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Dynamics and control of benzene hydrogenation via reactive distillation

机译:反应精馏苯加氢动力学及控制

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This work develops a dynamic, first principles-based model of a reactive distillation column used for benzene hydrogenation of a reformate stream and investigates different control structures for this process. The model is used initially to develop and evaluate a feedback control strategy which provides good regulatory performance for small disturbances, however, it tends to be sluggish for significant disturbances in the feed composition. In order to address this point, adding a feedforward controller to the feedback structure has also been investigated. However, the feedforward controller can only be implemented if composition measurements of the feed are taken. As online composition measurements are expensive in practice, several different scenarios have been investigated where samples of the feed are taken and subsequently analyzed in a lab, as represented by measurement time delays. Simulation results show that adding feedforward control to the feedback scheme can be very beneficial for this process, however, this is only the case if the composition disturbance measurements do not involve a significant time delay.
机译:这项工作开发了一种动态的,基于第一原理的反应性蒸馏塔模型,该模型用于重整产品物流的苯加氢,并研究了该过程的不同控制结构。该模型最初用于开发和评估反馈控制策略,该策略可为较小的干扰提供良好的调节性能,但是,对于饲料成分中的重大干扰,它往往会显得迟钝。为了解决这一点,还研究了在反馈结构中添加前馈控制器。但是,前馈控制器只能在对进料进行成分测量的情况下才能实现。由于在线成分测量在实践中很昂贵,因此已研究了几种不同的方案,其中采集了饲料样本并随后在实验室中进行了分析,以测量时间延迟表示。仿真结果表明,将前馈控制添加到反馈方案可能对此过程非常有益,但是,只有在成分干扰测量没有明显的时间延迟的情况下,才是这种情况。

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