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<em>Measurement report: Ice nucleation ability of perthite feldspar powder</em>
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Feldspars are among the most efficient mineral ice-nucleating particles (INPs) in the atmosphere, yettheir ice nucleation behavior varies widely across natural samples. Here, we investigate six feldspar powdersselected for their perthitic or anti-perthitic textures and spanning a broad range of K= Na compositions. All sampleswere characterized in terms of mineralogy, bulk and surface chemistry, and microstructure. Droplet-freezingassays revealed consistent onset temperatures between 2 and 4 °C in high-concentration suspensions, suggestingthe presence of similar highly active nucleation sites across all tested feldspar types. On the other hand,cumulative and differential freezing spectra showed pronounced differences in the density and distribution of icenucleation sites, which correlate with both feldspar composition and microtexture. Heterogeneous Underlying-Based (HUB) analysis identified distinct subpopulations of ice nucleation sites. Perthites exhibiting ordered microclinestructures showed a continuous increase in nucleation site density with decreasing temperature, whereassamples lacking dominant microcline features displayed plateaus in cumulative spectra over specific temperatureranges, indicating decreased ice nucleation ability of the subpopulation. These results demonstrate that exsolutiontextures and crystallographic structure play a central role in controlling feldspar ice-nucleation efficiency,with important implications for atmospheric INP parameterizations and cloud microphysics.
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CANET, Julia, et al. Measurement report: Ice nucleation ability of perthite feldspar powder. Atmospheric Chemistry and Physics. 2026. Vol. 26, num. 5635-5652. ISSN 1680-7316. [consulted: 3 of October of 2026]. Available at: https://hdl.handle.net/2445/231754