Studying the effect of electrospark treatment of milk whey on the process of its fermentation and quality of thermoacid cheese
DOI:
https://doi.org/10.15587/1729-4061.2019.183712Keywords:
milk whey, electrospark discharges, magnesium, manganese, soft thermo-acid cheeseAbstract
The paper reports a study into the influence of electrospark dispersion of current-conductive granules of magnesium and manganese in the environment of milk whey on the process of its fermentation in the technology of making soft thermo-acid cheeses the type of "Adyheyskyy".
The object of this study was milk whey, obtained from the thermo-acid settling of cheeses. To prepare the coagulant, it was treated in an electric discharge chamber with a current-conductive layer of magnesium or/and manganese granules manganese over 30...120 s.
It has been established that the result of such a treatment of milk whey is the increased magnesium content, by 1.8 to 4 times on average, and the increased manganese content, by 1.5 to 3.8 times on average, depending on the treatment duration.
It has been proven that it was characteristic, of all the examined samples, to demonstrate a natural growth of titrated acidity during fermentation. However, the samples enriched with mineral elements following the electrospark treatment over 30...60 s have shown a more intensive growth in titrated acidity. Similar results were obtained when using milk whey from cottage cheese. Although at the initial stages of fermentation (0...6 hours) the increase in acidity was somewhat slower, which has an objective explanation related to the effect of enhanced acidity of the starting whey (50...60 °T) on lactobacilli.
It was established that the production cycle is significantly reduced in case of using the proposed technology of acidic whey-coagulant for making thermo-acid cheeses.
There is also an increase in the utilization coefficient of technological equipment and its resources. A given technology does not require significant areas for the introduction of an innovative electro-physical technique, and, instead, given the reduced fermentation time, it contributes to reducing the number of containers involved in the preparation of coagulant.
It has been established that the use of acidic whey, produced from raw materials enriched with magnesium and manganese, in the technology of thermo-acid cheese contributes to its enrichment with valuable mineral elements. It also provides for a more complete use of the protein potential of milk and, consequently, increases the thermo-acid cheese yield by 1.8...6.5 %References
- Farkye, N. Y. (2004). Acid- and acid/rennet-curd cheeses part C: Acid-heat coagulated cheeses. Cheese: Chemistry, Physics and Microbiology, 343–348. doi: https://doi.org/10.1016/s1874-558x(04)80051-4
- Bal-Prylypko, L. V., Savchenko, O. (2012). Tekhnolohichna dotsilnist vyhotovlennia miakykh syrnykh produktiv metodom termokyslotnoi koahuliatsiyi. Prodovlcha industriya APK, 6 (20), 12–15.
- Polishchuk, H. Ye., Hrek, O. V., Skorchenko, T. A. et. al. (2013). Tekhnolohiya molochnykh produktiv. Kyiv: NUKhT, 502.
- Kalmykova, H. F. (2014). Protses vyzrivannia syru "Osinniy". Prodovolchi resursy, 2, 94–97.
- Orliuk, Yu. T., Kalmykova, H. F., Narizhnyi, S. A. (2013). Doslidzhennia umov fermentatsiyi syrnoi masy u vyrobnytstvi termokyslotnykh syriv. Prodovolchi resursy, 1, 82–90.
- Ostroumov, L. A., Smirnova, I. A., Zakharova, L. M. (2015). Characteristics and prospects of soft cheese production. Tehnika i tehnologiya pishchevyh proizvodstv, 39 (4), 80–85. Available at: https://cyberleninka.ru/article/n/osobennosti-i-perspektivy-proizvodstva-myagkih-syrov
- Bychkova, M. V. (2009). Razrabotka tehnologii proizvodstva termokislotnyh syrov s razlichnymi koagulyantami. Polzunovskiy al'manah, 2, 92–94.
- Karki, A., Ojha, P. (2018). Quality Evaluation of Kiwi Juice Coagulated Mozzarella Cheese. Journal of Food Science and Technology Nepal, 10, 7–10. doi: https://doi.org/10.3126/jfstn.v10i0.17920
- Bespomestnykh, K. V. (2014). Study of the influence of the nutrient medium on changes in biochemical and morphological characteristics of lactobacilli strains. Sovremennye problemy nauki i obrazovaniya, 6. Available at: https://www.science-education.ru/pdf/2014/6/1327.pdf
- Hramtsov, A. G., Makeeva, I. A., Smirnova, I. A. et. al.; Poznyakovskiy, V. M. (Ed.) (2007). Ekspertiza moloka i molochnyh produktov. Kachestvo i bezopasnost'. Novosibirsk: Sib. univ. izd-vo, 477.
- Hramtsov, A. G. (2011). Fenomen molochnoy syvorotki. Sankt-Peterburg: Professiya, 804.
