SUBSTANTIATION OF TECHNOLOGICAL PARAMETERS OF PRODUCTION AND CONSUMER PROPERTIES OF A NEW FORM OF SPECIALIZED BEVERAGE
Keywords:
functional instant jelly, parameters and technological modes, granulation, quality, nutrition valueAbstract
A material on substantiation and development of adjustable technological parameters of producing
a new form of specialized beverage – a jelly obtained using the local plant resources, is
presented. The plant resources included sea buckthorn berries, apples, berries of Chinese magnolia
vine, fruit and berry concentrated juices of apples, sea buckthorn berries and Chinese magnolia
vine berries, and roots of earth apple, stevia, oat meal, and potato flour. Marketing research on
consumer preferences regarding functional nutrition products is carried out. The necessity to extend
the assortment of specialized beverages with targeted functional properties is shown. Chemical
composition of fresh fruits-and-vegetables raw material is studied for the opportunity of its use
in producing products for healthy nutrition. In order to substantiate the adjustable technological
parameters, physical and chemical properties of functional instant jellies obtained by granulation
are determined. Tapped density of the beverage on the level of 650-875 kg/m3 is determined. It is
shown that with the increase of granules’ size, tapped density and mechanical strength are increasing
as well. A possible mechanism of such effect lies in the fact that in large agglomerates particles
of granulated material are arranged more closely to each other. The decrease in strength of
granules at the initial period of drying is explained by insignificant melting of fructose and its further
crystallization. The angle of natural repose and coefficients of internal and external friction
under consideration of increasing humidity are studied. It is proved that functional composition of
the granulated material is subject to the Normal Distribution Law. The results of the conducted research
served as a foundation for determining technological parameters and modes of production,
allowed for determining temperature range for beverages’ recovery. Standardized indicators of nutrition
value of the developed product which characterize its functional properties are determined.
References
Герасименко, Н.Ф. Здоровое питание и его роль в обеспечении качества жизни / Н.Ф. Герасименко, В.М. Позняковский, Н.Г. Челнакова // Технологии пищевой и перерабатывающей промышленности АПК – продукты
здорового питания. – 2016. – № 4 (12). – С. 52–57.
Майтаков, А.Л. Теоретические основы обеспечения качества функциональных элементов пищевых машин на основе формирования моделей технологических блоков: моно-
графия / А.Л. Майтаков. – Кемерово: Кузбассвузиздат, 2010. – 139 с.
Пат. 2608729 РФ. Способ получения инстант-продуктов на основе концентратов плодово-ягодных соков, содержащих различные функциональные добавки / А.М. Попов,
Тихонов В.В., Н.В. Тихонов, И.Н. Тихонова, Д.В. Доня, Е.С. Миллер. Заявитель и патентообладатель Кемеровский технолог. институт пищевой промышленности (университет), Приоритет 16 октября 2014 г., дата гос. рег. в госреестре изобретений РФ
01.2017.
Позняковский, В.М. Эволюция питания и формирования нутриома современного человека / В.М. Позняковский // Индустрия питания. – 2017. – № 3. – С. 5–12.
Резниченко, И.Ю. Экспертиза пищевых концентратов. Качество и безопасность / И.Ю. Резниченко, В.М. Позняковский, А.О. Камбаров, А.М. Попов, под общ. ред. В.М. Позняковского. – М.: ИНФРА-М, 2015. – 270 с.
Системное развитие техники пищевых технологий / С.Т. Антипов, В.А. Панфилов, О.А. Ураков, С.В. Шахов; под ред. В.А. Панфилова. – М.: Колос С, 2010. – 762 с.
Спиричев, В.Б. Обогащение пищевых продуктов витаминами и минеральными веществами. Наука и технология / В.Б.
Спиричев, Л.Н. Шатнюк, В.М. Позняковский; под общ. ред. В. Б. Спиричева. – 2-е изд., стер. – Новосибирск: Сиб. унив. изд-во, 2005. – 548 с.
Теоретические основы пищевых технологий: в 2 кн. / отв. ред. В.А. Панфилов. – М.: Колос С, 2009. – 1408 с.
Jabrikaroui, I. &Marzouk, B.. Characterization of bioactive compounds in Tunisian bitter orange (Citrus aurantium L.) peel and juice and determination of their antioxidant activities // Bio
Med Research International. – 2013. – P. 1–12. DOI: 10.1155/2013/345415.
Jakobek, L.; Šeruga, M.; Krivak, P. The influence of interactions among phenolic compounds on the antiradical activity of chokeberries (Aroniamelanocarpa) // Int. J. Food Sci. Nutr. – 2011. – V. 62. – P. 345–352.
Jurgo´nski, A.; Ju´skiewicz, J.; Zdu´nczyk, Z. Ingestion of Black Chokeberry Fruit Extract Leads to Intestinal and Systemic Changes
in a Rat Model of Prediabetes and Hyperlipidemia
// Plant. Foods Hum. Nutr. – 2008. – V. 63. – P. 176–182.
Keshani, S, Luqman, C. A., Nourouzi, M. M., Russly, A. R., Jamilah, B. Optimization of concentration process on pomelo fruit juice using
response surface methodology (RSM) // Int. Food Res. J. – 2010. – V. 17. – P. 733–742.
Kulling, S.E.; Rawel, H.M. Chokeberry (Aronia melanocarpa). A Review on the characteristic components and potential health effects // Planta Med. – 2008. – V. 74. – P. 1625–1634.
Maskan, M., Production of pomegranate (Punica granatum L.) juice concentrates by various heating methods: colour degradation and kinetics // J. Food Eng. – 2006. – V. 72. – P. 218-224.
Physicochemical properties of wpi coated liposomes serving as stable transporters in a real food matrix Frenzel M., Krolak E., Steffen-
Heins A., Wagner A.E. // LWT – Food Science and Technology. – 2015. – V. 63, № 1. – С. 527–534.
Simen T.J.M., Finotelli P.V., Moura M.R.L., de Oliveira D.R., Leitão S.G., Pierucci A.P.T.R., Abraçado L.G., Celano R., Piccinelli
A.L., Rastrelli L., Barboza F.F., Pereira M.A., de Souza Figueiredo F., Leitão G.G., Peçanha L.M.T. Food Research International. – 2016. –
V. 90. – С. 100–110.
Tatiana Jotha Mattos Simen et al. Spray-Dried Extract from the Amazonian Adaptogenic Plant Ampelozizyphus Amazonicus Ducke
(Saracura-Mirá): Chemical Composition and Immunomodulatory Properties // Food Research International. – 2016. – V. 90. – P. 100–110. DOI: 10.1016/j.foodres.2016.10.040
Vagiri, M.; Jensen, M. Influence of juice processing factors on quality of black chokeberry pomace as a future resource for colour extraction // Food Chem. – 2017. – V. 217. – P. 409–417.
Valcheva-Kuzmanova, S. Hepatoprotective effect of the natural fruit juice from Aroniamelanocarpa on carbon tetrachlorideinduced
acute liver damage in rats / S. Valcheva-Kuzmanovaet. al. // Exp. Toxicol. Pathol. – 2004. – V. 56. – P. 195–201.
Wu, X., Beecher, G.R., Holden, J.M., Haytowitz, D.B., Gebhardt, S.E., & Prior, R.L. Concentrations of anthocyanins in common foods
in the United States and estimation of normal consumption // Journal of Agricultural and Food Chemistry. – 2006. – V. 54(11). – P. 4069–4075.





