Effects of reverse CO2 acidification cycles, calcium supplementation, pH adjustment and chilled storage on physico-chemical and rennet coagulation properties of reconstituted low- and medium-heat skim milk powders

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Abstract

The reversibility extent of one and two reverse CO2 acidification cycles on the physico-chemical and rennet coagulation properties of milks reconstituted from low- (LH) or medium- (MH) heat skim powder, enriched or not with calcium and pH adjusted or not was investigated. The ionized calcium concentration, buffering properties and average casein micelle size of untreated and CO2-treated milks were evaluated before and after a chilled storage for 2 days. The ionized calcium concentration and buffering properties have been modified by the CO2-treatment, particularly after a second CO2-cycle. These modifications were highly dependent on the initial milk properties and chilled storage. Inversely, the average casein micelle size was not significantly changed. In addition, the rennet-clotting behaviour checked by near infrared spectroscopy (NIR-S) and rheology (SAOR) indicated the main factors responsible for changes in the casein micelles environment and dynamic casein micellar calcium phosphate reorganization, especially after two CO2-cycles. A single CO2-cycle induced a better rennetability for non Ca-enriched milk reconstituted from MH-powder. A second CO2-cycle was particularly efficient to improve Ca-enriched pH-adjusted milks. © 2008 Elsevier Ltd. All rights reserved.

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Klandar, A. H., Chevalier-Lucia, D., & Lagaude, A. (2009). Effects of reverse CO2 acidification cycles, calcium supplementation, pH adjustment and chilled storage on physico-chemical and rennet coagulation properties of reconstituted low- and medium-heat skim milk powders. Food Hydrocolloids, 23(3), 806–815. https://doi.org/10.1016/j.foodhyd.2008.04.010

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