Universitat Rovira i Virgili, Departament d'Enginyeria Química, Av. Països Catalans 26, Campus Sescelades, 43007 Tarragona, Spain.
Universitat Rovira i Virgili, Departament d'Enginyeria Química, Av. Països Catalans 26, Campus Sescelades, 43007 Tarragona, Spain.
Food Chem. 2015 Jul 1;178:251-8. doi: 10.1016/j.foodchem.2015.01.093. Epub 2015 Jan 29.
Spray drying of procyanidin-loaded W1/O/W2 emulsions produced by premix membrane emulsification (ME) enabled to produce microcapsules containing procyanidins. The interface of the emulsion droplets prior to spray drying was stabilized with several hydrophilic emulsifiers (whey protein (WPI), WPI-carboxylmethyl cellulose, WPI-gum Arabic, and WPI-chitosan). Their effect on procyanidin encapsulation efficiency, water activity, moisture and oil content, and microcapsule size distribution was investigated. Furthermore, the microstructure and droplet size distribution of redispersed microcapsules were analyzed. Although premix ME produced W1/O/W2 emulsions with a narrow droplet size distribution regardless the hydrophilic emulsifier (main peak of droplet size distribution around 9 μm), microcapsules after spray drying and double emulsions after redispersion showed profound differences in sizes depending on the interfacial composition. WPI-CMC stabilized microcapsules not only showed the highest procyanidin content (5.3 g kg(-1)) but also gave the narrowest particle size distribution with the lowest particle size for both microcapsules and the corresponding emulsions after rehydration (7.7 and 9.9 μm respectively).
采用预混膜乳化(ME)制备原花青素负载 W1/O/W2 乳液,喷雾干燥可制得含有原花青素的微胶囊。在喷雾干燥之前,乳液液滴的界面用几种亲水性乳化剂(乳清蛋白(WPI)、WPI-羧甲基纤维素、WPI-阿拉伯胶和 WPI-壳聚糖)稳定。研究了它们对原花青素包封效率、水分活度、水分和油含量以及微胶囊粒径分布的影响。此外,还分析了再分散微胶囊的微观结构和液滴粒径分布。尽管预混 ME 制备的 W1/O/W2 乳液具有较窄的粒径分布(无论亲水性乳化剂如何,粒径分布的主要峰均在 9 μm 左右),但喷雾干燥后的微胶囊和再分散后的双乳液在粒径上存在显著差异,这取决于界面组成。WPI-CMC 稳定的微胶囊不仅表现出最高的原花青素含量(5.3 g kg-1),而且再水合后微胶囊和相应乳液的粒径分布最窄,粒径最小(分别为 7.7 和 9.9 μm)。