Artículo
Thermodynamics and Dynamics of Supercritical Water Pseudo-Boiling
Maxim, Florentina; Karalis, Konstantinos; Boillat, Pierre; Banuti, Daniel T.; Marquez Damian, Jose Ignacio
; Niceno, Bojan; Ludwig, Christian
Fecha de publicación:
02/2021
Editorial:
John Wiley & Sons Inc.
Revista:
Advanced Science
ISSN:
2198-3844
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
Supercritical fluid pseudo-boiling (PB), recently brought to the attention of the scientific community, is the phenomenon occurring when fluid changes its structure from liquid-like (LL) to gas-like (GL) states across the Widom line. This work provides the first quantitative analysis on the thermodynamics and the dynamics of water's PB, since the understanding of this phase transition is mandatory for the successful implementation of technologies using supercritical water (scH2O) for environmental, energy, and nanomaterial applications. The study combines computational techniques with in situ neutron imaging measurements. The results demonstrate that, during isobaric heating close to the critical point, while water density drops by a factor of three in the PB transitional region, the system needs >16 times less energy to increase its temperature by 1 K than to change its structure from LL to GL phase. Above the PB-Widom line, the structure of LL water consists mainly of tetramers and trimers, while below the line mostly dimers and monomers form in the GL phase. At atomic level, the PB dynamics are similar to those of the subcritical water vaporization. This fundamental knowledge has great impact on water science, as it helps to establish the structure–properties relationship of scH2O.
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Articulos(CCT - PATAGONIA NORTE)
Articulos de CTRO.CIENTIFICO TECNOL.CONICET - PATAGONIA NORTE
Articulos de CTRO.CIENTIFICO TECNOL.CONICET - PATAGONIA NORTE
Citación
Maxim, Florentina; Karalis, Konstantinos; Boillat, Pierre; Banuti, Daniel T.; Marquez Damian, Jose Ignacio; et al.; Thermodynamics and Dynamics of Supercritical Water Pseudo-Boiling; John Wiley & Sons Inc.; Advanced Science; 8; 3; 2-2021; 1-10
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