4.4 Article

Characterization of sodium chloride crystals grown in microgravity

Journal

JOURNAL OF CRYSTAL GROWTH
Volume 324, Issue 1, Pages 207-211

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jcrysgro.2011.04.001

Keywords

Crystal morphology; Crystal structure; Hopper crystals; Skeletal crystals; Microgravity conditions; Salt (sodium chloride)

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NaCl crystals grown by the evaporation of an aqueous salt solution in microgravity on the International Space Station (ISS) were characterized and compared to salt crystals grown on earth. NaCl crystallized as thin wafers in a supersaturated film of 200-700 mu m thickness and 50 mm diameter, or as hopper cubes in 10 mm diameter supersaturated spheres. Neutron diffraction shows no change in crystal structure and in cell parameters compared to earth-grown crystals. However, the morphology can be different, frequently showing circular, disk-like shapes of single crystals with < 1 1 1 > perpendicular to the disks, an unusual morphology for salt crystals. In contrast to the growth on earth the lateral faces of the microgravity tabular hopper crystals are symmetrical because they are free floating during the crystallization process. Hopper cubes were produced without the need to suspend the growing crystals by an ongoing stirring. Fleur de Sel is shown as an example of two-dimensional growth of salt on earth and compared to the space grown crystals. It is shown that in microgravity conditions brine fluid inclusions form within the salt crystals. (C) 2011 Elsevier B.V. All rights reserved.

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