Evaluation of oxidity resistance of milk-containing products based on blending of vegetable oils
DOI:
https://doi.org/10.15587/2706-5448.2021.225530Keywords:
milk-containing curd paste, milk-containing sour cream sauce, blend of vegetable oils, acid number, peroxide numberAbstract
It is known that one of the main causes of spoilage of fats (in particular vegetable fats), as well as products made with their use, is an increase in acid and peroxide numbers. Physicochemical indicators have a significant impact not only on the quality and organoleptic characteristics of the product, but also on its safety. For this purpose, the dependence of the indicators of acid and peroxide numbers of the created blend of vegetable oils in the technologies of milk-containing products during storage has been investigated. The object of research is experimental samples of a three-component blend of vegetable oils and milk fat isolated from milk-containing curd paste and milk-containing sour cream sauce. The subject of research is the dynamics of the growth of acid and peroxide numbers of samples and changes in their organoleptic quality indicators.
The obtained data on the kinetics of oxidation of a blend of vegetable oils indicate that the increase in acid and peroxide numbers during the studied shelf life does not differ in intensity. The average threshold for an increase in acid and peroxide numbers is insignificant and amounts to 0.02–0.03 mgKOH/h and 0.2–0.21 mmol1/2O/kg for 5 days. In accordance with the obtained results of the kinetics of oxidation of the released fat of milk-containing curd paste, there is a slight increase in acid and peroxide numbers, namely: at the end of 7 days – up to 0.3 mgKOH/h and 1.9 mmol1/2O/kg, respectively, and in at the end of 10 days– up to 0.32 mgKOH/h and 2.3 mmol1/2O/kg. Based on the obtained results of the kinetics of oxidation of the released fat from the milk-containing sour cream sauce, there is a tendency to a gradual increase in the acid and peroxide numbers with an increase in the oxidation time. It is noted that the maximum values of acidic – 0.3 mgKOH/h and peroxide numbers – 2.2 mmol1/2O/kg at the end of the shelf life of 21 days are reached. According to the results obtained for the organoleptic evaluation of experimental samples of the blend and the released fat from milk-containing products, no significant changes were found during the studied shelf life.
References
- Ostrikov, A. N., Gorbatova, A. V., Filiptsov, P. V. (2016). Analiz zhirnokislotnogo sostava masel arakhisa i gretskogo orekha. Tekhnologii pischevoi i pererabatyvaiuschei promyshlennosti APK-produkty zdorovogo pitaniia, 4, 37–42.
- Prokopenko, L. G., Boiniazheva, L. I., Pavlova, E. V. (2009). Polinenasyschennye zhirnye kisloty v rastitelnykh maslakh. Maslozhirovaia promyshlennost, 2, 11–12.
- Safonova, E. F., Slivkin, A. I., Frolova, O. V., Korenskaia, I. M. (2006). Izuchenie stabilnosti i srokov godnosti masla semian amaranta. Vestnik Voronezhskogo gosudarstvennogo universiteta. Seriia: Khimiia. Biologiia. Farmatsiia, 1, 213–215.
