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Using CFD to estimate external mass transfer coefficients and intra-particle diffusional effects on the supercritical hydrogenation of sunflower oil

机译:利用CFD估算外向传质系数和颗粒内扩散效应对葵花籽油超临界氢化的影响

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摘要

Hydrogenation of vegetable oils is an important process in the food industry\udbecause of its widespread application to produce margarines, shortenings, and other\udfood components. Supercritical technology has proven to be a reliable alternative to\udconventional hydrogenation process because not only the trans isomer levels can be\udreduced, but also offers a clean, economic and environmental friendly process.\udComputational Fluid Dynamics (CFD) modeling applied to the supercritical hydrogenation reaction can be useful in visualizing and understanding the mass transfer phenomena involved. CFD is applied to the study of the catalytic hydrogenation of sunflower oil in the presence of a supercritical solvent. A mix of sunflower oil, hydrogen and supercritical propane (used as a solvent) is the flowing fluid. Their transport properties at high pressure are incorporated within a CFD commercial code in order to estimate them online within the simulation process. A 2D CFD model of a single Pd-based catalyst pellet is presented. Intra-particle and surface concentration profiles and surface mass fluxes for all species present in the mixture (oil triglycerides and hydrogen) are obtained and compared against experimental results. Different temperatures, flow velocities and particle sizes are studied and external and internal\udmass transfer phenomena are analyzed. External mass transfer coefficients for hydrogen and oil triglycerides are obtained and a correlation for estimating them is presented.
机译:植物油的氢化是食品工业中的重要过程,因为它已被广泛用于生产人造黄油,起酥油和其他\ udfood组分。由于超临界技术不仅可以降低\反式异构体的含量,而且可以提供清洁,经济和环境友好的工艺,因此已被证明是\常规氢化方法的可靠替代品。\ ud应用于超临界的计算流体动力学(CFD)建模氢化反应可用于可视化和理解所涉及的传质现象。 CFD用于研究超临界溶剂存在下葵花籽油的催化加氢。向日葵油,氢气和超临界丙烷(用作溶剂)的混合物是流动的流体。它们在高压下的传输特性已包含在CFD商业代码中,以便在模拟过程中在线估算它们。提出了单个Pd基催化剂颗粒的二维CFD模型。获得混合物中存在的所有物质(甘油三酸酯和氢)的颗粒内和表面浓度分布以及表面质量通量,并将其与实验结果进行比较。研究了不同的温度,流速和粒径,并分析了内部和外部\质量转移现象。获得了氢和油甘油三酸酯的外部传质系数,并给出了估算它们的相关性。

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