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首页> 外文期刊>AIChE Journal >Mathematical Modeling of the Partial Hydrogenation of Vegetable Oil in a Monolithic Stirrer Reactor
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Mathematical Modeling of the Partial Hydrogenation of Vegetable Oil in a Monolithic Stirrer Reactor

机译:整体式搅拌器中植物油部分加氢的数学模型

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摘要

Experimental and theoretical studies on the partial hydrogenation of vegetable oil in a monolithic stirrer reactor are reported. A complete mathematical model of the reactor was developed, including hydrogenation and isomerization kinetics, catalyst deactivation, external gas—liquid and liquid—solid as well as internal mass transfer. The experimental studies were carried out in a Pd/Al2O3/Al monolithic stirrer reactor, at a wide range of temperatures (353-373 K), pressures (414-552 kPa), and catalyst loadings (0.00084-0.00527 kg_(Pd,exp) m~(-3)). Based on this model, simulated data can be used to evaluate the catalyst (Pd/Al2O3/Al) and the hydrogenation process in consecutive catalytic tests under different operating conditions.
机译:报道了在整体式搅拌器反应器中植物油部分氢化的实验和理论研究。建立了反应器的完整数学模型,包括加氢和异构化动力学,催化剂失活,外部气体(液体和液体),固体以及内部传质。在Pd / Al2O3 / Al整体式搅拌器反应器中进行了广泛的温度(353-373 K),压力(414-552 kPa)和催化剂负载量(0.00084-0.00527 kg_(Pd,exp )m〜(-3))。基于此模型,模拟数据可用于评估催化剂(Pd / Al2O3 / Al)和在不同操作条件下连续进行的催化试验中的氢化过程。

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