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首页> 外文期刊>Aerosol Science and Technology: The Journal of the American Association for Aerosol Research >Phase Transition and Hygroscopic Properties of internally Mixed Ammonium Sulfate and Adipic Acid (AS-AA) Particles by Optical Microscopic Imaging and Raman Spectroscopy
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Phase Transition and Hygroscopic Properties of internally Mixed Ammonium Sulfate and Adipic Acid (AS-AA) Particles by Optical Microscopic Imaging and Raman Spectroscopy

机译:内部混合的硫酸铵和己二酸(AS-AA)颗粒的相变和吸湿性能的光学显微成像和拉曼光谱

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摘要

We studied the phase transition and hygroscopicity of particles of a mixture of two atmospherically relevant species, ammonium sulfate and adipic acid. We conducted extensive investigations on ammonium sulfate-adipic acid (AS-AA) particles deposited on a hydrophobic substrate with the weight percentage (wt%) of A A ranging from 3 to 90%. Crystallization and deliquescence were observed through an optical microscope, which enabled multiple particles to be examined simultaneously. At an initial relative humidity (RH) of 94%, which was the highest RH setting, A A solids were formed from the deposited solution droplets, leading to the presence of mixed-phase particles prior to the complete crystallization recorded between 31% and 42% RH of all mixtures. The complete crystallization RH values were close to that of pure AS, indicating that the AA solids did not promote effective heterogeneous nucleation of AS. When the RH was increased, partial deliquescence in all mixtures was observed at 80% RH, which was attributed to the dissolution of the AS fractions. Full deliquescence was only observed in 3 wt% AA particles at 91% RH. We also used Micro-Raman Spectroscopy to determine the hygroscopicity of mixtures with up to 50 wt% A A. The hygroscopic behavior of the AS fraction in the mixed particles was found to resemble that of pure AS particles. However, there was observable water uptake in the solid particles at about 70% RH in mixtures with up to 70 wt% AA. This early water uptake was more pronounced in mixtures with lower weight percentages of AA (AA less than 30 wt%).
机译:我们研究了两种与大气相关的物质硫酸铵和己二酸的混合物的颗粒的相变和吸湿性。我们对沉积在疏水性基材上的硫酸铵-己二酸(AS-AA)颗粒进行了广泛的研究,其中A A的重量百分比(wt%)为3至90%。通过光学显微镜观察结晶和潮解,这使得能够同时检查多个颗粒。在94%的初始相对湿度(RH)(这是最高的RH设置)下,由沉积的溶液液滴形成了AA固体,导致在完全结晶之前记录到31%至42%的混合相颗粒的存在。所有混合物的相对湿度。完整的结晶RH值接近纯AS的结晶RH值,表明AA固体不能促进AS的有效异质成核。当RH增加时,在80%RH下观察到所有混合物中的部分潮解,这归因于AS级分的溶解。完全潮解仅在91%RH的3 wt%AA颗粒中观察到。我们还使用显微拉曼光谱法测定了不超过50 wt%AA的混合物的吸湿性。发现混合颗粒中AS馏分的吸湿性与纯AS颗粒相似。然而,在具有约70重量%AA的混合物中,在约70%RH下,在固体颗粒中有可观察到的水吸收。在具有较低重量百分比的AA(AA低于30 wt%)的混合物中,这种较早的吸水现象更为明显。

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