various processes are discussed. For the salts that do undergo a solid to liquid phase transition (deliquescence), excellent agreement is found between the measurements made here with ATR-FT-IR spectroscopy, a relatively simple, inexpensive, and readily available analytical tool, compared to more expensive, elaborate aerosol flow reactor systems using tandem differential mobility analyzers. In addition, for particles that adsorb water, we show here the utility of coupling ATR-FT-IR measurements with simultaneous quartz crystal microbalance (QCM) measurements. This coupling allows for the quantification of the amount of water associated with the particle as a function of relative humidity (f(RH)) along with the spectroscopic data.
机译:在这项研究中,使用衰减全反射傅立叶变换红外光谱(ATR-FT-IR)来研究大气相关颗粒的吸水率和相变。 NaCl,NH_(4)NO_(3),(NH_(4))_(2)SO_(4),Ca(NO_(3))_(2)和SiO_的ATR-FT-IR光谱的变化(2)作为相对湿度(RH)的函数进行了介绍和讨论。对于这些各种颗粒,水罐(1)吸附在颗粒表面上;和/或(2)被颗粒结构吸收而形成水合物盐;和/或(3)被颗粒吸收而形成液体溶液。讨论了区分这些不同过程的光谱特征和分析。对于确实经历了固相到液相转变(潮解)的盐,在这里使用ATR-FT-IR光谱仪进行的测量之间发现了极好的一致性,ATR-FT-IR光谱仪是一种相对简单,廉价且易于获得的分析工具,而价格较昂贵,使用串联差动分析仪的复杂气溶胶流反应器系统。此外,对于吸附水的颗粒,我们在这里展示了将ATR-FT-IR测量与同时进行的石英晶体微天平(QCM)测量结合起来的实用性。这种耦合允许量化与颗粒有关的水量,以及相对光谱数据与相对湿度(f(RH))的关系。

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