Low-temperature dielectric measurements of confined water in porous granites

Author:

Silva Hugo Gonçalves1,Tlemçani Mouhaydine2,Monteiro Jorge Humberto3,Graça Manuel Pedro3,Moita Patricia4,Pinho António5,Bezzeghoud Mourad2,Mendiratta Sushil Kumar3,Rosa Rui Namorado2

Affiliation:

1. University of Évora, Geophysics Centre of Évora, Évora, Portugal..

2. University of Évora, Geophysics Centre of Évora and Physics Department, Évora, Portugal..

3. University of Aveiro, I3N-Physics Department, Aveiro, Portugal..

4. University of Évora, Geophysics Centre of Évora and Geosciences Department, Évora, Portugal..

5. University of Évora, Geosciences Department, Évora, Portugal, and University of Aveiro, GeoBioTec Research Centre, Aveiro, Portugal..

Abstract

The dielectric behavior of rocks affected by the known phase transition of supercooled water is the main problem we analyzed. Three different granitic rocks were used to perform dielectric measurements in the frequency range from 100 Hz to 1 MHz and temperatures 100–350 K. Thin cylindrical samples were prepared, and circular electrodes were established using silver conductive paint. A clear change in the dielectric measurements appears at [Formula: see text] for one of the samples. This coincides with the known phase transition of supercooled water. Tightly bounded water confined in the pores of the rock do not crystallize at 273 K, but form a metastable liquid down to 200–220 K maintaining water polarization. Below this temperature, water molecules solidify and polarizability decreases. The rock presenting the most sizable change has a very low specific surface area of [Formula: see text], has connected porosity of [Formula: see text], and has the smallest degree of alteration. In addition, geochemical analyzes reveal a low percentage of hydration water in its structure confirming the role of pore water in this change. A comparison between water-saturated, oven-dried, and vacuum-dried samples was done. Finally, a logarithmic dependency of the critical temperature for the supercooled water phase transition with the measuring frequency was found.

Publisher

Society of Exploration Geophysicists

Subject

Geochemistry and Petrology,Geophysics

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