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Supercritical CO2 impregnation of silica microparticles with quercetin

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URI: http://hdl.handle.net/10498/35075

DOI: 10.1016/J.SUPFLU.2018.07.019

ISSN: 0896-8446

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Author/s
García Casas, IgnacioAuthority UCA; Crampon, Christelle; Montes Herrera, AntonioAuthority UCA; Pereyra López, Clara MaríaAuthority UCA; Martínez de la Ossa Fernández, Enrique JoséAuthority UCA; Badens, Elisabeth
Date
2019-01
Department
Ingeniería Química y Tecnología de Alimentos
Source
Journal of Supercritical Fluids, Vol. 143, 2019, pp. 157-161
Abstract
Supercritical carbon dioxide has been used to develop two methods for the impregnation of porous silica beads with a natural antioxidant, quercetin. These methods involved batch and semi-continuous supercritical impregnations. The first experiments performed in batch mode helped to understand the influence of pressure, temperature, duration, and the presence of a co-solvent on the impregnation efficiency. A co-solvent was added due to the low solubility of quercetin in supercritical CO2 under the operating conditions studied. In the range of temperatures and pressures studied, the best operating conditions, i.e., those that led to the highest quantity of quercetin impregnated (300 �����g of quercetin per g of silica), were 10 MPa and 323 K with ethanol as co-solvent for 2 hours. These operating conditions, highlighted through the batch mode experiments, were subsequently applied to the semi-continuous process. This approach provided an impregnation ratio of 240 ug of quercetin per g of silica
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This work is under a Creative Commons License Attribution-NonCommercial-NoDerivatives 4.0 Internacional

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