Artículo
Volumetric properties of carbon dioxide + acrylic acid binary in the context of supercritical precipitation polymerization
Menossi, Matias
; Milanesio, Juan Manuel
; Camy, Séverine; Harrisson, Simon; Strumia, Miriam Cristina
; Destarac, Mathias
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Fecha de publicación:
06/2020
Editorial:
Elsevier Science
Revista:
Journal of Supercritical Fluids
ISSN:
0896-8446
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
Acrylic acid can be polymerized by precipitation in different solvents. Carbon dioxide is an interesting solvent given its tunable density and solvent power depending on the pressure and temperature. These physicochemical characteristics make it possible to solubilize some polar compounds in CO 2 depending on temperature and pressure. In this work, we report pressure vs volume pseudo-continuous curves at constant temperature for the CO 2 + AA binary mixture. They were determined in a fully computerized variable-volume high-pressure view cell capable of monitoring the position of the piston. The experimental data is simultaneously isoplethic and isothermal and it covers a wide range of pressures (up to 20 MPa). Using this raw experimental data, other properties were determined such as liquid-vapor phase boundaries, density and excess volumes. The temperature range was 313.15–363.15 K and the mole fraction of AA in the mixture was increased from 0.044 to 0.594.
Palabras clave:
ACRYLIC ACID
,
CARBON DIOXIDE
,
DENSITY
,
HIGH-PRESSURE
,
LIQUID-VAPOR EQUILIBRIUM
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Identificadores
Colecciones
Articulos(IPQA)
Articulos deINSTITUTO DE INVESTIGACION Y DESARROLLO EN INGENIERIA DE PROCESOS Y QUIMICA APLICADA
Articulos deINSTITUTO DE INVESTIGACION Y DESARROLLO EN INGENIERIA DE PROCESOS Y QUIMICA APLICADA
Citación
Menossi, Matias; Milanesio, Juan Manuel; Camy, Séverine; Harrisson, Simon; Strumia, Miriam Cristina; et al.; Volumetric properties of carbon dioxide + acrylic acid binary in the context of supercritical precipitation polymerization; Elsevier Science; Journal of Supercritical Fluids; 160; 6-2020; 1-11; 104787
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