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Selective hydrogenation in trickle-bed reactor. Experimental and modelling including partial wetting.

机译:在滴流床反应器中进行选择性加氢。实验和建模,包括部分润湿。

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摘要

A steady state model of a trickle bed reactor is developed for the consecutive hydrogenation of 1,5,9-cyclododecatriene on a Pd/Al2O3 catalyst. Various experiments have shown that the selectivity of this reaction towards the product of interest is much lower in co-current down-flow (trickle-bed) than in up-flow. This is due to uneven liquid distribution and to partial wetting of the catalyst surface at low liquid flow rates. The non-isothermal heterogeneous model proposed here takes into account the partial wetting of the catalyst, as well as the resistances to heat and mass transfer at the gas-liquid, liquid-solid and solid-gas interfaces. It assumes that the catalyst particles can be divided into two distinct concentration zones corresponding to the wetted and dry catalyst surfaces; mass transfer between these two zones is described by a simplified diffusion mechanism. Compared to previous models assuming a uniform concentration of liquid-phase components inside the catalyst particles, this model improves the prediction of the outlet concentrations of hydrogenation products.
机译:建立了滴流床反应器的稳态模型,用于在Pd / Al2O3催化剂上连续氢化1,5,9-环十二碳三烯。各种实验表明,在顺流向下流动(滴流床)中,该反应对目标产物的选择性比在向上流动中的选择性低得多。这是由于液体分布不均匀以及在低液体流速下催化剂表面的部分润湿所致。这里提出的非等温非均质模型考虑了催化剂的部分润湿,以及在气-液,液-固和固-气界面处的传热和传质阻力。假设可以将催化剂颗粒分为两个不同的浓度区域,分别对应于湿润和干燥的催化剂表面。这两个区域之间的传质由简化的扩散机制描述。与假定催化剂颗粒内液相组分浓度均匀的先前模型相比,该模型改进了对氢化产物出口浓度的预测。

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