The work is devoted to solving the actual problem of the dairy industry -complex processing of food raw materials, expanding the range of dairy and milk-containing products of high nutritional value due to enrichment of protein, pro-and prebiotics, rational use of production resources by reducing the the technological process duration. The aim of the research is to substantiate the composition of a new type of acidophilic-whey ice cream of high nutritional value due to enrichment with a complex of proteins, probiotic sourdough and pectin-containing vegetable paste. The main tasks of scientific work are: development of a scientifically based formulation for a new type of ice cream to expand the range of products that will improve the nutrition structure of the Ukraine`s population. The methods used to study the organoleptic and physico-chemical indicators of blends and ice cream are well known and presented in the article. The method of production of sour milk ice cream and the choice of dairy raw materials for obtaining a fermented base was theoretically substantiated, the functional and technological properties of protein concentrates and their compositions in ice cream formulations were studied, the rational content of protein in ice cream was established, also the expediency of using pectin-containing vegetable paste in acidophilic-whey ice cream was proved.
The work is devoted to the study of the functional and technological properties of oat β-glucan in low-fat milky ice cream (2% fat) in comparison with the stabilization system Cremodan® SI 320. β-glucan (0.5%) has a greater effect on the cryoscopic temperature of ice cream mixes than Cremodan® SI 320 in the same amount (decrease by 0.166 °C vs. 0.078 °C), which inhibits the freezing process of free water in ice cream during technological processing in the temperature range from −5 to −10 °C. Microscopy of ice cream samples after freezing and hardening shows the ability of β-glucan to form a greater number of energy bonds due to specific interaction with milk proteins. Analysis of the microstructure of ice cream samples during 28 d of storage confirms the ability of oat β-glucan to suppress the growth of ice crystals more effectively than Cremodan® SI 320. Oat β-glucan gives ice cream a rich creamy taste, increases overrun and resistance to melting, which brings this type of frozen dessert closer to a full-fat analogue (10% fat).
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