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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Effect of temperature, pressure and depressurization rate on release profile of salicylic acid from contact lenses prepared by supercritical carbon dioxide impregnation
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Effect of temperature, pressure and depressurization rate on release profile of salicylic acid from contact lenses prepared by supercritical carbon dioxide impregnation

机译:温度,压力和降压速率对水杨酸超临界二氧化碳浸渍隐形眼镜脱模性能的影响

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摘要

Supercritical CO2 was used for the impregnation of a contact lens with salicylic acid. The supercritical CO2 impregnations were conducted at 308, 313 and 318 K from 9.0 to 15.0 MPa. The effects of the temperatures and pressures in the impregnation processing on the loaded amount of salicylic acid in the contact lenses were investigated. The loaded amounts of salicylic acid increase with the decrease of temperature and increase of pressures. It is found that the loaded amounts of salicylic acid in the lenses are correlated with the solubilities in supercritical CO2. The release profile of the salicylic acid from the contact lenses into the aqueous solution at 310 K for 8 h was studied by the released amounts measured using ultraviolet-visible spectroscopy. The higher temperature and lower pressure in the impregnation processing lead to the slow release rate of salicylic acid from the contact lenses. The release profiles were investigated by changing the depressurization rate from 0.06 to 0.18 MPa min(-1). The lower depressurization rate results in the higher release rate of the salicylic acid from the lenses. The release profile of salicylic acid from the lenses into the aqueous solution is modeled by using kinetic constant and release exponent parameter. The modeled results suggest that the release from the lenses occurred by the superimpositions of Fickian controlled and swelling controlled releases. (C) 2015 The Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:超临界CO 2用于水杨酸浸渍隐形眼镜。在9.0、15.0 MPa的308、313和318 K下进行超临界CO2浸渍。研究了浸渍过程中温度和压力对隐形眼镜中水杨酸负载量的影响。水杨酸的负载量随着温度的降低和压力的增加而增加。发现镜片中水杨酸的负载量与超临界CO 2中的溶解度相关。通过使用紫外-可见光谱法测量的释放量研究了水杨酸在310 K下从隐形眼镜到水溶液中8 h的释放曲线。浸渍过程中的较高温度和较低压力导致水杨酸从隐形眼镜中的缓慢释放速率。通过将减压速率从0.06 MPa min(-1)更改为0.18 MPa,研究了释放曲线。较低的减压速率导致水杨酸从镜片上的释放速率较高。水杨酸从晶状体到水溶液中的释放曲线通过使用动力学常数和释放指数参数进行建模。建模结果表明,晶状体的释放是通过Fickian控制释放和溶胀控制释放的叠加而发生的。 (C)2015化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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