- Belemets, T., Yushchenko, N., Lobok, A., Radzievskaya, I., Polonskaya, T. (2016). Optimization of composition of blend of natural vegetable oils for the production of milk-containing products. Eastern-European Journal of Enterprise Technologies, 5 (11 (83)), 4–9. doi: http://doi.org/10.15587/1729-4061.2016.81405
- Martin-Moreno, J. M. (2000). The role of olive oil in lowering cancer risk: Is this real gold or simply pinchbeck? Journal of Epidemiology & Community Health, 54 (10), 726–727. doi: http://doi.org/10.1136/jech.54.10.726
- Radzievska, I. G., Melnyk, O. P. (2015). Kinetic Characteristics of Oil Natural Antioxidants. Nauka Ta Innovacii, 11 (4), 32–37. doi: http://doi.org/10.15407/scin11.04.032
- Belemets, T., Yushchenko, N., Lobok, A., Radzievskaya, I., Polonskaya, T. (2016). Mathematical development program for calculation of fatty acid composition blend of vegetable oils. EUREKA: Life Sciences, 4, 57–66. doi: http://doi.org/10.21303/2504-5695.2016.00192
- Belemets, T., Radzievskaya, I., Yushchenko, N., Kuzmyk, U. (2020). Determining the efficiency of using egg products for the stabilization of emulsion when making milk-containing curds-based products. Eastern-European Journal of Enterprise Technologies, 4 (11 (106)), 14–23. doi: http://doi.org/10.15587/1729-4061.2020.210006
- Nogueira, M. S., Scolaro, B., Milne, G. L., Castro, I. A. (2019). Oxidation products from omega-3 and omega-6 fatty acids during a simulated shelf life of edible oils. LWT, 101, 113–122. doi: http://doi.org/10.1016/j.lwt.2018.11.044
- Özcan, M. M., Arslan, D. (2011). Antioxidant effect of essential oils of rosemary, clove and cinnamon on hazelnut and poppy oils. Food Chemistry, 129 (1), 171–174. doi: http://doi.org/10.1016/j.foodchem.2011.01.055
- Syrokhman, I. V. (2015). Problemy polipshennia spozhyvnykh vlastyvostei i stabilizatsii yakosti roslynnykh olii. Visnyk Lvivskoi komertsiinoi akademii. Seriia tovaroznavcha, 15, 71–76. Available at: http://nbuv.gov.ua/UJRN/Vlca_2015_15_15
- Chakraborty, N., Muhie, S., Kumar, R., Gautam, A., Srinivasan, S., Sowe, B. et. al. (2017). Contributions of polyunsaturated fatty acids (PUFA) on cerebral neurobiology: an integrated omics approach with epigenomic focus. The Journal of Nutritional Biochemistry, 42, 84–94. doi: http://doi.org/10.1016/j.jnutbio.2016.12.006
- Smoliar, V. I. (2008). Suchasni problemy yakosti kharchovykh zhyriv. Problemy kharchuvannia, 3/4, 5–12. Available at: http://medved.kiev.ua/web_journals/arhiv/nutrition/2008/3-4_08/str05.pdf
- Landucci, G., Pannocchia, G., Pelagagge, L., Nicolella, C. (2013). Analiz ta modeliuvannia protsesu pererobky promyslovoi roslynnoi olii. Zhurnal kharchovoi tekhniky, 116 (4), 840–851.
- Szydłowska-Czerniak, A., Łaszewska, A. (2015). Effect of refining process on antioxidant capacity, total phenolics and prooxidants contents in rapeseed oils. LWT – Food Science and Technology, 64 (2), 853–859. doi: http://doi.org/10.1016/j.lwt.2015.06.069
- Seppanen, C. M., Csallany, A. S. (2006). The effect of intermittent and continuous heating of soybean oil at frying temperature on the formation of 4-hydroxy-2-trans-nonenal and other α-, β-unsaturated hydroxyaldehydes. Journal of the American Oil Chemists’ Society, 83 (2), 121–127. doi: http://doi.org/10.1007/s11746-006-1184-0
- Bondarenko, Zh. V., Emello, G. G., Khavanskaia, O. I. (2016). Vliianie termoobrabotki na ustoichivost k okisleniiu i zhirnokislotnii sostav smesi rastitelnykh masel. Trudy BGTU. Seriia 2: Khimicheskie tekhnologii, biotekhnologiia, geoekologiia, 4, 162–166.
- Matskiv, O. O., Solod, M. I., Vasylkevych, V. O., Ivasiv, V. V. (2015). Vyvchennia osnovnykh pokaznykiv yakosti sumishi llianoi, konoplianoi ta hirchychnoi olii dlia zastosuvannia yikh u kharchuvanni. Kharchova promyslovist, 18, 32–37. Available at: http://nbuv.gov.ua/UJRN/Khp_2015_18_8
- Verhé, R., Verleyen, T., Van Hoed, V., De Greyt, W. (2006). Influence of refining of vegetable oils on minor components. Journal of Oil Palm Research, 4, 168–179.
- Caponio, F., Pasqualone, A., Catalano, P., Gomes, T., Summo, C. (2004). Influenza della temperatura iniziale del frangitore sulfa qualità degli oli extra vergini di oliva estratti. Rivista Italiana delle Sostanze Grasse, 81 (1), 19–22.
- Boriaev, G. I., Pogosian, D. G. (2008). Ispolzovanie selenopirana v kachestve antioksidanta v maslozhirovykh produktakh. Tekhnologiia pererabotki selskokhoziaistvennoi produktsii, 2, 76–79.
