Journal of Dairy Science
Volume 89, Issue 7 , Pages 2365-2373, July 2006

Modeling of Lactose Crystallization and Color Changes in Model Infant Foods

Laboratoire de Science et Génie Alimentaires, Ecole Nationale Supérieure d’Agronomie et des Industries Alimentaires, INPL, Vandoeuvre-lès-Nancy cedex, France

Received 5 December 2005; accepted 5 February 2006.

Abstract 

Lactose crystallization and color changes in formulas containing β-lactoglobulin and gelatinized starch were investigated. Model infant formulas were prepared by colyophilization of 3 components (lactose, β-lactoglobulin, and gelatinized starch). A mixture design was used to choose the percentage of each mixture component. These formulas were stored for 3 mo at different relative humidities (RH), ranging from approximately 0 to 94.6%, to study the lactose crystallization and color changes. Crystallization kinetics was studied by gravimetric methods, and lactose state (crystalline vs. amorphous) was verified before and after storage by differential scanning calorimetry. Before storage, lyophilized lactose was amorphous, but during storage it crystallized, depending on the RH. The lactose crystallization RH depended on the quantity of β-lactoglobulin and gelatinized starch, and by increasing these quantities, the crystallization RH increased. For some formulas, the crystallization RH was noted at 3 different RH during storage. The first was noted after 1 d of storage and the second and third were observed later on, showing that crystallization is a time-dependent phenomenon. Nonenzymatic browning was studied in model infant formulas by yellow color changes of samples at 11.3, 43.2, 54.5, and 75.4% RH. In this study, 7 mathematical models were proposed to predict the moisture sorption properties and color changes at different RH, and the models were validated by experimental results.

Key words: lactose crystallization, moisture sorption isotherm, color change

 

PII: S0022-0302(06)72309-8

doi:10.3168/jds.S0022-0302(06)72309-8

Journal of Dairy Science
Volume 89, Issue 7 , Pages 2365-2373, July 2006