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The influence of sea buckthorn pomace powder on the chemical and microbiological stability of glazed cheese during storage

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dc.contributor.author DIANU, Irina
dc.contributor.author CUȘMENCO, Tatiana
dc.contributor.author MACARI, Artur
dc.contributor.author BAERLE, Alexei
dc.contributor.author SANDU, Iuliana
dc.contributor.author NETREBA, Natalia
dc.date.accessioned 2026-09-14T07:26:22Z
dc.date.available 2026-09-14T07:26:22Z
dc.date.issued 2026
dc.identifier.citation DIANU, Irina; Tatiana CUȘMENCO; Artur MACARI; Alexei BAERLE; Iuliana SANDU and Natalia NETREBA. The influence of sea buckthorn pomace powder on the chemical and microbiological stability of glazed cheese during storage. In: The 21th International Conference of Constructive Design and Technological Optimization in Machine Building Field: Conference Proceedings Abstracts. OPROTEH 2026, Bacău, România, 20-22 may, 2026. Bacău: Alma Mater, 2026, p. 140. ISSN 2457-3388. en_US
dc.identifier.issn 2457-3388
dc.identifier.uri https://repository.utm.md/handle/5014/37100
dc.description.abstract Glazed cheese, a lipid- and moisture-rich fresh dairy dessert, is highly susceptible to oxidative deterioration and physicochemical changes during refrigerated storage. Extending shelf life while avoiding synthetic additives remains a major challenge, prompting interest in natural, bioactive-rich ingredients. Sea buckthorn (Hippophae rhamnoides L.) pomace, a by-product of cold-pressing, is rich in tocopherols, carotenoids, polyunsaturated fatty acids, and phenolic compounds, offering significant antioxidant potential for stabilizing lipid-containing dairy systems. This study evaluated the effect of sea buckthorn pomace (SBP) at incorporation levels of 1.25%, 2.50%, 3.75%, and 5.00% (w/w) on the physicochemical properties of glazed curd cheese during 12 days of refrigerated storage, compared to a control sample (CS). The parameters analyzed included pH, peroxide index (PI), titratable acidity, water activity (aw), and microbiological stability. The pH values showed minor variations, ranging initially from 4.56 (CS) to 4.61 (SBP 5.00%) and decreasing slightly by day 12 (4.52-4.57), reflecting typical residual biochemical processes. The peroxide index exhibited the most significant differences: on day 1, the CS recorded 4.38 meq O₂/kg, while SBP-enriched samples showed markedly lower values (2.31-2.42 meq O₂/kg), corresponding to an approximate 46% reduction. This enhanced oxidative stability persisted throughout storage. Titratable acidity increased moderately in all samples, with the most balanced evolution observed at 2.50% SBP. Water activity values were similar at the beginning (0.771-0.773) but remained slightly higher in enriched samples at the end of storage (0.767-0.769 vs. 0.762 in CS), likely due to the waterbinding capacity of pomace components. Microbiological analysis confirmed product safety, with acceptable yeast counts and absence of moulds, coliforms, and Salmonella spp. In conclusion, SBP incorporation, particularly at 2.50%, significantly enhances the oxidative stability of glazed curd cheese without adversely affecting its physicochemical or microbiological quality. The use of sea buckthorn pomace represents a sustainable approach aligned with circular bioeconomy principles and offers promising potential for application in dairy product development. en_US
dc.language.iso en en_US
dc.publisher “Vasile Alecsandri” University of Bacau en_US
dc.rights Attribution-NonCommercial-NoDerivs 3.0 United States *
dc.rights.uri http://creativecommons.org/licenses/by-nc-nd/3.0/us/ *
dc.subject milk products en_US
dc.subject Hippophae rhamnoides en_US
dc.subject pomace en_US
dc.subject keeping quality en_US
dc.subject produse lactate en_US
dc.subject capacitate de păstrare en_US
dc.subject siguranța alimentelor en_US
dc.title The influence of sea buckthorn pomace powder on the chemical and microbiological stability of glazed cheese during storage en_US
dc.type Article en_US


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