Organoleptic effects of using potato peel flour in cookies

Autores

DOI:

https://doi.org/10.12873/

Palavras-chave:

sensory acceptance, food, food innovation, functional ingredients, sensory perception

Resumo

Introduction: Cereals, especially wheat, are staple foods and are primarily used as flour. Wheat flour is essential in baking for its ability to give structure to baked goods. The industry is seeking more nutritious alternatives that enhance flavor and texture. Legume flours provide fiber, protein, and sensory variety.

Objective: To determine the effect of using potato peel flour on the organoleptic properties of the biscuits.

Materials and Methods: The quantitative study used a pre-experimental design with 40 Culinary Arts students, selected by convenience. Those with altered sensory perception were excluded. Data were collected using a 12-question questionnaire per variable. Responses were measured on a Likert scale from 1 to 5. The objective was to empirically verify hypotheses.

Results: The "Organoleptic Properties" variable showed a statistically significant difference (p = 0,029) when potato peel flour was incorporated, so the null hypothesis was rejected. This result was obtained using the Wilcoxon test, applied to compare sensory perceptions before and after the modification. Its three dimensions were also significant: Sensory Profile (p = 0,042), Product Modification (p = 0,039), and Sensory Comparison (p = 0,022).

Discussion: The analysis confirmed that the addition of potato peel flour to the recipe significantly altered the organoleptic properties of the cookies, significantly altering their sensory profile and supporting the alternative hypothesis.

Conclusion: The use of potato peel flour significantly influences the organoleptic properties of the biscuits, with good consumer acceptance and improvements in flavor and appearance, suggesting potential interest in this enriched product.

Biografia do Autor

  • Adriana Alexandra García Chávez, Universidad San Ignacio de Loyola

    Especialista en Arte Culinario. Colaboradora del evento FUNDADES por la Universidad San Ignacio de Loyola.

  • Adriana Sofia Rengifo Rojas, Universidad San Ignacio de Loyola

    Especialista en Arte Culinario. Participante en eventos de gastronomía en el BAP Unión.

  • Aldo Medina Gamero, Universidad San Ignacio de Loyola

    Doctor en Humanidades, MBA en Administración, Maestro en Educación. Docente investigador en Administración hotelera, Turismo y gastronomía

Referências

1. Wysocka K, Cacak-Pietrzak G, Fedelyn-Aszewczyk B, Studnicki M. The baking quality of wheat flour obtained from wheat grains cultivated in various farming systems (organic vs conventional). Appl Sci. 2024; 14(5):1-12. https://doi.org/10.3390/app14051886

2. Akissóe L, Brasse C, Maitre I, Guerin B, Piva G, Symoneaux R, et al. Assessing the culinary qualities of a shortcrust pastry food model: Impact of the chemical and functional characteristics of legume flours. Int J Gastron Food Sci. 2025;41:101219. https://doi.org/10.1016/j.ijgfs.2025.101219

3. Liu Y, Zeyu J, Mengmeng L, Ke B, Erqi G, Wei H. Effect of heat-moisture treatment of wheat (Triticum aestivum L.) grain on micronutrient content of flour, and noodles and bread qualities. J Cereal Sci. 2024; 115(103836):1-12. https://doi.org/10.1016/j.jcs.2023.103836

4. Chen Y, McClements D, He K, Peng X, Xu Z, Meng M, et al. Effect of phytic acid on the structure, properties and oil absorption of wheat flour. Food Hydrocoll. 2024;150:109737. https://doi.org/10.1016/j.foodhyd.2024.109737

5. Bagolin A, Medeiros G, Teixeira E. We want to be normal! Perceptions of a group of Brazilian consumers with coeliac disease on gluten-free bread buns. Int J Gastron Food Sci. 2017; 7:27–31. https://doi.org/10.1016/j.ijgfs.2017.01.001

6. Pellegrini N, Agostoni C. Nutritional aspects of gluten-free products. J Sci Food Agric. 2015; 95(12):2380–5. https://doi.org/10.1002/jsfa.7101

