Asres Yisgedu, Hymete Ariaya, Admassu Habtamu, Ayalew Amare
Department of Chemical Engineering Addis Ababa Science and Technology University Addis Ababa Ethiopia.
Department of Food Engineering Debre Birhan University Debre Birhan Ethiopia.
Food Sci Nutr. 2025 Jul 13;13(7):e70604. doi: 10.1002/fsn3.70604. eCollection 2025 Jul.
The process of microencapsulation is used to coat essential oils that are vulnerable to oxidation, dampness, UV light, and high temperatures. It serves to shield the active chemicals from the environment while boosting the core material's controlled release, stability, and solubility. This work used spray and freeze-drying procedures to microencapsulate essential oil extracted from () leaves using hydro distillation. The objective of this study was to investigate the impact of gum Arabic as a coating agent on the physicochemical properties of essential oil microcapsules through spray and freeze-drying encapsulation procedures. Water content, surface morphology, solubility, bulk density, tapped density, surface oil, flowability, particle mean diameter, and other physical and chemical properties were examined. The physico-chemical properties of the microencapsulated samples were examined, including their releasing property, functional group identification, thermal property, and storage stability. The features of microcapsules made by spray drying differ greatly from those made by freeze drying. According to the results, spray drying was shown to have a higher encapsulation efficiency (71.05%) than freeze drying (68.89%). The solubility index of spray-dried microcapsules was higher than that of freeze-dried microcapsules. When compared to freeze-dried encapsulated EO, the bulk density of spray-dried encapsulated EO is lower, whereas the tapped density is reversed. Compared to freeze-dried microcapsules, spray-dried microcapsules had a more spherical shape.
微胶囊化过程用于包覆易受氧化、潮湿、紫外线和高温影响的精油。它有助于保护活性化学物质免受环境影响,同时提高核心材料的控释性、稳定性和溶解性。这项工作采用喷雾干燥和冷冻干燥工艺,对通过水蒸馏法从()叶中提取的精油进行微胶囊化。本研究的目的是通过喷雾干燥和冷冻干燥包封工艺,研究阿拉伯胶作为包衣剂对精油微胶囊理化性质的影响。检测了水分含量、表面形态、溶解度、堆密度、振实密度、表面油含量、流动性、颗粒平均直径等物理化学性质。对微胶囊化样品的理化性质进行了检测,包括其释放性能、官能团鉴定、热性能和储存稳定性。喷雾干燥制备的微胶囊的特性与冷冻干燥制备的微胶囊有很大不同。结果表明,喷雾干燥的包封效率(71.05%)高于冷冻干燥(68.89%)。喷雾干燥微胶囊的溶解度指数高于冷冻干燥微胶囊。与冷冻干燥包封的精油相比,喷雾干燥包封的精油堆密度较低,而振实密度则相反。与冷冻干燥微胶囊相比,喷雾干燥微胶囊的形状更接近球形。