Sensory and instrumental texture profile of gluten-free biscuit with different concentrations of carrot co-product flour

Authors

DOI:

https://doi.org/10.33448/rsd-v11i6.28677

Keywords:

Bakery; Texture; Sensory analysis; Co-product; Celiac.

Abstract

Instrumental texture profile analysis reproduces the chewing action and texture-related parameters. This, together with the sensory texture profile, allows the obtaining of representative results, characterizing the product under study in a more precise way. Therefore, this work aimed to evaluate the sensory and instrumental texture characteristics of gluten-free buttery biscuits with different proportions of carrot stems and leaf flour (CSLF). From the instrumental texture analysis and the texture profile by the Temporal Dominance of Sensations method, the results showed that the biscuits presented good instrumental quality. The hardness did not differ among the treatments studied, which shows that the increase in the concentration of CSLF did not interfere with this parameter, allowing the addition of higher concentrations of flour in the biscuits. The data from the Temporal Dominance of Sensations method showed positive attributes for the texture of biscuits with a higher concentration of flour, with the main dominant sensations being: crunchiness and low adhesiveness. The cookies showed good sensory quality, constituting a practical, affordable and healthy food alternative to serve the celiac public.

References

Assis, L. M., Zavareze, E. R., Radünz., A. L., Dias., A. R. G., Gutkoski, L; C., & Elias, M. C. (2009) Nutritional, technological and sensory properties of biscuits with replacement of wheat flour by oat flour or parboiled rice flour. Food and Nutrition, 20(1), 15-24.

Brazil. (1997). Ministry of Health. Health Surveillance Secretariat, Ordinance No. 451 of September 19, 1997. Technical regulation, general principles for the establishment of microbiological criteria and standards for foods. Official Gazette of the Federative Republic of Brazil.

Brazil. (2019). Resolution RDC No. 12 of January 2, 2001. Approves the “Technical Regulation on Microbiological Standards for Food”. Issuing agency: ANVISA- National Health Surveillance Agency. Available at: www.anvisa.gov.br. Accessed on: March 24, 2019.

Brites, L. T. G. F, Ortolan, F., Silva, D. W d., Bueno, F. R, Rocha, T.d. S., Chang, Y. K, & Steel, C. J. (2019). Gluten-free biscuits elaborated with buckwheat flour, millet flour and chia seeds. Food Science and Technology, 39(2), 458-466.

Ferreira, D. F (2019). Sisvar: A Computer Analysis System To Fixed Effects Split Plot Type Designs. Brazilian Journal of Biometrics, 37(4), 529-535.

Gang Wu., Xiaodan Hui., Ruibin Wang, HNN, Dilrukshi., Yanyu Zhang., Margaret, A., Brennan,. Charles, S, & Brennan. (2021). Sodium caseinate-blackcurrant concentrate powder obtained by spray-drying or freeze-drying for delivering structural and health benefits of biscuits. Journal of Food Engineering, (299), 110466.

Guimaraes. J. T., Balthazar, C. F., Silva, R., Rocha, R. S., Graça, J. S, Esmerino, E. A., Silva, M. C., Sant'Ana, A. S., Duarte, M. C. K. H., Freitas., M. Q, & Cruz., A. G. (2020). Impact of probiotics and prebiotics on food texture. Current Opinion in Food Science, (33), 38-44.

Hutchings, S., Foster, K. D., Hedderley, D., & Morgenstern, M. (2014). Differences between Age Groups in the use of the Temporal Dominance of Sensations Technique across the Range of Food Textures. Journal of Texture Studies, 45(3).

Adolfo Lutz Institute. (2004). Physical-Chemical Methods for Food Analysis. Sensory Analysis (Chap 4, p. 287). São Paulo.

Macedo, L. D., Ávila, B. P., Saraiva, J. F. R., Lacerda, M. S., Domingues, B. P., Machado Pereira, A., & Gularte, M. A. (2020). Chemical and sensory characterization of biscuits consisting of creole grains and pine nut (Araucaria angustifolia) starch. Research, Society and Development, 9 (12), e3491210677.

Minim, V. P. R., & Silva, R. C. S. N. (2016). Descriptive Sensory Analysis. Viçosa, MG: Ed. UFV.

Noleto, K. S. (2017). Development and characterization of fish protein enriched biscuit. Brazilian Journal of Fishing Engineering, 10, (2) 69-77.

Oladunjoye, A. O., Eziama, S. C., & Aderibigbe, O. R. (2021). Proximate composition, physical, sensory and microbial properties of wheat-hog plum bagasse composite biscuits. LWT, (141), 111038.

Oliveira, D. L., Kolakowsk, A. P., Simões, D. R. S., Los, P. R., & Demiate, I. M (2017). Gluten-free biscuits made with bean bran, rice flour and cassava starch. Brazilian Journal of Agroindustrial Technology. 2(11), 2502-2522.

Pineau, N., Bouille. N., Lepage. AG., Lenfant, M., Schlich, F., Martin, P., Rytz, N., & Andreas (2012). Temporal Dominance of Sensations: What is a good attribute list. Food Quality and Preference. (26), 159-16.

Poiani, M. R, & Montanuci, F. D (2019). Physical and technological characterizations and texture profile of grape flour and linseed biscuits. Brazilian Journal of Food Technology (22), 2018074.

Silva, F. N., Oliveira, T. O., & Assumpção, G. M. P. (2020) Evaluation of sensory acceptance of biscuit typegluten-free butter with flour of stems and carrot leaves. Brazilian Journal of Development. 12(6), 96109-96114.

Simas, N. S. (2008). Residue from the processing of organic royal palm (archontophoenix alexandrae): physical-chemical characterization, application in gluten-free fibrous biscuits and sensory evaluation by celiac consumer. (Master's dissertation), Federal University of Santa Catarina, Florianópolis.

Souza, J. O., & Camilloto, G. P (2020). Buttery biscuits incorporated with açaí corn flour. Brazilian Journal of Development. 10(6), 81331-181340.

TaraseviČIenĖ, Ž., ČEchoviČIenĖ, I., JukniŪTĖ, K., ŠLepetienĖ, A., & PaulauskienĖ, A. (2021). Qualitative properties of biscuits enriched with berries pomace. Food Science and Technology, 41(2), 474-481.

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Published

26/04/2022

How to Cite

SILVA, F. N. da; OLIVEIRA, T. O. de; ASSUMPÇÃO, G. M. P. Sensory and instrumental texture profile of gluten-free biscuit with different concentrations of carrot co-product flour. Research, Society and Development, [S. l.], v. 11, n. 6, p. e22611628677, 2022. DOI: 10.33448/rsd-v11i6.28677. Disponível em: https://rsdjournal.org/index.php/rsd/article/view/28677. Acesso em: 18 apr. 2024.

Issue

Section

Agrarian and Biological Sciences