Instant Andean beverage based on toasted grains: design and optimization

Authors

  • Segundo Rubio-Nuñez Escuela Profesional de Ingeniería Agroindustrial, Facultad de Ciencias Agrarias, Universidad Nacional Autónoma de Chota. Chota, Perú.
  • Juan Solano-Gaviño Escuela Profesional de Ingeniería Agroindustrial, Facultad de Ciencias Agropecuarias, Universidad Nacional de Trujillo. Trujillo, Perú. https://orcid.org/0000-0003-1374-9558
  • Frank Velásquez-Barreto Escuela Profesional de Ingeniería Agroindustrial, Facultad de Ciencias Agrarias, Universidad Nacional Autónoma de Chota. Chota, Perú. https://orcid.org/0000-0001-8954-9769

DOI:

https://doi.org/10.51372/bioagro343.8

Keywords:

aceptability, beverage, Hordeum vulgare, Pisum sativum, Vicia faba

Abstract

Grains in high Andean areas have various nutritional compounds, but due to their sensory qualities, they are only consumed fresh or dehydrated. A processing alternative is the roasting of the beans to obtain beverages. The objective of the study was to evaluate the temperature and roasting time on the solubility and the color difference (ΔE) of the pea, barley and broad beans, in order to determine the optimal roasting parameters, as well as design the optimal mixture of grains to obtain an instant beverage. In a first stage, a rotational central composite design was used to optimize the roasting process based on solubility and ΔE. In a second stage, a simplex-centroid design was applied to determine the optimal mixture of roasted flour for the instant beverage. The roasted barley grains had the highest solubility, and the highest ΔE was for roasted pea beans. The roasting temperature had a significant effect (P≤0,05) on the solubility of the barley and pea grains, while the time and the roasting temperature exhibited a significant effect on the ΔE of the three grain types. The optimal roasting parameters were different for each bean. Beverages with high percentages of bean and barley flour, and low percentages of pea flour had greater acceptability. It is concluded that instant beverages with high acceptability can be obtained from grains grown in Andean zones.

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References

Abusin, S. A., A. B. Hassan, y E. E. Babiker. 2009. Nutritional evaluation of cooked faba bean (Vicia faba L.) and white bean (Phaseolus vulgaris L.) cultivars. Australian Journal of Basic and Applied Sciences 3(3): 2484-2490.

Adamidou, S., I. Nengas, K. Grigorakis, D. Nikolopoulou y K. Jauncey. 2011. Chemical composition and antinutritional factors of field peas (Pisum sativum), chickpeas (Cicer arietinum), and faba beans (Vicia faba) as affected by extrusion preconditioning and drying temperatures. Cereal Chemistry 88(1): 80-86.

Aisyah Zafirah, M. D., K. Roselina, S. Jinap y H. Norhayati. 2018. Effects of fat content and grinding level of cocoa nibs on physicochemical characteristics of espresso cocoa. International Food Research Journal 25(3): 1239-1245.

Amin, T., A. Bashir, B. N. Dar y H. R. Naik. 2016. Development of high protein and sugar-free cookies fortified with pea (Pisum sativum L.) flour, soya bean (Glycine max L.) flour and oat (Avena sativa L.) flakes. International Food Research Journal 23(1): 72-76.

Angeles, J. G. C., J. C. Villanueva, L. Y. C. Uy, S. M. Q. Mercado, M. C. L. Tsuchiya, J. P. Lado,

M. R. N. Angelia, M. C. M. Bercansil-Clemencia, M. A. C. Estacio y M. A. O. Torio, 2021. Legumes as functional food for cardiovascular disease. Applied Sciences (Switzerland) 11(12): 5475.

AOAC. 2005. Official Methods of Analysis of the Association of Analytical Chemists International (18th ed.). Gaithersburg, MD, USA.

Calixto-Muñoz, J.J, D. de J. Pérez-López, A. González-Huerta, O. Franco-Mora, A. Morales-Pérez y A. D. Solís-Méndez. 2020. Variabilidad en el contenido de taninos, proteína y propiedades físicas en granos de haba (Vicia faba L.). Bioagro 32(3): 215-224.

Chavan, M., Y. Gat, M. Harmalkar y R. Waghmare. 2018. Development of non-dairy fermented probiotic drink based on germinated and ungerminated cereals and legume. LWT - Food Science and Technology 91: 339-344.

Coda, R., M. Montemurro, y C. G. Rizzello. 2017. Yogurt-like beverages made with cereals. In: Yogurt in Health and Disease Prevention. Academic Press. pp. 183-201.

Cornell, J.A. 2002. Experiments with Mixtures: Designs Models and the Analysis of Mixture Data. Willey. New York.

Craig, A.; Botelho, B.; Oliveira, L. Franca, A. 2018. Mid infrared spectroscopy and chemometrics as tools for the classification of roasted coffees by cup quality. Food Chemistry 245: 1052-1061.

