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Depositional ice nucleation on solid ammonium sulfate and glutaric acid particles

机译:固体硫酸铵和戊二酸颗粒上的沉积冰成核

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Heterogeneous ice nucleation on solid ammonium sulfate and glutaric acid particles was studied using optical microscopy and Raman spectroscopy. Optical microscopy was used to detect selective nucleation events as water vapor was slowly introduced into an environmental sample cell. Particles that nucleated ice were dried via sublimation and examined in detail using Raman spectroscopy. Depositional ice nucleation is highly selective and occurred preferentially on just a few ammonium sulfate and glutaric acid particles in each sample. For freezing temperatures between 214 K and 235 K an average ice saturation ratio of S = 1.100.07 for solid ammonium sulfate was observed. Over the same temperature range, S values observed for ice nucleation on glutaric acid particles increased from 1.2 at 235 K to 1.6 at 218 K. Experiments with externally mixed particles further show that ammonium sulfate is a more potent ice nucleus than glutaric acid. Our results suggest that heterogeneous nucleation on ammonium sulfate may be an important pathway for atmospheric ice nucleation and cirrus cloud formation when solid ammonium sulfate aerosol particles are available for ice formation. This pathway for ice formation may be particularly significant near the tropical tropopause region where sulfates are abundant and other species known to be good ice nuclei are depleted.
机译:使用光学显微镜和拉曼光谱研究固体硫酸铵和戊二酸颗粒上的异质冰核。光学显微镜用于检测选择性成核事件,因为将水蒸气缓慢引入环境样品细胞中。通过升华干燥核化冰的颗粒并使用拉曼光谱进行详细检查。沉积冰成核是高度选择性的,并且优选地在每个样品中仅硫酸铵和戊二酸颗粒发生。对于214k和235k之间的冷冻温度,观察到用于固体硫酸铵的S = 1.100.07的平均冰饱和度。在相同的温度范围内,在戊二酸颗粒上观察到冰核的S值在235k至1.6时从1.2增加到218k。外部混合颗粒的实验进一步表明硫酸铵比戊二酸更有效的冰核。我们的研究结果表明,当固体硫酸铵气溶胶颗粒可用于冰形成时,硫酸铵上的异质成核含量是大气冰成核和卷云形成的重要途径。这种冰形成的途径可能在热带对象流域附近特别重要,其中硫酸盐是丰富的,并且已知是良好的冰核的其他物种耗尽。

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