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相分离及相关形貌在碱性长石卓越冰核形成能力中的作用。

The role of phase separation and related topography in the exceptional ice-nucleating ability of alkali feldspars.

作者信息

Whale Thomas F, Holden Mark A, Kulak Alexander N, Kim Yi-Yeoun, Meldrum Fiona C, Christenson Hugo K, Murray Benjamin J

机构信息

School of Earth and Environment, University of Leeds, Leeds, LS2 9JT, UK.

出版信息

Phys Chem Chem Phys. 2017 Nov 29;19(46):31186-31193. doi: 10.1039/c7cp04898j.

Abstract

Our understanding of crystal nucleation is a limiting factor in many fields, not least in the atmospheric sciences. It was recently found that feldspar, a component of airborne desert dust, plays a dominant role in triggering ice formation in clouds, but the origin of this effect was unclear. By investigating the structure/property relationships of a wide range of feldspars, we demonstrate that alkali feldspars with certain microtextures, related to phase separation into Na and K-rich regions, show exceptional ice-nucleating abilities in supercooled water. We found no correlation between ice-nucleating efficiency and the crystal structures or the chemical compositions of these active feldspars, which suggests that specific topographical features associated with these microtextures are key in the activity of these feldspars. That topography likely acts to promote ice nucleation, improves our understanding of ice formation in clouds, and may also enable the design and manufacture of bespoke nucleating materials for uses such as cloud seeding and cryopreservation.

摘要

我们对晶体成核的理解是许多领域的一个限制因素,尤其是在大气科学领域。最近发现,长石作为空气中沙漠尘埃的一种成分,在触发云层中的冰形成过程中起主导作用,但这种效应的起源尚不清楚。通过研究各种长石的结构/性质关系,我们证明了具有特定微观结构(与相分离成富含钠和钾的区域有关)的碱长石在过冷水中表现出卓越的冰核形成能力。我们发现冰核形成效率与这些活性长石的晶体结构或化学成分之间没有相关性,这表明与这些微观结构相关的特定地形特征是这些长石活性的关键。这种地形可能起到促进冰核形成的作用,增进了我们对云层中冰形成的理解,还可能有助于设计和制造用于人工降雨和低温保存等用途的定制成核材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3144/11970471/e15e7750e09d/c7cp04898j-f2.jpg

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