首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Heterogeneous freezing of ice on atmospheric aerosols containing ash, soot, and soil
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Heterogeneous freezing of ice on atmospheric aerosols containing ash, soot, and soil

机译:冰在含灰分,煤烟和土壤的大气气溶胶上的非均质冻结

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摘要

Nucleation of ice crystals in the atmosphere often occurs through heterogeneous freezing processes in which an atmospheric aerosol acts as the ice nuclei (N). Depending on the ambient conditions and composition of the available N, heterogeneous nucleation may occur through one of several freezing mechanisms, including contact and immersion. In this study, an optical microscope apparatus equipped with a cooling stage and a digital camera was used to observe the freezing events of individual droplet-IN samples. For each experiment, a particular IN was either placed in contact with the surface or immersed in the bulk of an ultra pure water droplet. Using volcanic ash as the IN, we observed that inside-out contact freezing occurred at warmer temperatures than immersion freezing. We also conducted contact freezing experiments using three representative aerosol types as the potential IN. The most effective contact freezing IN was Pahokee Peat soil with an average freezing temperature of —10.5C, followed by volcanic ash (-11.2C), and finally soot (-25.6C). In addition, we have used classical nucleation theory to derive the heterogeneous nucleation rates for the IN compositions explored.
机译:大气中冰晶的成核通常是通过异质冻结过程发生的,在异质冻结过程中,大气气溶胶充当了冰核(N)。取决于环境条件和可利用的N的成分,异质成核可能通过几种冻结机制之一发生,包括接触和浸没。在这项研究中,使用配备有冷却台和数码相机的光学显微镜设备观察单个小滴样品的冻结事件。对于每个实验,将特定的IN放置于与表面接触或浸入大量的超纯水滴中。使用火山灰作为IN,我们观察到内外接触冻结发生在比浸入冻结更高的温度下。我们还使用三种代表性气溶胶类型作为潜在IN进行了接触冻结实验。最有效的接触冻结IN是帕霍基泥炭土壤,平均冻结温度为-10.5C,其次是火山灰(-11.2C),最后是烟灰(-25.6C)。此外,我们使用经典的成核理论来推导所研究的IN成分的异质成核速率。

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