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首页> 外文期刊>Chemical Engineering Science >Interaction of kinetics and internal diffusion in complex catalytic three-phase reactions: Activity and selectivity in citral hydrogenation
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Interaction of kinetics and internal diffusion in complex catalytic three-phase reactions: Activity and selectivity in citral hydrogenation

机译:复杂催化三相反应中动力学和内部扩散的相互作用:柠檬醛加氢的活性和选择性

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摘要

Kinetics and mass transfer effects were studied for the complex catalytic liquid-phase hydrogenation in a semi-batch reactor, where finely dispersed and larger catalyst particles were used. Citral was used as a model molecule. The intrinsic kinetics was determined with crushed catalyst particles at 60 degrees C and at pressures ranging from 10 to 40 bar. A kinetic model was proposed and successfully fitted to the experimental data. In order to elucidate the influence of internal diffusion on the selectivity and activity in complex reactions, citral hydrogenation was performed with larger catalyst pellets, in a pressurized autoclave equipped with a catalyst basket. As expected, the activity decreased with increasing catalyst particle size. The product distribution was shifted from the primary hydrogenation product (citronellal) to the fully hydrogenated end product (3,7-dimethyloctanol) as the catalyst particle size was increased. The concentrations of the secondary hydrogenation products were minor throughout the experiment. A complete reaction-diffusion model was developed for large pellets and complex reactions systems. (c) 2005 Elsevier Ltd. All rights reserved.
机译:在半分批反应器中研究了复杂催化液相加氢的动力学和传质效果,该反应器中使用了细分散的较大催化剂颗粒。柠檬醛用作模型分子。用粉碎的催化剂颗粒在60℃和10至40巴的压力下测定本征动力学。提出了动力学模型,并成功地拟合了实验数据。为了阐明内部扩散对复杂反应中选择性和活性的影响,在配备催化剂篮的加压高压釜中,使用较大的催化剂颗粒进行柠檬酸加氢。如所预期的,活性随着催化剂粒度的增加而降低。随着催化剂粒度的增加,产物分布从初级氢化产物(香茅醛)转移至完全氢化的最终产物(3,7-二甲基辛醇)。在整个实验中,次要氢化产物的浓度很小。针对大颗粒和复杂反应系统开发了一个完整的反应扩散模型。 (c)2005 Elsevier Ltd.保留所有权利。

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