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Probing pore blocking effects on multiphase reactions within porous catalyst particles using a discrete model

机译:使用离散模型探究孔隙阻塞对多孔催化剂颗粒内多相反应的影响

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A discrete model coupling mass transfer, reaction, and phase change in porous catalyst particles is proposed to probe pore blocking effects on multiphase reactions. This discrete model is validated by comparing the results with experiments and those obtained using a continuum model, for the hydrogenation of benzene to cyclohexane in Pd/-alumina catalyst particles. The results show that pore blocking has a significant effect on the effectiveness factor and can contribute to up to 50% of the hysteresis loop area for multiphase reactions in porous catalysts, indicating that pore blocking must be accounted for. Moreover, the pore blocking effects are significantly enhanced when the pore network is poorly connected and the pore-size distribution is wide, while the pore blocking effects are insensitive to the volume-averaged pore size. Multiphase catalyst material characterization and design should account for this effect. (c) 2015 American Institute of Chemical Engineers AIChE J, 62: 451-460, 2016
机译:提出了一个离散模型,该模型耦合了多孔催化剂颗粒中的传质,反应和相变,以探讨多孔阻塞对多相反应的影响。通过与实验结果以及使用连续模型获得的结果进行比较,验证了该离散模型的有效性,该结果用于在Pd /氧化铝催化剂颗粒中将苯氢化为环己烷。结果表明,孔阻塞对有效性因子有显着影响,并且可占多孔催化剂中多相反应的磁滞回线面积的50%,这表明必须考虑孔阻塞。此外,当孔网络连接不良且孔径分布宽时,阻塞效果显着增强,而阻塞效果对体积平均孔径不敏感。多相催化剂材料的表征和设计应考虑到这一影响。 (c)2015年美国化学工程师学会AIChE J,62:451-460,2016

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