Optimization of rheological behavior of a whey-based milky drink formulated with different hydrocolloids

Authors

DOI:

https://doi.org/10.26461/26.03

Keywords:

stabilizers, whey, revalorization, drinkable yogurt, rheology

Abstract

The emerging trend in the use of cheese whey in food development lies in avoiding contamination and promoting the circular economy in dairy industries. This work aimed to optimize a formulation for developing a non-fermented acidified dairy beverage from whey, with rheological properties similar to those of a leading drinkable yogurt brand in the Argentine market. For this, a base formulation with reconstituted whey, dairy powders, and sugar was prepared, to which 0.142 % stabilizers were added, and for its acidification, lactic acid was used until reaching a pH of 4.6. A mixture experimental design of three factors (modified starch, gelatin, and a combination of guar and locust bean gum in equal parts) with three levels (0.028 %, 0.057 %, and 0.085 % concentrations) and a central point were used. The responses evaluated were apparent viscosity (between 0 and 200 s-1) and rheological model parameters (yield strength, behavior index, etc.). Likewise, the control yogurt was characterized by recording the same mentioned variables. Predictive models were obtained for each response and the effect of each hydrocolloid in the beverage. In turn, the concentrations of starch (0.028 %), gelatin (0.059 %), and gums (0.054 %) were determined by optimizing multiple answer, which willed allow obtaining a beverage with similar characteristics to commercial yogurt.

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References

AOAC International, 1984. Official Methods of Analysis. 14aed. Gaithersburg: AOAC. Official Method 16.036.

AOAC International, 2000. Official Methods of Analysis, 17aed. Gaithersburg: AOAC. Official Method 920.124.

Argentina. Ministerio de Salud, 1996. Código alimentario argentino.Cap. VIII. Buenos Aires: ANMAT.

Baglio, E., 2014. Chemistry and technology of yoghurt fermentation. Berlín: Springer.

Balcázar, M.E.V., 2011. Elaboración y aplicación gastronómica del yogur. Cuenca: Universidad de Cuenca.

BeMiller, J.N., 2011. Pasting, paste, and gel properties of starch–hydrocolloid combinations. En: Carbohydrate Polymers, 86, pp. 386-423. DOI: https://doi.org/10.1016/j.carbpol.2011.05.064

Brighenti, M.; Govindasamy-Lucey, S.; Jaeggi, J.J.; Johnson, M.E. y Lucey, J.A., 2020. Behavior of stabilizers in acidified solutions and their effect on the textural, rheological, and sensory properties of cream cheese. En: Journal of Dairy Science, 103, pp. 2065–2076. DOI: https://doi.org/10.3168/jds.2019-17487

Carvalho, F.; Prazeres, A.R. y Rivas, J., 2013. Cheese whey wastewater: characterization and treatment. En: Science of The Total Environment, 445–446, pp. 385–396. DOI: https://doi.org/10.1016/j.scitotenv.2012.12.038

Chandan, R.C.; White, C.H.; Kilara, A. y Hui, Y.H., 2008. Manufacturing yogurt and fermented milks. New Jersey: John Wiley & Sons.

Delmonte, A.; Cortez-Latorre, J.D. y Rozycki, S.D., 2022. Whey revalorization through the development of spreadable cheeses. En: ESPOCH Congresses: The Ecuadorian Journal of S.T.E.A.M, 2(1), pp. 228–244. DOI: https://doi.org/10.18502/espoch.v2i2.11197

Derringer, G. y Suich, R., 1980. Simultaneous optimization of several response variables. En: Journal of Quality Technology, 12, pp. 214–219. DOI: https://doi.org/10.1080/00224065.1980.11980968

Elejalde, C.C. y Kokini, J.L., 1992. The psychophysics of pouring, spreading and in-mouth viscosity. En: Journal of Texture Studies, 23(3), pp. 315-336. DOI: https://doi.org/10.1111/j.1745-4603.1992.tb00528.x

FAO, s.d. Leche y productos lácteos [En línea].Roma: FAO. [Consulta: 24 de julio de 2022].Disponible en: https://www.fao.org/dairy-production-products/products/es/

Federación Internacional de Lechería, 1981. FIL 105: Leche: determinación de contenido graso. Bruselas: FIL.

Federación Internacional de Lechería, 1982. FIL 4a: Quesos y quesos procesados: determinación del contenido de sólidos totales. Bruselas: FIL.

Hugunin, A.; Lucey, J.A. y Verdes, S.K., 2009. US whey ingredients in yogurt and yogurt beverages. Washington: US Dairy Export Council.

