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Experimental Investigation and CFD Modeling of Supercritical Adsorption Process

机译:超临界吸附过程的实验研究和CFD建模

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摘要

The kinetics of the supercritical adsorption process was experimentally studied by the example of ”ibuprofen-silica aerogel” composition obtainment at various parameters: Pressure 120–200 bar and temperature 40–60 °C. Computational Fluid Dynamics (CFD) model of the supercritical adsorption process in a high-pressure apparatus based on the provisions of continuum mechanics is proposed. Using supercritical adsorption process kinetics experimental data, the dependences of the effective diffusion coefficient of active substance in the aerogel, and the maximum amount of the adsorbed active substance into the aerogel on temperature and pressure are revealed. Adequacy of the proposed model is confirmed. The proposed mathematical model allows predicting the behavior of system (fields of velocity, temperature, pressure, composition, density, etc.) at each point of the studied medium. It makes possible to predict mass transport rate of the active substance inside the porous body depending on the geometry of the apparatus, structure of flow, temperature, and pressure.
机译:通过“布洛芬 - 二氧化硅气凝胶”组合物在各种参数下进行实验研究超临界吸附过程的动力学:压力120-200巴和温度40-60℃。提出了基于连续式力学规定的高压装置中超临界吸附过程的计算流体动力学(CFD)模型。利用超临界吸附过程动力学实验数据,揭示了气凝胶中活性物质的有效扩散系数的依赖性,以及在温度和压力下将吸附活性物质的最大量的吸附活性物质的最大量。确认了所提出的模型的充分性。所提出的数学模型允许在所研究介质的每个点预测系统(速度,温度,压力,组成,密度等)的行为。可以根据装置的几何形状,流动,温度和压力的几何形状来预测多孔体内的活性物质的质量传送速率。

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