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Water and Molecular Weight Effects on Glass Transitions in Amorphous Carbohydrates and Carbohydrate Solutions

Journal of Food Science · 1991 · Vol. 56(6) · pp. 1676–1681
Yrjö H. RoosMarcus Karel

Abstract

ABSTRACT The effects of water, freeze‐concentration and effective molecular weight (M e ) on glass transition (T g ) of maltose and maltodextrins were studied, and methods to predict T g were used to establish state diagrams. T g of maximally freeze‐concentrated solutes (T′ g ) and onset of ice melting (T′ m ) increased with M e , and for high molecular weight polysaccharides T′ g and T′ m were predicted to have the same temperature value. Ice formation at T′ g <T < T′ m was time dependent. Unfrozen water in maximally freeze‐concentrated matrices was about 20% independently of M e . The state diagrams can be used to evaluate physical state of frozen and dehydrated foods.

Microencapsulation and Drying ProcessesFreezing and Crystallization ProcessesFood Drying and ModelingAmorphous solidMaltoseChemistryGlass transitionCarbohydratePolysaccharideMelting temperatureChromatographyFood scienceCrystallography
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References
Calorimetric Study of the Glassy State. IV. Heat Capacities of Glassy Water and Cubic Ice
Bulletin of the Chemical Society of Japan · 1968 · 426 citations
Handbook of Chemistry and Physics.
Annals of Internal Medicine · 1973 · 2,573 citations
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