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Supercritical Antisolvent Precipitation of Microparticles of Quercetin 被引量:5
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作者 刘学武 李志义 +1 位作者 韩冰 苑塔亮 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2005年第1期128-130,共3页
Supercritical antisolvent (SAS) process is a recently developed technology to produce micro- and nano particles. This paper presents a continuous apparatus to conduct experiment of SAS process. With the apparatus, the... Supercritical antisolvent (SAS) process is a recently developed technology to produce micro- and nano particles. This paper presents a continuous apparatus to conduct experiment of SAS process. With the apparatus, the effects of pressure, temperature and flow ratio of CO2 to the solution on the shape and size of particles are studied for the quercetin-ethanol-CO2 system. Spherical quercetin microparticles with diameters ranging form 1 μm to 6μm can be obtained while ethanol is used as organic solvent. The most effective fact on the shape and size of particles is pressure, the next is temperature and the last is the flow ratio of CO2 to solution. 展开更多
关键词 supercritical antisolvent process MICROPARTICLES QUERCETIN
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Study of the Liquid Phase Volume Expansion for CO_2/Organic Solvent Systems 被引量:1
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作者 LI Zhiyi(李志义) +7 位作者 XIA Yuanjing(夏远景) LIU Xuewu(刘学武) DENG Xiaoliang(邓小亮) Hu Dapeng(胡大鹏) 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2005年第4期504-509,共6页
The supercritical antisolvent (SAS) process has been developed in recent years for the tormation of nanoand micro-particles. It is necessary to study the liquid phase volume expansion (LPVE) and find the relations... The supercritical antisolvent (SAS) process has been developed in recent years for the tormation of nanoand micro-particles. It is necessary to study the liquid phase volume expansion (LPVE) and find the relationships between the operating conditions and the LPVE in order to develop a practical method for determining the operation conditions and selecting an organic solvent for SAS process. The PR equation of state with vdW-1 mixing rule is used to calculate the LPVE for CO2/toluene, CO2/acetone and CO2/ethyl acetate systems, and the results show that the LPVE for each CO2/organic solvent system decreases as the temperature increases. The relationship between the LPVE and the solubility of CO2 in the liquid phase for CO2/organic solvent systems is investigated, and the results show that the LPVE is determined directly by the solubility of CO2 in the liquid phase, xCO2, and can be related to xCO2 independently. No matter what system of CO2/organic solvent is and how different the temperature is, the LPVEs have little difference as long as the solubility of CO2 in the liquid phase, xCO2, keeps constant. The lower temperature is always favorable to the SAS process. The higher the solubility of CO2 in an organic solvent under certain operation condition, the more suitable it is to the SAS process. 展开更多
关键词 supercritical antisolvent process liquid phase volume expansion carbon dioxide organic solvent
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