De Oliveira, M.A., G.A. Maia, R.W. De Figueiredo, A.C.R. De Souza, E.S. De Brito y H.M.C De Azeredo. 2009. Addition of cashew tree gum to maltodextrin- based carriers for spray drying of cashew apple juice. International Journal of Food Science and Technology 44(3): 641-645.

Fernandes, C. G., S. K. Sonawane y S. S. Arya. 2018. Cereal based functional beverages: A review. Journal of Microbiology, Biotechnology and Food Sciences 8 (3): 914-919.

García, J., y F. Calixto. 2000. Evaluation of CIELAB parameters during the clarification of a sugar syrup from Mesquite pods (Prosopis pallida L.). International Journal of Food Science and Technology 35: 385-389.

Ge, J., C. X. Sun, H. Corke, K. Gul, R. Y. Gan y Y. Fang. 2020. The health benefits, functional properties, modifications, and applications of pea (Pisum sativum L.) protein: Current status, challenges, and perspectives. Comprehensive Reviews in Food Science and Food Safety 19(4): 1835-1876.

Ghoshal, G., y S. K. Kansal. 2019. The emerging trends in functional and medicinal beverage research and its health implication. In: Functional and Medicinal Beverages. Academic Press. pp. 41-71.

Hatamian, M., M. Noshad, S. Abdanan-Mehdizadeh y H. Barzegar. 2020. Effect of roasting treatment on functional and antioxidant properties of chia seed flours. NFS Journal 21: 1-8.

Hofmann, T. 1998. Characterization of the most intense coloured compounds from Maillard reactions of pentoses by application of colour dilution analysis. Carbohydrate research 313(3-4): 203-213.

Hove, E. L., S. King y G. D. Hill. 1978. Composition, protein quality, and toxins of seeds of the grain legumes Glycine max, Lupinus spp., Phaseolus spp. Pisum sativum, and Vicia faba. New Zealand Journal of Agricultural Research 21(3): 457-462.

Ibáñez, F. y Y. Barcina. 2001. Análisis sensorial de alimentos: métodos y aplicaciones. Springer. Barcelona.

Ignat, M. V., L. C. Salanţă, O. L. Pop, C. R. Pop, M. Tofană, E. Mudura, T. E. Coldea, A. Borşa, y A. Pasqualone. 2020. Current functionality and potential improvements of non-alcoholic fermented cereal beverages. Foods 9(8): Article number 9081031.

Islam, M. Z., D. S. Yu y Y. T. Lee. 2019. The Effect of Heat Processing on Chemical Composition and Antioxidative Activity of Tea Made from Barley Sprouts and Wheat Sprouts. Journal of Food Science 84(6): 1340-1345

Kassegn, H. H., T. W. Atsbha, y L. T. Weldeabezgi. 2018. Effect of germination process on nutrients and phytochemicals contents of faba bean (Vicia faba L.) for weaning food preparation. Cogent Food & Agriculture 4(1): 1545738.

Kim, Y., Y. C. Lee y K. O. Kim. 1998. Optimum Roasting and Extraction Conditions and Flavor Characteristics of Roasted Malt Extract. Cereal Chemistry 75(3): 282-288.

Lewis, G., D. Mathieu y R. Phan-Tan-Luu. 1998. Pharmaceutical Experimental Design. CRC Press. Boca Raton, Florida.

Majcher, M. A., D. Klensporf-Pawlik, M. Dziadas y H. H. Jeleń. 2013. Identification of aroma active compounds of cereal coffee brew and its roasted ingredients. Journal of Agricultural and Food Chemistry 61(11): 2648-2654.

Mecha, E., V. Correia, A. Bento da Silva, A. Ferreira, B. Sepodes, M. E. Figueira, M. C. Vaz Patto y M. Rosário Bronze. 2021. Improvement of wheat cookies’ nutritional quality, by partial substitution with common bean and maize flours, sustained human glycemia and enhanced satiety perception. Cereal Chemistry 98(5): 1123-1134.

Milán-Carrillo, J., R. Gutiérrez-Dorado, E. O. Cuevas-Rodríguez, L. M. Sánchez-Magaña, J. J. Rochín-Medina, y C. Reyes-Moreno. 2017. Bebida funcional con potencial antidiabético y antihipertensivo elaborada con maíz azul y frijol negro bioprocesados. Revista Fitotecnia Mexicana 40(4): 451-459.

Millar, K. A., E. Gallagher, R. Burke, S. McCarthy y C. Barry-Ryan. 2019. Proximate composition and anti-nutritional factors of fava-bean (Vicia faba), green-pea and yellow-pea (Pisum sativum) flour. Journal of Food Composition and Analysis 82: 103233.

