4.5 Article

Melting of the Precipitated Ice IV in LiCl Aqueous Solution and Polyamorphism of Water

Journal

JOURNAL OF PHYSICAL CHEMISTRY B
Volume 115, Issue 48, Pages 14064-14067

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/jp203669p

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Funding

  1. Natural Sciences and Engineering Research Council of Canada
  2. NIH [1 R01 EB006398-01A1]

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Melting of the precipitated ice IV in supercooled LiCl-H2O solution was studied in the range of 0-0.6 MPa and 160-270 K. Emulsified solution was used to detect this metastable transition. Ice IV was precipitated from the aqueous solution of 2.0 mol % LiCl (or 4.8 mol % LiCl) in each emulsion particle at low-temperature and high-pressure conditions, and the emulsion was decompressed at different temperatures. The melting of ice IV was detected from the temperature change of the emulsified sample during the decompression. There was an apparently sudden change in the slope of the ice IV melting curve (liquidus) in the pressure-temperature diagram. At the high-pressure and high-temperature side of the change, the solute-induced freezing point depression was observed. At the low-pressure and low-temperature side, ice IV transformed into ice Ih on the decompression, and the transition was almost unrelated to the concentration of LiCl. These experimental results were roughly explained by the presumed existence of two kinds of liquid water (low-density liquid water and high-density liquid water), or polyamorphism in water, and by the simple assumption that LiCl dissolved maily in high-density liquid water.

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