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Cumene Hydroperoxide Hydrogenation on a Pd/Al2O3 Catalyst in a Trickle Bed Reactor -Kinetics of Hydrogenation and Deactivation

机译:ckle流床反应器中Pd / Al2O3催化剂上的异丙苯加氢过氧化-加氢和失活动力学

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摘要

Liquid-phase hydrogenation using a Pd/Al2O3 catalyst provides a potential technique for the reduction of cumene hydroperoxide (CHP) to α-cumyl alcohol (CA). In this paper, CHP hydrogenation was carried out in a cocurrent downflow trickle-bed reactor over a wide range of reaction conditions to study the reaction and deactivation kinetics. The proposed intrinsic rate expression for CHP hydrogenation is based on an Eley-Rideal mechanism that accounts for an irreversible surface reaction between the absorbed CHP with nonabsorbed hydrogen molecules. During CHP hydrogenation, an exponential decay in activity of the Pd/ Al2O3 catalyst and the presence of residual activity were observed. A kinetic deactivation model with residual activity was developed. Based on reaction and deactivation kinetics, catalyst deactivation was attributed to oxidation of the catalyst surface by CHP. The presence of residual activity was due to the partial reduction of oxidized catalyst surface by hydrogen.
机译:使用Pd / Al2O3催化剂进行液相加氢提供了将氢过氧化枯烯(CHP)还原为α-枯基醇(CA)的潜在技术。在本文中,在顺流下行滴流床反应器中,在较宽的反应条件下进行了CHP加氢,以研究反应和失活动力学。提议的CHP加氢固有速率表达式基于Eley-Rideal机制,该机制解释了吸收的CHP与未吸收的氢分子之间不可逆的表面反应。在CHP加氢过程中,观察到Pd / Al2O3催化剂的活性呈指数下降,并且残留活性存在。建立了具有剩余活性的动力学失活模型。基于反应和失活动力学,催化剂失活归因于CHP对催化剂表面的氧化。残留活性的存​​在是由于氢部分氧化了催化剂表面。

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