Artículo
State diagrams for improving processing and storage of foods, biological materials, and pharmaceuticals (IUPAC Technical Report)
Buera, Maria del Pilar
; Roos, Yrjö; Levine, Harry; Slade, Louise; Corti, Horacio Roberto
; Reid, David S.; Auffret, Tony; Angell, C. Austen
Fecha de publicación:
03/2011
Editorial:
Int Union Pure Applied Chemistry
Revista:
Pure and Applied Chemistry
ISSN:
0033-4545
e-ISSN:
1365-3075
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
Supplemented temperature/composition phase diagrams include the non-equilibrium glass-transition temperature (Tg) curve and equilibrium ice-melting and solubility curves. The inclusion of the non-equilibrium curve allows one to establish relationships with the time coordinate and, thus, with the dynamic behavior of systems, provided that the thermal history of such systems is known. The objective of this report is to contribute to the potential applications of supplemented state diagrams for aqueous glass-formers, in order to describe the influence of water content, nature of vitrifying agents, and temperature on the physico-chemical properties of foods and biological and pharmaceutical products. These data are helpful to develop formulations, processing strategies, or storage procedures in order to optimize the stability of food ingredients and pharmaceutical formulations. Reported experimental data on phase and state transitions for several food and pharmaceutical systems were analyzed. Some methodological aspects and the effect of phase and state transitions on the main potential chemical reactions that can alter those systems during processing and/or storage are discussed.
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Articulos(SEDE CENTRAL)
Articulos de SEDE CENTRAL
Articulos de SEDE CENTRAL
Citación
Buera, Maria del Pilar; Roos, Yrjö; Levine, Harry; Slade, Louise; Corti, Horacio Roberto; et al.; State diagrams for improving processing and storage of foods, biological materials, and pharmaceuticals (IUPAC Technical Report); Int Union Pure Applied Chemistry; Pure and Applied Chemistry; 83; 8; 3-2011; 1567-1617
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