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Heterogeneous modeling of a membrane reactor coupling dehydrogenation of ethylbenzene with hydrogenation of nitrobenzene to aniline: Fickian diffusion model

机译:乙苯脱氢与硝基苯加氢制苯胺的膜反应器的非均相建模:Fickian扩散模型

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摘要

Coupling of reactions in catalytic membrane reactors provides a route to process intensification. Dehydrogenation of ethylbenzene and hydrogenation of nitrobenzene form a promising pair of processes to be coupled in a membrane reactor. The heat released from the hydrogenation side is utilized to break the endothermality on the dehydrogenation side, while hydrogen produced on the dehydrogenation side permeates through the hydrogen-selective membranes, enhances the equilibrium conversion of ethylbenzene and reacts with nitrobenzene on the permeate side to produce aniline. Mathematical reactor models are excellent tools to evaluate the extent of improvement before experiments are set up. However, a careful selection of phenomena considered by the reactor model is needed in order to obtain accurate model predictions.To investigate the effect of the intraparticle resistances on the performance of the cocurrent configuration of the coupling reactor, a heterogeneous fixed bed reactor model is developed with Fickian diffusion inside the catalyst pellets. For the condition of interest, the styrene yield is found to be 82% by the homogenous model, 73% by the heterogeneous model for isothermal pellets, and 69% by the heterogeneous model with non-isothermal pellets. Hence, the homogeneous model overestimates the yield by 5 to 15% of their actual values.
机译:催化膜反应器中反应的耦合为工艺强化提供了一条途径。乙苯的脱氢和硝基苯的加氢形成了在膜反应器中偶联的有前途的工艺对。从氢化侧释放的热量被用来破坏脱氢侧的内热,而在脱氢侧产生的氢则通过氢选择性膜渗透,提高了乙苯的平衡转化率,并在渗透侧与硝基苯反应生成苯胺。 。数学反应堆模型是评估在建立实验之前改进程度的出色工具。然而,为了获得准确的模型预测,需要仔细选择反应堆模型所考虑的现象。为了研究颗粒内电阻对偶合反应堆并流构型性能的影响,建立了异质固定床反应堆模型催化剂颗粒内部具有Fickian扩散。对于感兴趣的条件,均质模型的苯乙烯产率为82%,等温颗粒的非均质模型为73%,非等温颗粒的非均质模型为69%。因此,均质模型高估了其实际值的5%至15%。

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