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超声传质增强式超临界溶液快速膨胀技术制备类胡萝卜素超细微粒
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作者 杨泽慧 王家荣 +2 位作者 高浩其 周国权 邵丹凤 《精细化工》 EI CAS CSCD 北大核心 2009年第12期1181-1184,1244,共5页
类胡萝卜素的低溶解性和在肌体中较低的生物利用度限制了其商业应用,微粒化是解决这些问题的有效途径。普通超临界微粒化技术受到类胡萝卜素低溶解性的限制,难以产业化。综述了超临界溶液快速膨胀微粒化技术的研究进展,建议将超声波应... 类胡萝卜素的低溶解性和在肌体中较低的生物利用度限制了其商业应用,微粒化是解决这些问题的有效途径。普通超临界微粒化技术受到类胡萝卜素低溶解性的限制,难以产业化。综述了超临界溶液快速膨胀微粒化技术的研究进展,建议将超声波应用于超临界微粒化技术领域,提出了超声传质增强式超临界溶液快速膨胀技术概念,设计研制出超声传质增强式超临界微粒化装置和喷嘴,对于低溶解性和对氧化高敏感性的药物制剂化有重要的工业应用价值。 展开更多
关键词 超声强化传质 超临界溶液快速膨胀技术 类胡萝卜素微粒化 粒径控制 中药现代化技术
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Mass transfer enhancement for LiBr solution using ultrasonic wave 被引量:1
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作者 韩晓东 张仕伟 +2 位作者 汤勇 袁伟 李斌 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第2期405-412,共8页
The methods were studied to improve the cooling performance of the absorption refrigeration system(ARS) driven by low-grade solar energy with ultrasonic wave, while the mechanism of ultrasonic wave strengthening boili... The methods were studied to improve the cooling performance of the absorption refrigeration system(ARS) driven by low-grade solar energy with ultrasonic wave, while the mechanism of ultrasonic wave strengthening boiling mass transfer in LiB r solution was also analyzed with experiment. The experimental results indicate that, under the driving heat source of 60–100 oC and the ultrasonic power of 20–60 W, the mass flux of cryogen water in Li Br solution is higher after the application of ultrasonic wave than auxiliary heating with electric rod of the same power, so the ultrasonic application effectively enhances the heat utilization efficiency. The distance H from ultrasonic transducer to vapor/liquid interface significantly affects mass transfer enhancement, so an optimal Hopt corresponding to certain ultrasonic power is beneficial to reaching the best strengthening effect for ultrasonic mass transfer. When the ultrasonic power increases, the mass transfer obviously speeds up in the cryogen water; however, as the power increases to a certain extent, the flux reaches a plateau without obvious increment. Moreover, the ultrasound-enhanced mass transfer technology can reduce the minimum temperature of driving heat source required by ARS and promote the application of solar energy during absorption refrigeration. 展开更多
关键词 mass transfer enhancement LiBr solution ultrasonic wave solar absorption refrigeration system
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