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喷雾干燥法用改性淀粉包埋中链甘油三酯和 D-柠檬烯的高油负荷混合物。

High-oil-load encapsulation of medium-chain triglycerides and D-limonene mixture in modified starch by spray drying.

机构信息

Dept of Chemistry and Biotechnology, Faculty of Engineering, Tottori Univ, 4-101 Koyama-minami, Tottori 680-8552, Japan.

出版信息

J Food Sci. 2012 Feb;77(2):E38-44. doi: 10.1111/j.1750-3841.2011.02534.x. Epub 2012 Jan 17.

Abstract

UNLABELLED

Oil mixtures of medium-chain triglycerides (MCT) and D-limonene in mixing ratios from 10 to 100 wt% were encapsulated in modified starch (wall material) by spray drying to produce oil-rich powders. The oil load (mass ratio of oil mixture to wall material) of the infeed emulsion markedly influenced the properties of the infeed liquid and the characteristics of the resulting powder. The viscosity of the infeed liquid and the particle size of the powder exponentially decreased with increasing oil load, while the emulsion droplet size in the infeed liquid increased. In addition, retention of D-limonene during spray drying also decreased markedly with increasing oil load. Irrespective of the different oil loads and concentrations of the wall material, D-limonene retention was well correlated with the emulsion droplet diameter of the infeed liquid. The encapsulation efficiency of the oil mixture exhibited a maximum value (almost 100%) at an oil load between 0.5 and 1.0, before decreasing at higher oil loads. At an oil load of 2.0, the encapsulation efficiency of D-limonene was reduced to almost zero, while around 40% of the initial MCT was encapsulated in the powder. The increase in oil load also led to increased amounts of surface oil of MCT and D-limonene in the resulting powder due to the increasing emulsion droplet diameter of the infeed liquids.

PRACTICAL APPLICATION

This study proposes the microencapsulation of medium-chain triglycerides under high-oil-load conditions by spray drying. The powders prepared by this process provide significant benefits in terms of rapid energy conversion after consumption without accumulation in the body. Important quality factors of the powder products such as the encapsulation efficiency and the amount of surface oil were examined to understand the optimum process conditions for spray drying.

摘要

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将中链甘油三酯(MCT)和 D-柠檬烯的油混合物以 10 至 100wt%的混合比例包封在改性淀粉(壁材)中,通过喷雾干燥生产富含油的粉末。进料乳液的油负载量(油混合物与壁材的质量比)显著影响进料液体的性质和所得粉末的特性。进料液体的粘度和粉末的粒径随油负载量的增加呈指数下降,而进料液体中的乳液液滴尺寸增大。此外,喷雾干燥过程中 D-柠檬烯的保留率也随油负载量的增加而显著下降。无论油负载量和壁材浓度如何,D-柠檬烯的保留率与进料液体中的乳液液滴直径都很好地相关。油混合物的包封效率在 0.5 至 1.0 之间的油负载下呈现最大值(几乎为 100%),然后在更高的油负载下降低。在油负载为 2.0 时,D-柠檬烯的包封效率降低到几乎为零,而初始 MCT 的约 40%被包封在粉末中。油负载的增加也导致进料液体中乳液液滴直径增大,导致所得粉末中 MCT 和 D-柠檬烯的表面油量增加。

实际应用

本研究提出了在高油负载条件下通过喷雾干燥对中链甘油三酯进行微胶囊化。通过该工艺制备的粉末在消耗后可快速提供能量转换,而不会在体内积累,具有重要的优势。考察了粉末产品的重要质量因素,如包封效率和表面油量,以了解喷雾干燥的最佳工艺条件。

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