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首页> 外文期刊>Journal of the American Oil Chemists' Society >New Analytical Evidence of Discontinuous Oxidation in Dried Microencapsulated Lipids
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New Analytical Evidence of Discontinuous Oxidation in Dried Microencapsulated Lipids

机译:干燥微囊脂质中不连续氧化的新分析证据

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摘要

Formation of hydroperoxy-, keto- and hydroxy-dienes was studied at 40 A degrees C in fatty acid methyl esters (FAME) microencapsulated in a dairy-like matrix formed by lactose and sodium caseinate. The FAME were obtained from conventional sunflower oil and the microcapsules were prepared by freeze-drying of an oil-in-water emulsion. For comparative purposes a neat sample of FAME was also tested. Results showed that for a given content of hydroperoxydienes much more elevated amounts of secondary products were detected in the microencapsulated sample compared to the neat sample of FAME. The contents of keto- and hydroxy-dienes found in the microencapsulated FAME ranged as a whole between 6 and 31 wt% of the analyzed compounds, while the neat sample showed values lower than 1.5 %. Along with the fact that relatively higher contents of polymers were also found in the encapsulated sample, these results can be attributed to lipid droplets with very different oxidation states. On the one hand, the extract would be formed from droplets in early stages of oxidation containing hydroperoxides and very low contents of secondary products and, on the other, from droplets in advanced stages with decreased hydroperoxides and substantial contents of secondary products. Unlike the neat sample, hydroxy-dienes formed with significantly higher amounts than keto-dienes in the microencapsulated FAME, suggesting a possible chemical role of the encapsulation matrix.
机译:在40 A的温度下,研究了在脂肪酸甲酯(FAME)中微囊化由乳糖和酪蛋白酸钠形成的乳制品状基质中氢过氧化物,酮基和羟基二烯的形成。从传统的葵花籽油中获得FAME,并通过冷冻干燥水包油型乳剂制备微囊。为了进行比较,还测试了FAME的纯净样品。结果表明,与纯FAME样品相比,对于给定含量的氢过氧化二烯,在微囊化样品中检测到更多的副产物。在微囊化的FAME中发现的酮基和羟基二烯含量总体上介于所分析化合物的6%至31 wt%之间,而纯净样品的值低于1.5%。除了在封装样品中还发现相对较高含量的聚合物这一事实外,这些结果还可以归因于具有非常不同的氧化态的脂滴。一方面,提取物将从含氢过氧化物且副产物含量极低的氧化初期液滴形成,另一方面,由氢过氧化物含量降低且副产物含量较高的晚期液滴形成。与纯净样品不同,在微囊化的FAME中形成的羟基二烯的含量明显高于酮二烯,这表明包封基质可能具有化学作用。

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