Montanuci, F. D., L. M. M. Jorge y R. M. M. 2016. Influence of roasting temperature of barley on the powder characteristics and preparation of tea. Cereal Chemisty 93(1): 20-24.

Montgomery, D. 2004. Diseño y análisis de experimentos. Limusa Wiley. México, D.F.

Mostafa, M. M., E. Ali, M. Gamal y M. A. Farag. 2021. How do coffee substitutes compare to coffee? A comprehensive review of its quality characteristics, sensory characters, phytochemicals, health benefits and safety. Food Bioscience 43: 101290.

Nazir, M., S. Arif, R. S. Khan, W. Nazir, N. Khalid y S. Maqsood. 2019. Opportunities and challenges for functional and medicinal beverages: Current and future trends. Trends in Food Science & Technology 88: 513-526.

Rufián-Henares, J.A., C. Delgado-Andrade y F.J. Morales. 2009. Assessing the Maillard reaction development during the toasting process of common flours employed by the cereal products industry. Food Chemistry 114 (1): 93-99.

Sallam, Y. I., E. A. E. -S. A. El-Salam y A. G. Abaza. 2021. Green pea waste flour as a wheat flour partial replacer in pound cake: batter rheology behavior and cake quality properties. Acta Scientiarum Polonorum, Technologia Alimentaria 20(1): 67-78.

Samaei, S. P., M. Ghorbani, D. Tagliazucchi, S. Martini, R. Gotti, T. Themelis, F. Tesini, A. Gianotti, T. G. Toschi y E. Babini. 2020. Functional, nutritional, antioxidant, sensory properties and comparative peptidomic profile of faba bean (Vicia faba, L.) seed protein hydrolysates and fortified apple juice. Food Chemistry 330: 127120.

Schlörmann, W., S. Zetzmann, B. Wiege, N. Haase, A. Greiling, S. Lorkowski, C. Dawczynski y M. Glei. 2019. Impact of different roasting conditions on chemical composition, sensory quality and physicochemical properties of waxy-barley products. Food and function 10 (9): 5436-5445.

Schmelter, L., Rohm, H. y S. Struck. 2021. Gluten-free bakery products: Cookies made from different Vicia faba bean varieties. Future Foods 100038.

Schwan, R. F. y C. L. Ramos. 2019. Functional beverages from cereals. In: Functional and Medicinal Beverages: Volume 11: The Science of Beverages. pp. 351-379.

Seng K.L., Y.B. Che Man, C.P. Tan, A. Osman y N.S. Hamid. 2005. Process optimization of encapsulated pandan (Pandanus amaryllifolius) powder using spray-drying method. Journal of the Science of Food and Agriculture 85(12): 1999-2004.

Sharan, S., G. Zanghelini, J. Zotzel, D. Bonerz, J. Aschoff, A. Saint-Eve y M.-N. Maillard. 2021. Fava bean (Vicia faba L.) for food applications: From seed to ingredient processing and its effect on functional properties, antinutritional factors, flavor, and color. Comprehensive Reviews in Food Science and Food Safety 20(1): 401-428.

Sharma, P., H. S. Gujral y C. M. Rosell. 2011. Effects of roasting on barley β-glucan, thermal, textural and pasting properties. Journal of Cereal Science 53(1): 25-30.

Sharma, P. y H.S. Gujral. 2014. Cookie making behavior of wheat–barley flour blends and effects on antioxidant properties. LWT-Food Science and Technology 55(1): 301-307.

Siah, S., I. Konczak, J. A. Wood, S. Agboola y C. L. Blanchard. 2014. Effects of roasting on phenolic composition and in vitro antioxidant capacity of Australian grown faba beans (Vicia faba L.). Plant Foods for Human Nutrition 69 (1): 85-91.

Tadesse, N. S., G. F. Beyene, T. B. Hordofa y A.A. Hailu. 2020. Traditional foods and beverages in Eastern Tigray of Ethiopia. Journal of Ethnic Foods 7(16): 1-12.

Tarawneh, M., A.M. Al-Jaafreh, H. Al-Dal'in, H. Qaralleh, M. Alqaraleh y M. Khataibeh. 2021. Roasted date and barley beans as an alternative’s coffee drink: micronutrient and caffeine composition, antibacterial and antioxidant activities. Systematic Reviews in Pharmacy 12(1): 1079-1083.

Urzúa, C., E. González, V. Dueik, P. Bouchon, B. Giménez y P. Robert. 2017. Olive leaves extract encapsulated by spray-drying in vacuum fried starch–gluten doughs. Food and Bioproducts Processing 106: 171-180.

Published

2022-08-31

How to Cite

Rubio-Nuñez, S., Solano-Gaviño, J., & Velásquez-Barreto, F. (2022). Instant Andean beverage based on toasted grains: design and optimization. Bioagro, 34(3), 289-300. https://doi.org/10.51372/bioagro343.8