7. Sampaio S, Petropoulos S, Alexopoulos A, Heleno S, Santos C, Barros L et al. Potato peels as sources of functional compounds for the food industry: A review. Trends Food Sci Technol. 2020; 103:118–29. http://dx.doi.org/10.1016/j.tifs.2020.07.015

8. Jennings S, Koehler A, Nicklin K, Deva C, Sait S, Challinor A. Global potato yields increase under climate change with adaptation and CO2 fertilisation. Front Sustain Food Syst [Internet]. 2020;4:519324. Available from: https://doi.org/10.3389/fsufs.2020.519324

9. Kot AM, Pobiega K, Piwowarek K, Kieliszek M, Błazejak S, Gniewosz M et al. Biotechnological methods of management and utilization of potato industry waste—a review. Potato Res. 2020; 63(3):431–47. https://doi.org/10.1007/s11540-019-09449-6

10. Albishi T, John A, Al-Khalifa A, Shahidi F. Phenolic content and antioxidant activities of selected potato varieties and their processing by-products. J Funct Foods. 2014; 5:590–600. https://doi.org/10.1016/j.jff.2012.11.019

11. Cobos M, Hasang E, Medina R, Orellana E. Potato cultivation, genetic resources and challenges for the future. J Sci Res. 2022; 7:1–12. https://doi.org/10.5281/zenodo.7724758

12. Miranda A. Evaluation of five mixtures of potato and wheat flour for bread making. Rev Investig Proy Científica. 2023; 5(1):35–50. https://doi.org/10.56785/ripc.v5i1.97

13. Moushumi A, Nishat A, Falguni R, Sabina Y, Mouluda S, Md Sultan M. Effect of drying methods on physicochemical, antioxidant and functional properties of potato peel flour and quality evaluation of potato peel composite cake. J Agric Food Res. 2023;11:100508. https://doi.org/10.1016/j.jafr.2023.100508

14. Perez M, Cebollon A, Bosquez E, Totosaus A. Mango peel flour and potato peel flour as bioactive ingredients in the formulation of functional yogurt. Food Sci Technol. 2022; 42:1–8. https://doi.org/10.1590/fst.38220

15. Crawford L, Kahlon T, Wang S, Friedman M. Acrylamide content of experimental flatbreads prepared from potato, quinoa, and wheat flours with added fruit and vegetables peels and mushroom powders, Foods. 2019; 8(7):228. https://doi.org/10.3390/foods8070228

16. Durmaz A, Yüksel F. Deep fried wheat chips added with potato peel flour—effect on quality parameters. Qual Assur Saf Crops Foods. 2021; 13(1):115–24. https://doi.org/10.15586/qas.v13i1.844

17. Wang X, Fang J, Li C, Gu Z, Yan H. Interaction of starch and non-starch polysaccharides in raw potato flour and their effects on thickening stability. Int J Biol Macromol. 2023; 242:124702. https://doi.org/10.1016/j.ijbiomac.2023.124702

18. Vásquez C, Durazno D, Moya B, Rodríguez C, Pinargote M. Preparation of a gluten-free biscuit based on Chinese potato flour and soybean flour. J Sci Res. 2024; 9(2):133–56. https://revistas.utb.edu.ec/index.php/sr/article/view/3090/2811

19. Álvarez H, Sotelo A, Gonzáles T, Norabuena E, Zárate E, Sumarriva L. Calidad nutricional, sensorial y evaluación biológica de panes convencionales y libres de gluten. Nutr Clín Diet Hosp. 2022;42(01). https://revista.nutricion.org/index.php/ncdh/article/view/221

20. Mccrickerd K, Forde C. Sensory influences on food intake control: moving beyond palatability. Obes Rev. 2016; 17:18–29. https://doi.org/10.1111/obr.12340

21. Chen X, Zhang W, Young SY, Zhao L. Flavor–food ingredient interactions in fortified or reformulated novel food: binding behaviors, manipulation strategies, sensory impacts, and future trends in delicious and healthy food design. Compr Rev Food Sci Food Saf. 2023; 22:4004–29. https://doi.org/10.1111/1541-4337.13195

22. Murrieta, L. (2016). Approach to the experimental analysis of the threshold of intonation perception in the Spanish of central Mexico. Studies in Applied Linguistics, 0(63), 153-166. https://doi.org/10.22201/enallt.01852647p.2016.63.629

23. Asociación Española de Normalización (UNE). UNE-EN ISO 13299: Sensory analysis-Methodology: General guidance for establishing a sensory profile (ISO 13299:2016). Madrid: UNE; 2017.

