首页> 外文期刊>Journal of food engineering >Microencapsulation of refined kenaf (Hibiscus cannabinus L.) seed oil by spray drying using β-cyclodextrin/gum arabic/sodium caseinate
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Microencapsulation of refined kenaf (Hibiscus cannabinus L.) seed oil by spray drying using β-cyclodextrin/gum arabic/sodium caseinate

机译:使用β-环糊精/阿拉伯胶/酪蛋白酸钠喷雾干燥将精制洋麻(Hibiscus cannabinus L.)种子油微囊化

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摘要

This study aimed to evaluate the potential of beta-cyclodextrin combination with different wall materials (gum arabic and sodium caseinate) in the microencapsulation of refined kenaf seed oil by spray drying. Three models of microcapsules were developed, including protein-based (beta-cyclodextrin/sodium caseinate), carbohydrate based (beta-cyclodextrin/gum arabic) and mixed-based (beta-cyclodextrin/gum arabic/sodium easeinate). The characteristics of the obtained microcapsules including moisture content, water activity, wettability, solubility, density, flowability, cohesiveness, bulk porosity, microencapsulation efficiency, particle size, surface morphology, and possible interactions between the oil and wall materials were evaluated. The moisture content and water activity were in the range of 2.7-3.9% and 0.2 to 0.3, respectively, which is suitable for long-term storage. The obtained microcapsules showed a particle size distribution (D[4,3]) of 25.4-37.3 mu m. Scanning electron micrographs of microcapsules showed spherical shapes without any apparent cracking on the surfaces. Fourier transform infrared spectroscopy revealed that the oil was well encapsulated in the microcapsules. The highest microencapsulation efficiency was achieved for the carbohydrate-based microcapsule (95.3%), followed by the protein-based microcapsule (93.1%) and mixed-based microcapsule (90.0%). Three formulations offered high microencapsulation efficiency to encapsulate the refined kenaf seed oil in this study.
机译:这项研究旨在评估β-环糊精与不同壁材料(阿拉伯树胶和酪蛋白酸钠)的组合在通过喷雾干燥精制洋麻籽油的微囊化中的潜力。开发了三种微囊模型,包括基于蛋白质的(β-环糊精/酪蛋白酸钠),基于碳水化合物的(β-环糊精/阿拉伯胶)和基于混合的(β-环糊精/阿拉伯胶/酪氨酸钠)。对获得的微胶囊的特性进行了评估,包括水分含量,水分活度,润湿性,溶解度,密度,流动性,内聚性,本体孔隙率,微囊化效率,粒径,表面形态以及油与壁材料之间可能的相互作用。水分含量和水活度分别在2.7-3.9%和0.2至0.3的范围内,适合长期储存。所获得的微胶囊的粒径分布(D [4,3])为25.4-37.3μm。微胶囊的扫描电子显微照片显示球形,表面上没有任何明显的裂纹。傅立叶变换红外光谱显示该油被很好地封装在微胶囊中。碳水化合物基微胶囊的微囊化效率最高(95.3%),其次是蛋白质基微囊(93.1%)和混合基微囊(90.0%)。在本研究中,三种配方提供了高微囊化效率,以囊化精制的洋麻籽油。

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