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Analysis of the effect of hydrodynamics over the activity and selectivity of the oxidative dehydrogenation of propane process in a packed bed reactor through CFD techniques

机译:通过CFD技术分析丙烷丙烷丙烷加工丙烷工艺氧化脱氢活性和选择性的影响

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摘要

A study of the effect of hydrodynamics on the activity and selectivity of the oxidative dehydrogenation of propane (ODHP) of a non-isothermal Packed Bed Reactor (PBR) was implemented. 2D and 3D CFD models were employed, considering the mass, energy and momentum transport, and a 5-step oxidation Eley-Rideal kinetic model. The effect of the inclusion of porosity function was also carried out in order to capture non-homogeneities in the radial void fraction distribution on the predictive quality. The CFD model was validated against experimental and theoretical data reported in the literature. The validated model was used to perform a parametric sweep in order to determine the process inlet temperature which maximizes the conversion, selectivity and yield. The CFD model that considers the multiphysics in the ODHP led to an increase from 30% to 33% and from 20% to 24% in the conversion and the selectivity, respectively, which represents an increase of 22% and 20% with respect to the plug flow model. The 3D model exhibited a higher activity and reactivity respect to the plug flow model, similar to that reported for the membrane reactor. This reveals that incorporating hydrodynamics in all coordinates, results similar to dose one reactant, which emphasize the low predictive quality by using the plug flow model.
机译:实施了流体动力学对非等温填充床反应器(PBR)丙烷(ODHP)氧化脱氢活性和选择性的研究。考虑到质量,能量和动量运输和5步氧化eley-rideal动力学模型,采用了2D和3D CFD模型。还进行了包含孔隙函数的效果,以捕获在预测质量上的径向空隙分数分布中的非均匀性。 CFD模型验证了文献中报道的实验和理论数据。经过验证的模型用于执行参数扫描,以便确定最大化转换,选择性和产量的过程入口温度。考虑ODHP中多麦草的CFD模型导致转换和选择性增加到30%至33%,从20%到24%,这相对于达到的选择性增加22%和20%。插头流模型。 3D模型表现出更高的活性和反应性与塞流模型相似,类似于膜反应器报道的活动。这表明,在所有坐标中掺入流体动力学,与剂量一个反应物相似的结果,通过使用插头流模型强调低预测质量。

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