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高效装载的水溶性薄荷醇微胶囊的制备研究

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彭姣凤[1] 李建成[1] 李庆廷[1] 杨剑[2]

[1]深圳波顿香料有限公司,深圳518051 [2]深圳职业技术学院应用化学与生物技术学院,深圳518055

中国食品添加剂
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国际标准刊号:ISSN 1006-2513
国内统一刊号:CN 11-3542

摘  要:

以麦芽糊精和麦芽糖作为壁材,以变性淀粉为乳化剂将薄荷醇封存于稳定的玻璃态结构中,采用喷雾干燥法制备了薄荷醇微胶囊。利用原子力显微镜对其形貌进行表征发现薄荷醇微胶囊呈球形,大小在13μm之间,动态光散射法测量出微胶囊的平均粒径为1.75μm。分光光度法对微胶囊的总薄荷醇含量和表面薄荷醇含量进行定量研究,结果表明制备的薄荷醇微胶囊具有高的保留率、包埋率和微胶囊化效率。微胶囊化薄荷醇的水溶性好、稳定性强,使它可以广泛应用于食品、饮料、烟草、保健药品中。[著者文摘]

China Food Additives

栏目信息:

试验研究

分 类 号:

TS202.3

文献标识码:

A

文章编号:

1006-2513(2007)05-0094-05

相关文章:

参考文献(8篇) 耦合文献(14篇)  主题相关

[参考文献]

Research on preparation of water- soluble menthol microencapsules with high encapsulation efficiency

PENG Jiao-feng, LI Jian-cheng, LI Qing-ting, YANG Jian ( 1. Shenzhen Boton Flavor and Fragrances Co. , LTD. Shenzhen 518051 ; 2. School of Applied Chemistry and Biological Technology, Shenzhen Polytechnic, Shenzhen 518055)

Abstract:

Modified starch CAPSUL was selected as an emulsifier and menthol was encapusulated in glassy carbohydrate matrix having maltodextrin and maltose. The yielded emulsion was spray-dried to give menthol microencapsule powder. The morphological characterization by atom force microscope (AFM) showed that menthol microencapsule was spherical and the size was between lm and 3m. The average diameter of menthol microencapsule was about 1.75m measured by the dynamic light scattering. The menthol content of microencapsule was tested by distillation and spectrophotometry. The experimental results showed that the menthol microencapsule had good retaing ability, high encapsulation efficiency and microencapsulating efficiency. The dissolution and stability of menthol were greatly enhanced after it was microencapsulated. So the microencapsulated menthol could be applied broadly in the fields of food, beverage, tobacco and drug and markedly prolonged their shelflife.[著者文摘]

Key words:

menthol; microencapsule; encapsulation efficiency; stability; spray-drying

收稿日期: 2007-08-07

基金资助:

深圳市重点科研项目基金资助(No.05KJba054).

作者简介:

彭姣凤,博士,香料工程师,主要从事香精香料微胶囊化研究。

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