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Assessing Feasibility of Supercritical Reaction Processes Using Laboratory Equipment

机译:使用实验室设备评估超临界反应过程的可行性

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The primary goal of laboratory supercritical fluid reaction unit testing is to assess the technical feasibility of a potential supercritical fluid reaction application. Initial screening with a Phase Equilibrium Analyzer should be carried out to determine the processing conditions in which the reagents and products of interest solubilize and/or precipitate from the supercritical fluid. Experimentation then moves to the use of a supercritical fluid reaction laboratory unit. The laboratory unit typically has a 50 ml to 4 liter reaction vessel fitted with the appropriate reagent addition modules, mixing, flow meters and sensors. Product samples and data from the feasibility testing are used to assess product quality and to research process variables such as: 1) Preparation and Solubility of Reagents; 2) Reaction Conditions (temperatures, pressures, use of co-solvents to enhance reagent or product solubility); 3) Collection Conditions. The reaction product is analyzed to determine how changes in these parameters affect yield, purity and economics of the proposed process. This information can then be utilized to fine-tune the reaction to maximize key parameters for a commercial scale supercritical fluid reaction process. Examples demonstrating the use of both a laboratory SFR unit and a supercritical fluid.
机译:实验室超临界流体反应单元测试的主要目标是评估潜在超临界流体反应应用的技术可行性。应进行初始筛选,具有相位平衡分析仪的初始筛选,以确定一种加工条件,其中溶解和/或从超临界流体溶解和/或沉淀出来的试剂和沉淀。实验然后移动到使用超临界流体反应实验室单元。实验室单元通常具有50ml至4升反应容器,配备有适当的试剂添加模块,混合,流量计和传感器。可行性测试的产品样本和数据用于评估产品质量和研究过程变量,如:1)试剂的制备和溶解性; 2)反应条件(温度,压力,使用共溶剂以增强试剂或产物溶解度); 3)收集条件。分析反应产物以确定这些参数的变化如何影响所提出的过程的产量,纯度和经济学。然后可以利用该信息来微调反应以最大化商业规模超临界流体反应过程的关键参数。示例证明了使用实验室SFR单元和超临界流体的使用。

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