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Microencapsulation of Rosemary Essential Oil by Co-Extrusion/Gelling Using Alginate as a Wall Material 被引量:1
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作者 Celia Dolcà Marcela Ferrándiz +4 位作者 Lucia Capablanca Esther Franco Elena Mira Fernanda López David García 《Journal of Encapsulation and Adsorption Sciences》 2015年第3期121-130,共10页
An essential oil is the volatile lipophilic component extracted from plants. Microencapsulation systems protect the essential oil from degradation and evaporation, and at the same time allow a sustained release. This ... An essential oil is the volatile lipophilic component extracted from plants. Microencapsulation systems protect the essential oil from degradation and evaporation, and at the same time allow a sustained release. This work analyzed and characterized the rosemary essential oil microcapsules prepared by co-extrusion technique using alginate as wall material and calcium chloride as cross linker. Several instrumental techniques were used: optical microscopy, coulter counter, Fourier transform infrared spectroscopy (FTIR), differential scanning calorimetry (DSC), termogravimetric analysis (TGA), spectrophotometry, antimicrobial test and chromatography. Results show that rosemary oil has pesticidal properties, and its microencapsulation allows knowing that these properties remain inside the microcapsules. 展开更多
关键词 Sodium Alginate Rosemary Oil CO-EXTRUSION GELLING FTIR DSC TGA
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Microencapsulation of L-Ascorbic Acid by Spray Drying Using Sodium Alginate as Wall Material
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作者 Ferrándiz Marcela Capablanca Lucía +1 位作者 Franco Esther Mira Elena 《Journal of Encapsulation and Adsorption Sciences》 2016年第1期1-8,共8页
L-ascorbic acid is a water soluble vitamin (vitamin C) widely used as an additive in foods and cosmetics. It has high instability against certain environmental factors;the main cause of its deterioration is oxidation.... L-ascorbic acid is a water soluble vitamin (vitamin C) widely used as an additive in foods and cosmetics. It has high instability against certain environmental factors;the main cause of its deterioration is oxidation. Microencapsulation is an effective protection technique of L-ascorbic acid from its degradation reactions. This work is focused on the encapsulation of L-ascorbic acid by spray drying technique using sodium alginate as wall material. The microcapsules morphology was observed by scanning electron microscopy (SEM) and the encapsulation efficiency was determined by spectrophotometric analysis. Results showed that encapsulation efficiency was of 93.48% and after 30 days was of 92.55%;differences were not significant, so that the stability of L-ascorbic acid was not affected. Encapsulation yields obtained were low, at around 30%, but the microcapsules morphology obtained is spherical. 展开更多
关键词 L-Ascorbic Acid Sodium Alginate Spray Drying MICROENCAPSULATION STABILITY
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