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首页> 外文期刊>The Journal of Supercritical Fluids >A semicontinuous flow apparatus for measuring the solubility of opaque solids in supercritical solutions
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A semicontinuous flow apparatus for measuring the solubility of opaque solids in supercritical solutions

机译:半连续流动装置,用于测量不透明固体在超临界溶液中的溶解度

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摘要

A semi-continuous flow apparatus with microsampling has been developed for measuring the solubilities of solids in supercritical fluids. The apparatus is particularly appropriate for those solids for which only mg-sized quantities are available (e.g. pharmaceuticals) and which form opaque solutions when dissolved in supercritical solvents (e.g. porphyrins and dyes). The method of operation is to first obtain equilibrium in a variable-volume view cell, then use an electronic syringe pump in the constant pressure mode to deliver the contents of the cell through a sample loop at the equilibrium temperature and pressure, and finally to determine solid solubilities by analyzing the contents of the sample loop. Both an error analysis and measurements for the system carbon dioxide (CO_2)+phenanthrene at 35 and 55 ℃ indicate that the method is accurate to better than ±5%. Subsequently, the apparatus was used to determine the solubilities of 5,10,15,20-tetrakis(3,5-bis(trifluoromethyl)phenyl)porphyrin (TBTPP), a novel fluorinated porphyrin synthesized in our laboratories, in supercritical CO_2. Measurements were performed at three different temperatures (40, 70, and 100 °C) and over a pressure range of 103.4–324.1 bar. TBTPP exhibits a wide range of solubilities in CO2 (i.e. from 0.0002 to 2 wt.%) and thus is an appropriate model solute for investigating the effect of concentration on particle size and morphology during rapid expansion processing.
机译:已经开发了具有微量采样的半连续流动装置,用于测量固体在超临界流体中的溶解度。该设备特别适用于那些只有毫克大小的固体(例如药物)并且溶解在超临界溶剂(例如卟啉和染料)中形成不透明溶液的固体。操作方法是:首先在可变体积的观察室中获得平衡,然后在恒定压力模式下使用电子注射泵在平衡温度和压力下通过样品定量环输送细胞的内容物,最后确定通过分析样品定量环的内容来确定固体溶解度。误差分析和在35和55℃下对系统二氧化碳(CO_2)+菲的测量均表明,该方法准确度优于±5%。随后,该设备用于确定在我们的实验室中合成的新型氟化卟啉5,10,15,20-四(3,5-双(三氟甲基)苯基)卟啉(TBTPP)在超临界CO_2中的溶解度。在三个不同的温度(40、70和100°C)和103.4–324.1 bar的压力范围内进行测量。 TBTPP在CO2中显示出广泛的溶解度(即0.0002至2 wt。%),因此是一种合适的模型溶质,可用于研究浓度在快速膨胀过程中对粒径和形态的影响。

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