Abstract
The principle and feasibility of a new wedge-shaped ice thermal diffusion chamber are demonstrated and the method of estimating the supersaturation in the chamber is shown. Ice nucleation studies were carried out using the chamber and relatively large aerosol particles freely suspended in air. In the studies, the temperature and the supersaturation were independently controlled without substrate. All natural and artificial, organic and inorganic nuclei studied exhibited condensation-freezing as well as deposition modes of ice formation. Conditions for their occurrence and modes of their activation were identified. A forbidden zone for condensation-freezing nucleation above water saturation was found and its temperature dependency, and the extremely steep rise of nucleation rate when the supersaturation increased beyond it, were determined. A unique deposition nucleation behavior near but below water saturation was confirmed with freely suspended aerosol particles. In contrast with deposition and ... Abstract The principle and feasibility of a new wedge-shaped ice thermal diffusion chamber are demonstrated and the method of estimating the supersaturation in the chamber is shown. Ice nucleation studies were carried out using the chamber and relatively large aerosol particles freely suspended in air. In the studies, the temperature and the supersaturation were independently controlled without substrate. All natural and artificial, organic and inorganic nuclei studied exhibited condensation-freezing as well as deposition modes of ice formation. Conditions for their occurrence and modes of their activation were identified. A forbidden zone for condensation-freezing nucleation above water saturation was found and its temperature dependency, and the extremely steep rise of nucleation rate when the supersaturation increased beyond it, were determined. A unique deposition nucleation behavior near but below water saturation was confirmed with freely suspended aerosol particles. In contrast with deposition and ...

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