- Shemanska, Ye. I. (2012). Sklad i biolohichna tsinnist olii kholodnoho presuvannia. Visnyk DonNUET. Ser. Tekhnichni nauky, 1 (53), 221–225.
- Frenoux, J.-M. R., Prost, E. D., Belleville, J. L., Prost, J. L. (2001). A Polyunsaturated Fatty Acid Diet Lowers Blood Pressure and Improves Antioxidant Status in Spontaneously Hypertensive Rats. The Journal of Nutrition, 131 (1), 39–45. doi: http://doi.org/10.1093/jn/131.1.39
- Leong, X. F., Ng, C. Y., Jaarin, K., Mustafa, M. R. (2015). Effects of repeated heating of cooking oils on antioxidant content and endothelial function. Austin Journal of Pharmacology and Therapeutics, 3 (2), 1068.
- Falade, A., Oboh, G., Okoh, A. (2017). Potential Health Implications of the Consumption of Thermally-Oxidized Cooking Oils – a Review. Polish Journal of Food and Nutrition Sciences, 67 (2), 95–105. doi: http://doi.org/10.1515/pjfns-2016-0028
- Khatskevych, Yu. M., Nepochatykh, T. A., Ivanchenko, O. S. (2011). Zminy yakosti zhyrovykh komponentiv u maioneznii produktsii pid chas zberihannia. Prohresyvni tekhnika ta tekhnolohii kharchovykh vyrobnytstv restorannoho hospodarstva i torhivli, 1, 282–287. Available at: http://nbuv.gov.ua/UJRN/Pt_2011_1_47
- Efimenko, S. G., Efimenko, S. K., Bykova, S. F., Davidenko, E. K. (2012). Novye vidy podsolnechnogo masla s izmenennym zhirnokislotnym sostavom. Maslozhirovaia promyshlennost, 4, 16–18.
- Nekrasova, T. E. (2005). Naturalnye antioksidanty dlia maslozhirovoi produktsii. Masla i zhiry, 4, 2–3.
- Aluyor, E. O., Ori-Jesu, M. (2008). The use of antioxidants in vegetable oils – A review. African Journal of Biotechnology, 7 (25), 4837–4842. Available at: http://www.ajol.info/index.php/ajb/article/view/59677
- Fedak, N. V., Dykhtiar, A. M., Kyrychenko, V. V., Tymchuk, S. M., Pozdniakov, V. V., Tymchuk, V. M. (2012). Dynamika vmistu tokoferoliv v oliiakh soniashnyku z riznym zhyrnokyslotnym skladom v protsesi nahrivannia. Pratsi Tavriiskoho derzhavnoho ahrotekhnolohichnoho universytetu, 12 (4), 139–145.
- Paronian, V. Kh., Voskanian, O. S. (2004). Analiz vliianiia razlichnykh faktorov na kachestvo zhirov. Maslozhirovaia promyshlennost, 2, 10–11.
- Karabulut, I. (2010). Effects of α-tocopherol, β-carotene and ascorbyl palmitate on oxidative stability of butter oil triacylglycerols. Food Chemistry, 123 (3), 622–627. doi: http://doi.org/10.1016/j.foodchem.2010.04.080
- Palamarchuk, A. I., Lashko, N. P. (2015). Vplyv antyoksydantnykh vlastyvostei vitaminu E na termin zberihannia roslynnoi olii. Aktualni pytannia biolohii, ekolohii ta khimii, 10 (2), 83–90. Available at: http://nbuv.gov.ua/UJRN/apd_2015_10_2_11
- Pasichnyi, V., Shevchenko, O., Khrapachov, O., Marynin, A., Radzievskaya, I., Matsuk, Y. et. al. (2020). Prognostication of storage terms for pasteurized sausages with active package elements. EUREKA: Life Sciences, 4, 34–43. doi: http://doi.org/10.21303/2504-5695.2020.001376
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Copyright (c) 2021 Татьяна Александровна Белемец, Ирина Гиронтиевна Радзиевская, Оксана Васильевна Точковая, Наталья Михайловна Ющенко, Ульяна Геннадиевна Кузьмик, Артур Петрович Михалевич
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