首页> 外文期刊>Journal of food engineering >Process engineering parameters and type of n-octenylsuccinate-derivatised starch affect oxidative stability of microencapsulated long chain polyunsaturated fatty acids
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Process engineering parameters and type of n-octenylsuccinate-derivatised starch affect oxidative stability of microencapsulated long chain polyunsaturated fatty acids

机译:工艺参数和正辛烯基琥珀酸酯衍生淀粉的类型影响微囊化长链多不饱和脂肪酸的氧化稳定性

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摘要

Aim of the present study was to investigate the impact of the emulsifying carrier matrix constituent, n-octenylsuccinate-derivatised (OSA)-starch, and process conditions on physical characteristics and oxidative stability of microencapsulated fish oil. Furthermore, the effect of the drying medium, i.e. air or nitrogen, on lipid oxidation during spray-drying and subsequent storage was investigated. Particle characteristics and lipid oxidation of microencapsulated fish oil were both influenced by the type of OSA-starch and the drying conditions. The highest oxidative stability was observed for fish oil microencapsulated in OSA-starch with the lowest average molecular weight and glucose syrup spray-dried at a moderate temperature setting. Particle characteristics of the microcapsules were not attributable for differences in lipid oxidation during storage. In spray-dried carrier matrix particles, the particle size increased with increasing average molecular weight of the OSA-starch and was attributed to an increase in air inclusion. Thus differences in lipid oxidation of the microencapsulated fish oil were attributed to differences in air inclusion as affected by the type of OSA-starch. In terms of spray-drying under inert conditions and in the presence of air, lipid oxidation of microencapsulated fish oil was rather attributed to oxygen availability in the feed emulsion than in the drying gas.
机译:本研究的目的是研究乳化载体基质成分,衍生自正辛烯基琥珀酸酯(OSA)的淀粉以及工艺条件对微囊化鱼油的物理特性和氧化稳定性的影响。此外,研究了干燥介质,即空气或氮气,对喷雾干燥和随后储存期间脂质氧化的影响。微囊化鱼油的颗粒特性和脂质氧化都受OSA淀粉类型和干燥条件的影响。微囊化在OSA淀粉中的鱼油具有最高的氧化稳定性,其平均分子量最低,而糖浆则在中等温度下喷雾干燥。微胶囊的颗粒特性不能归因于储存过程中脂质氧化的差异。在喷雾干燥的载体基质颗粒中,粒径随着OSA淀粉平均分子量的增加而增加,并且归因于空气夹杂物的增加。因此,微囊化鱼油脂质氧化的差异归因于受OSA淀粉类型影响的空气夹杂物差异。就在惰性条件下和在空气存在下的喷雾干燥而言,微囊化鱼油的脂质氧化主要归因于进料乳液中的氧气可用性,而不是干燥气体中的氧气可用性。

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