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The Influence of Maltodextrin on the Thermal Transitions and State Diagrams of Fruit Juice Model Systems.

Authors :
García-Coronado, Pedro
Flores-Ramírez, Alma
Grajales-Lagunes, Alicia
Godínez-Hernández, Cesar
Abud-Archila, Miguel
González-García, Raúl
Ruiz-Cabrera, Miguel A.
Source :
Polymers (20734360). Sep2020, Vol. 12 Issue 9, p2077. 1p.
Publication Year :
2020

Abstract

The state diagram, which is defined as a stability map of different states and phases of a food as a function of the solid content and temperature, is regarded as fundamental approach in the design and optimization of processes or storage procedures of food in the low-, intermediate-, and high-moisture domains. Therefore, in this study, the effects of maltodextrin addition on the freezing points ( T m ′ , T m ) and glass transition temperatures ( T g ′ , T g ) required for the construction of state diagrams of fruit juice model systems by using differential scanning calorimetry methods was investigated. A D-optimal experimental design was used to prepare a total of 25 anhydrous model food systems at various dry mass fractions of fructose, glucose, sucrose, pectin, citric acid, and maltodextrin, in which this last component varied between 0 and 0.8. It was found that maltodextrin mass fractions higher than 0.4 are required to induce significant increases of T g ′ , T m ′ , T g , and T m curves. From this perspective, maltodextrin is a good alternative as a cryoprotectant and as a carrier agent in the food industry. Furthermore, solute-composition-based mathematical models were developed to evaluate the influence of the chemical composition on the thermal transitions and to predict the state diagrams of fruit juices at different maltodextrin mass fractions. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20734360
Volume :
12
Issue :
9
Database :
Academic Search Index
Journal :
Polymers (20734360)
Publication Type :
Academic Journal
Accession number :
146174662
Full Text :
https://doi.org/10.3390/polym12092077