Abstract
The past decades have seen major advances in the understanding of the role of phase and state transitions of food carbohydrates on the behavior during processing and on product characteristics. Specifically, the awareness of the importance of the glass transition temperature and the plasticization by water and its study for a variety of food system is having major impact on the formulation and processing of foods, and in defining shelf-life conditions. This has led to the use of phase and state diagrams in the analysis and prediction of the behavior of food systems during processing and storage. This review first summarizes the current understanding of the food carbohydrate phase behavior and rheology, with emphasis on the concentrated states close to the glass transition and in the glassy state. Several pertinent topics, including the modeling of the rheological properties close to the glass transition, the strongly non-linear diffusion of water in the rubbery and glassy states, the aging and antiplasticization of glassy carbohydrate matrices, and consequences of amorphous-amorphous phase separation for the behavior of carbohydrate blends in concentrated states are discussed. Applications in food processing and product development are discussed, including the spray drying and freeze drying, powder agglomeration of food powders, powder caking, encapsulation, baked goods, crystallization and extrusion.
| Original language | English (US) |
|---|---|
| Title of host publication | Advances in Food and Nutrition Research |
| Editors | Fidel Toldrá |
| Publisher | Academic Press Inc. |
| Pages | 353-414 |
| Number of pages | 62 |
| ISBN (Print) | 9780443316647 |
| DOIs | |
| State | Published - Jan 2025 |
| Externally published | Yes |
Publication series
| Name | Advances in Food and Nutrition Research |
|---|---|
| Volume | 114 |
| ISSN (Print) | 1043-4526 |
Bibliographical note
Publisher Copyright:© 2025
Keywords
- Antiplasticization
- Crystallization
- Dynamics
- Flory-Huggins theory
- Glass transition
- Plasticization
- Powders
- Relaxation
- State diagram
- Viscosity
- Water activity
PubMed: MeSH publication types
- Journal Article
- Review
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