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Technology of acid-bearing oil with phytocomponents

https://doi.org/10.20914/2310-1202-2018-4-225-228

Abstract

The assortment of butter in Russia traditionally contained anhydrous butter produced by the method of knocking cream. At present, butter is produced to a greater extent by the conversion of high-fat cream. On the shelves of stores, besides the sweetening and acidic oils, you can see butter butter with the addition of additional flavor components. Fito components have high antioxidant properties and are widely used in the food industry. Introduction to the product of this recipe ingredient allows you to enrich the product with valuable nutrients and increase the stability of the latter when stored. The recipe of oil of the acidic and phytocomponents containing high-fat cream, leaven, salt, cooked phytocomponents, vitamins, stabilizer, emulsifier is proposed. The phytocomponent composition includes a dry mixture of parsley, dill and porridge. It is of interest to study the antioxidant activity of phyto-components. The dried parts of the plants were shredded to a particle size of 2.5 ± 1.5 mm. Plant extracts were obtained by maceration using distilled water. The extracts were filtered before the study. An indicator of the antioxidant activity of the aqueous extract of phyto-components was determined – 0.271 mg / g. A comparison of the obtained results with known indices of other plants is carried out. As the objects of comparison took the most used herbs in the food industry: sweet, saffron, thyme, St. John's wort, chamomile chemist, melissa. It has been established that the mixture of dill, parsley and porridge meal has a high antioxidant index and minimal restrictions when used. The optimal dosage of the mixture of herbs is 1.0 – 1.5 % and food cooking salt – 1 % (indicator according to GOST 32899–2014 for greenery and their mixtures is 0.5 – 8.0 %, for sodium chloride – no more than 2 %) The technology of production of oxygen-containing oil with phytocomponents is developed. The indicators of its quality have been studied, the shelf life of the oil has been determined.

About the Authors

O. I. Dolmatova
Voronezh state university of engineering technologies
Cand. Sci. (Engin.), associate professor, animal origin products technology department, Revolution Av., 19 Voronezh, 394036, Russia


K. A. Rudometkina
Voronezh state university of engineering technologies
student, animal origin products technology department, Revolution Av., 19 Voronezh, 394036, Russia


References

1. Vyshemirsky F.A. Proizvodstvo masla iz korov'ego moloka v Rossii [Production of cow's milk oil in Russia]. Saint Petersburg, GIORD, 2010. 288 p. (in Russian).

2. Davydenko V.A., Baymatova E.V. Cheesecakes with spices: analysis of consumer preferences of the inhabitants of Kemerovo and the Kemerovo region. Molochnaya promyshlennost' [Dairy industry]. 2014. no. 9. pp. 56–57. (in Russian).

3. Kasyanov G.I., Kizim  I.E. Applications of spicy aromatic and medicinal plants in food production. Molochnaya promyshlennost' [Dairy industry]. 2010. no. 5. pp. 56. (in Russian).

4. Shi J. Functional Food Ingredients and Nutraceuticals: Processing Technologies; second edition. CRC Press, 2015. pp. 639–660.

5. Polyanskikh S.V., Ilyina N.M., Grebenshchikov A.V., Danyliv M.M. et al. Products of animal origin with vegetable components. Indian Journal of Science and Technology. 2016. vol. 9. no. 39. pp. 103431.

6. Dolmatova O.I., Golubeva L.V. Scientific and practical aspects of the use of new raw materials in the production of oil products with a prolonged shelf life. Raleigh, Nord Carolina, Lulu Press, 2015.102 p.

7. Sharova E.I. Antioxidants of plants: a manual. Saint Petersburg, Publishing House of Saint Petersburg University. 2016. 140 p. (in Russian).

8. Chernousova O.V., Krivtsova A.I., Kuchmenko T.A. Determination of antioxidant activity of white tea. Vestnik VGUIT [Proceedings of VSUET]. 2018. vol. 80. no. 1. pp. 133–139. (in Russian).

9. Rietveld A., Wiseman S. Antioxidant effects of tea: evidence from human clinical trials. The Journal of nutrition. 2003. vol. 133. no. 10. pp. 3285S–3292S.

10. Zheng H., Sun X., Guo N., Li R. Evaluation of antibacterial and antioxidant activity of extracts of eelgrass Zostera marina Linnaeus. African Jornal of Microbiology Research. 2014. vol. 8. no. 23. pp. 2315–2321.

11. Aronbaev D.M., Ten V.A., Yulayev M.F., Aronbaev S.D. Investigation of the antioxidant activity of the vegetation of the Fergana valley. Molodoj uchenyj [Young scientist]. 2015. no. 4. pp. 30–34. (in Russian).


Review

For citations:


Dolmatova O.I., Rudometkina K.A. Technology of acid-bearing oil with phytocomponents. Proceedings of the Voronezh State University of Engineering Technologies. 2018;80(4):225-228. (In Russ.) https://doi.org/10.20914/2310-1202-2018-4-225-228

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ISSN 2226-910X (Print)
ISSN 2310-1202 (Online)