hydrohalite
Sign in to saveHydrohalite is a halide mineral that occurs in saturated halite brines at cold temperatures (below 0.1 °C) and is the most common form of hydrated sodium chloride. It was first described in 1847 from an occurrence in Dürrnberg, Austria.
In the Vinony graph
Within Vinony's link graph, hydrohalite is referenced by 10 other articles, and connects out to Austria, International Standard Book Number and Ceres.
It sits within the topics Chloride minerals, Dihydrate minerals and Minerals described in 1847.
Its subject is documented across 8 Wikipedia language editions.
Wikidata facts
- Subclass of
- halide class of minerals
- Image
- Microphotographs of aqueous fluid inclusions (cropped).png
Show 8 more facts
- Nickel-Strunz '10th ed', review of (9th ed/ 2009 update)
- 3.BA.05
- Nickel-Strunz 9th edition (updated 2009)
- 3.BA.05
- chemical formula
- NaCl·2H₂O
- type locality (geology)
- Bad Dürrnberg
- crystal system
- monoclinic crystal system
- IMA Mineral Symbol
- Hhl
- Commons category
- Hydrohalite
- Strunz 8th edition (series ID, updated)
- III/A.09
via Wikidata · CC0
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Encyclopedic overview
4 sectionsContents
- Physical properties
- Occurrence
- Ceres
- References
Hydrohalite is a halide mineral that occurs in saturated halite brines at cold temperatures (below 0.1 °C) and is the most common form of hydrated sodium chloride. It was first described in 1847 from an occurrence in Dürrnberg, Austria.
==Physical properties== Hydrohalite has a high nucleation energy, it decomposes at 0.1°C, giving a salty brine and solid halite. thumb|left|upright=1.15|Phase diagram of water–NaCl mixture The cryohydric point of hydrohalite is at , solutions will normally need to be supercooled for crystals to form. Above this temperature, liquid water saturated with salt can exist in equilibrium with hydrohalite. Unlike halite, hydrohalite has a strong positive temperature coefficient of solubility. Under pressure, hydrohalite is stable between 7,900 and 11,600 atmospheres pressure. The decomposition point increases at the rate of 0.007K per atmosphere (for 1–1000 atmospheres), reaching a maximum decomposition temperature is at 25.8°C around 9400 atmospheres. The decomposition temperature reduces again at higher pressures.
Excerpted from Wikipedia’s “hydrohalite” article, available under the CC BY-SA 4.0 licence.