24. Cruz M, Bazan C. Sensory profile in children with attention deficit hyperactivity disorder. Rev Cient Cienc Méd. 2020; 23(2):192–200.

25. Akter M, Anjum N, Roy F, Yasmin S, Sohany M, Mahomud M. Effect of drying methods on physicochemical, antioxidant and functional properties of potato peel flour and quality evaluation of potato peel composite cake. J Agric Food Res. 2023; 11:100508. https://doi.org/10.1016/j.jafr.2023.100508

26. Bao H, Zhou J, Yu J, Wang S. Effect of drying methods on properties of potato flour and noodles made with potato flour. Foods. 2021; 10(5):1115. https://doi.org/10.3390/foods10051115

27. Upadhayay S, Tiwari R, Kumar S, Gupta S, Manish S, Kumar V, et al. Utilization of food waste for the development of composite bread. Sustainability. 2023; 15(17):13079. https://doi.org/10.3390/su151713079

28. Obeng K, Liu Y, Pu Z. Evaluating the nutritional and sensory quality of bread, cookies and noodles made from wheat supplemented with root tuber flour. Br Food J. 2017; 119(4):895–908. https://doi.org/10.1108/BFJ-09-2016-0414

29. Admasu F, Getachew E, Admassu H, Shin J. Functionalization of wheat bread with prebiotic dietary insoluble fiber from orange-fleshed sweet potato peel and haricot bean flours. LWT. 2024; 200:116182. https://doi.org/10.1016/j.lwt.2024.116182

30. McCaffrey D. Quantitative Research and Educational Measurement. In: International Encyclopedia of Education. 14th ed. 2023. p.19-24. https://doi.org/10.1016/B978-0-12-818630-5.02014-5

31. Terrazas J, Crispin E, Mamani G, Escoja L. Application of learning by doing as a methodological strategy to students in the subject of Livestock II. Cienc Tecnol Innov. 2023; 21:95–102. https://doi.org/10.56469/rcti.v21i28.805

32. Robles P, Rojas M. Validation by expert judgment: two qualitative investigations in applied linguistics. Rev Nebrija Lingüíst Apl. 2015; 18:1–12. https://doi.org/10.26378/rnlael918259

33. Jacinto G, Steven A, Maciel J, Jachetti M, Volken C. Effect of potato peel, pumpkin seed, and quinoa flours on sensory and chemical characteristics of gluten free breads. Braz J Food Journal. 2020;23:e20190169. https://doi.org/10.1590/1981-6723.16919

34. Ministry of Agriculture and Irrigation (MINAGRI). Supreme Decree approving the Regulations of Law No. 30988, Law that promotes the reduction and prevention of food waste losses (D. S. No. 003-2020-MINAGRI), Lima: MINAGRI; 2020. https://cdn.www.gob.pe/uploads/document/file/1039478/D.S._N003-2020-MINAGRI.pdf?v=1595600195

35. Mendoza SV, Vásquez LH, Pinargote ER, Rodríguez SL. Bebida helada de jengibre (Zingiber officinale) con miel de abeja. Nutr Clín Diet Hosp. 2024;44(03). https://revista.nutricion.org/index.php/ncdh/article/view/618

36. Basurto Y, Limongi JM, Muñoz JP. Efecto de varios porcentajes de harina de cáscara de naranja (Citrus sinensis) sobre las propiedades fisicoquímicas, bromatológicas y sensoriales de galletas dulces. Nutr Clín Diet Hosp. 2025;45(01). https://revista.nutricion.org/index.php/ncdh/article/view/821

Publicado

2025-12-12

Como Citar

[1]
2025. Organoleptic effects of using potato peel flour in cookies. Nutrición Clínica y Dietética Hospitalaria. 45, 4 (dez. 2025). DOI:https://doi.org/10.12873/.

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