INDEC, s.d. Producción agropecuaria [En línea]. Buenos Aires: INDEC.[Consulta: 25 de Julio de 2022]. Disponible en: https://www.indec.gob.ar/indec/web/Nivel4-Tema-3-8-89

Joyner, H.S. y Damiano, H., 2015. Influence of various hydrocolloids on cottage cheese cream dressing stability. En: International Dairy Journal, 51, pp. 24-33. DOI: https://doi.org/10.1016/j.idairyj.2015.06.007

Larenas, M., 2010. Modelos en reología y aplicaciones a fluídos [En línea]. Santiago: Universidad de Chile. [Consulta: 13 de Julio de 2022]. Disponible en: https://repositorio.uchile.cl/handle/2250/103837

Marcotte, M.; Taherian Hoshahili, A.R. y Ramaswamy, H.S., 2001. Rheological properties of selected hydrocolloids as a function of concentration and temperature. En: Food Research International, 34, pp. 695–703. DOI: https://doi.org/10.1016/S0963-9969(01)00091-6

Mordor Intelligence, s.d. Mercado de Bebidas a Base de Lácteos: crecimiento, tendencias, impacto de covid-19 y pronósticos (2023-2028) [En línea]. Hyderabad: Mordor Intelligence. [Consulta: 17 de marzo de 2023]. Disponible en: https://www.mordorintelligence.com/es/industry-reports/dairy-based-beverages-market

Mudgil, D. y Barak, S., 2019. Dairy-based functional beverages. En: Grumezescu, A.M. y Holban, A.M., eds. Milk-based beverages. Sawston: Woodhead Publishing. pp. 67–93. DOI: https://doi.org/10.1016/B978-0-12-815504-2.00003-7

Pang, B.; Wang, S.; Chen, W.; Hassan, M. y Lu, H., 2019. Effects of flow behavior index and consistency coefficient on hydrodynamics of power-law fluids and particles in fluidized beds. En: Powder Technology, 366, pp. 249-260. https://doi.org/10.1016/j.powtec.2020.01.061

Pavón, Y.L.; Lazzaroni, S.M.; Sabbag, N.G.y Rozycki, S.D., 2014. Simultaneous effects of gelatin and espina corona gum on rheological, physical and sensory propierties of cholesterol-reduced probiotic yoghurts. En: International Journal of Food Science and Technology, 49(10), pp. 2245-2251. DOI: https://doi.org/10.1111/ijfs.12538

Priyanka, R.M.; Sarma, M. y Mukesh, K., 2022. Non-enzymatically hydrolyzed guar gum and orange peel fibre together stabilize the low-fat, set-type yogurt: A techno-functional study. En: Food Hydrocolloids, 122, 107100. DOI: https://doi.org/10.1016/j.foodhyd.2021.107100

Rozycki, S.D. y Seguro, E.F., 1995. Yogur: cuantificación e influencia de los parámetros reológicos. En: Revista Argentina de Lactología, 7, pp. 39–56.

StatPoint Technologies, Inc., 2009. STATGRAPHICS Centurion XVI. [En línea]. Vers. 16.2.04. The Plains: StatPoint Technologies, Inc. [Consulta: 10 de Abril de 2022]. Disponible: https://www.statgraphics.com/download-statgraphics-centurion-xvi

StatPoint Technologies, Inc, 2010. STATGRAPHICS® Centurion XVI User Manual. Estados Unidos. [Consulta: 25 de julio de 2022]. Disponible: https://www.statgraphics.net/wp-content/uploads/2015/03/Centurion-XVI-Manual-Principal.pdf

Sarbon, N.M.; Badii, F. y Howell, N.K., 2015. The effect of chicken skin gelatin and whey protein interactions on rheological and thermal properties. En: Food Hydrocolloids, 45, pp. 83–92. DOI: https://doi.org/10.1016/j.foodhyd.2014.10.008

Smithers, G.W., 2008. Whey and whey proteins - From ‘gutter-to-gold.’ En: International Dairy Journal,18, pp. 695–704. DOI: https://doi.org/10.1016/j.idairyj.2008.03.008

Sun, S.; Xu, X.; Liang, L.; Wang, X.; Bai, X., Zhu, L. y Zhao, J., 2021. Lactic acid-producing probiotic Saccharomyces cerevisiae attenuates ulcerative colitis via suppressing macrophage pyroptosis and modulating gut microbiota. En: Frontiers in Immunology, 12, 777665. DOI: https://doi.org/10.3389/fimmu.2021.777665

Yousefi, M. y Jafari, S.M., 2019. Recent advances in application of different hydrocolloids in dairy products to improve their techno-functional properties. En: Trends in Food Science & Technology, 88, pp. 468–483. DOI: https://doi.org/10.1016/j.tifs.2019.04.015

Published

2023-10-23

How to Cite

Leurino Kling, L. I., Rozycki, S. D., & Cortez Latorre, J. D. (2023). Optimization of rheological behavior of a whey-based milky drink formulated with different hydrocolloids. INNOTEC, (26 jul-dic), e636. https://doi.org/10.26461/26.03

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Articles