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Study on microencapsulation of lycopene by spray-drying

机译:喷雾干燥番茄红素的微囊化研究

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Lycopene microcapsules were prepared by a spray-drying method using a wall system consisting of gelatin and sucrose. The effects of technological parameters including the ratio of core and wall materials, ratio of gelatin and sucrose, homogenization pressure, inlet temperature, feed temperature, and lycopene purity on encapsulation yield (EY), encapsulation efficiency (EE) were investigated. The resulting microcapsules were characterized in terms of lycopene isomerization, storage stability, PS, PSD, and outer and inner structures. Results showed that EY and EE were significantly affected by the ratio of core and wall materials, ratio of gelatin and sucrose, homogenization pressure, inlet temperature, feed temperature, and lycopene purity. The optimal condition was determined as follows: the ratio of gelatin/sucrose of 3/7 and the ratio of core and wall material of 1/4, feed temperature of 55℃, inlet temperature of 190℃, homogenization pressure of 40 MPa, and lycopene purity of not less than 52%, at which the microencapsu-lated lycopene showed some isomerization, but a good storage stability. SEM and XRD analysis showed that lycopene microcapsules had a regular spherical shape with a PSD of 2-15 μm, mean PS of 5 μm, smooth outer surface, "bee net"-like interior structure, and lycopene was embedded in the wall system consisting of gelatin and sucrose. This study would be helpful to the industrial application of lycopene.
机译:通过使用由明胶和蔗糖组成的壁系统的喷雾干燥法制备番茄红素微胶囊。研究了工艺参数,包括核与壁材料的比率,明胶与蔗糖的比率,均质压力,入口温度,进料温度和番茄红素纯度对包封率(EY),包封效率(EE)的影响。根据番茄红素异构化,储存稳定性,PS,PSD以及外部和内部结构对所得的微胶囊进行了表征。结果表明,EY和EE受芯和壁材料的比例,明胶和蔗糖的比例,均质压力,入口温度,进料温度和番茄红素纯度的影响很大。确定最佳条件如下:明胶/蔗糖比为3/7,芯和壁材料比为1/4,进料温度为55℃,入口温度为190℃,均质压力为40 MPa,并且番茄红素的纯度不低于52%,此时微囊化番茄红素表现出一些异构化,但具有良好的储存稳定性。 SEM和XRD分析表明,番茄红素微囊具有规则的球形形状,PSD为2-15μm,平均PS为5μm,外表面光滑,呈“蜂网”状内部结构,番茄红素被包埋在由明胶和蔗糖。这项研究将有助于番茄红素的工业应用。

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