- Walker, G. M. (1994). The Roles of Magnesium in Biotechnology. Critical Reviews in Biotechnology, 14 (4), 311–354. doi: https://doi.org/10.3109/07388559409063643
- Stehlik-Tomas, V., Zetic, V. G., Stanzer, D., Grba, S., Vahcic, N. (2004). Zinc, Copper and Manganese enrichment in yeast Saccharomyces cerevisiae. Food Technology and Biotechnology, 42 (2), 115–120.
- Pironcheva, G. L. (1998). The effect of magnesium ions during beer fermentation. Cytobios, 94 (377), 135–139.
- Góral, M., Kozłowicz, K., Pankiewicz, U., Góral, D. (2018). Magnesium enriched lactic acid bacteria as a carrier for probiotic ice cream production. Food Chemistry, 239, 1151–1159. doi: https://doi.org/10.1016/j.foodchem.2017.07.053
- Spirichev, V. B., Shatnyuk, L. N., Poznyakovskiy, V. M.; Spirichev, V. B. (Ed.) (2005). Obogashchenie pishchevyh produktov vitaminami i mineral'nymi veshchestvami. Nauka i tehnologiya. Novosibirsk: Sib. univer. izd-vo, 548.
- Nanotehnologii v biologii i meditsine (2009). Available at: http://prostonauka.com/nano/soderzhanie
- Serdiuk, A. M., Hulich, M. P., Kaplunenko, V. H., Kosimov, N. V. (2010). Nanotekhnolohiyi mikronutrientiv: pytannia bezpechnosti ta biotychnosti nanomaterialiv pry vyrobnytstvi kharchovykh produktiv. Akademiya medychnykh nauk Ukrainy, 16 (3), 467–471.
- Kosinov, N. V., Kaplunenko, V. H. (2007). Pat. No. 29856 UA. Sposib otrymannia akvakhelativ nanometaliv “eroziyno-vybukhova nanotekhnolohiya otrymannia akvakhelativ nanometaliv”. No. u200711783; declareted: 25.10.2007; published: 25.01.2008, Bul. No. 2.
- Lopat'ko, K. G., Olishevskiy, V. V., Marinin, A. I., Aftandilyants, E. G. (2013). Obrazovanie nanorazmernoy fraktsii metallov pri elektroiskrovoy obrabotke granul. Elektronnaya obrabotka materialov, 49 (6), 80–85.
- Tkachenko, S. V. (2015). Peredumovy vykorystannia preparativ z tverdoiu fazoiu v nanorozmirnomu stani u yakosti katalizatoriv protsesiv kharchovykh vyrobnytstv. Prodovolchi resursy. Seriya: Tekhnichni nauky, 4, 18–22.
- Ukrainets, A., Kochubei-Lytvynenko, O., Bilyk, O., Zakharevych, V., Vasylchenko, T. (2016). A study of the effect of enriched whey powder on the quality of a special-purpose bread. Eastern-European Journal of Enterprise Technologies, 2 (11 (80)), 32–41. doi: https://doi.org/10.15587/1729-4061.2016.65778
- SHulyak, T. L. (2006). Vliyanie fiziko-himicheskih pokazateley molochnoy syvorotki na kislotoobrazuyushchuyu aktivnost' molochnokislyh bakteriy. Izvestiya vysshih uchebnyh zavedeniy. Pishchevaya tehnologiya, 4, 32–33.
- Smirnova, I. A. (2001). Issledovanie zakonomernostey formirovaniya syrov s termokislotnoy koagulyatsiey. Kemerovo: KemTIPP, 112.
- Kochubei-Lytvynenko, О. (2018). The effect of electrical discharge treatment of milk whey on partial conversion of lactose into lactobionic acid. Food Science and Technology, 12 (3). doi: https://doi.org/10.15673/fst.v12i3.1035
- Hrehirchak, N. M. (2009). Mikrobiolohiya kharchovykh vyrobnytstv. Laboratornyi praktykum. Kyiv: NUKhT, 302.
- Walker, G. M. (1998). Magnesium as a Stress-Protectant for Industrial Strains of Saccharomyces Cerevisiae. Journal of the American Society of Brewing Chemists, 56 (3), 109–113. doi: https://doi.org/10.1094/asbcj-56-0109
- Birch, R. M., Ciani, M., Walker, G. M. (2003). Magnesium, Calcium and Fermentative Metabolism in Wine Yeasts. Journal of Wine Research, 14 (1), 3–15. doi: https://doi.org/10.1080/0957126032000114973
- Gorbatova, K. K. (2001). Biohimiya moloka i molochnih produktov. Sankt-Peterburg: GIORD, 320.
- Bologa, M. K., Vrabne, E. G., Stepurina, T. G. (2013). Osobennosti mineralizatsii belkovyh kontsentratov pri elektrofizicheskoy obrabotke molochnoy syvorotki. Elektronnaya obrabotka materialov, 49 (6), 61–65.
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