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Integrated FCC riser - regenerator dynamics studied in a fluid catalytic cracking pilot plant

机译:在流化催化裂化中试装置中研究FCC立管-再生器的集成动力学

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In this paper a dynamic simulator of the fluid catalytic cracking (FCC) pilot plant, operating in the Chemical Process Engineering Research Institute (CPERI, Thessaloniki, Greece), is presented. The operation of the pilot plant pen-nits the execution of case studies for monitoring of the dynamic responses of the unit, by imposing substantial step changes in a number of the manipulated variables. The comparison between the dynamic behavior of the unit and that predicted by the simulator arise useful conclusions on both the similarities of the pilot plant to commercial units, along with the ability of the simulator to depict the main dynamic characteristics of the integrated system. The simulator predicts the feed conversion, coke yield and heat of catalytic reactions in the FCC riser on the basis of semi-empirical models developed in CPERI and simulates the regenerator according to the two-phase theory of fluidization, with a dilute phase model taking account of postcombustion reactions. The riser and regenerator temperature, the stripper and regenerator pressure drop and the composition of the regenerator flue gas are measured on line and are used for verification of the ability of the simulator to predict the dynamic transients between steady states in both open- and closed-loop unit operation. All the available process variables such as the reaction conversion, the coke yield, the carbon on regenerated catalyst and the catalyst circulation rate are used for the validation of the steady-state performance of the simulator. The comparison between the dynamic responses of the model and those of the pilot plant to step changes in the feed rate and preheat temperature reveals the ability of the simulator to accurately depict the complex pilot process dynamics in both open- and closed-loop operation. The dynamic simulator can serve as the basis for the development of a model-based control structure for the pilot plant, alongside its use as a tool for off-line process optimization studies. (c) 2007 Elsevier Ltd. All rights reserved.
机译:本文介绍了在化学过程工程研究所(CPERI,希腊萨洛尼卡)运行的流体催化裂化(FCC)中试厂的动态模拟器。通过在许多操纵变量中进行实质性的步骤变化,中试工厂的运行可以使案例研究的执行得以进行,以监视设备的动态响应。单元的动态行为与仿真器预测的动态行为之间的比较得出了关于中试工厂与商业单元的相似性以及仿真器描述集成系统主要动态特性的能力的有用结论。该模拟器根据CPERI中开发的半经验模型预测FCC提升管中的进料转化率,焦炭收率和催化反应的热量,并根据流化的两相理论模拟再生器,并考虑了稀相模型后燃烧反应。在线测量提升管和蓄热室的温度,汽提塔和蓄热室的压降以及蓄热室烟气的成分,并用于验证模拟器预测开闭状态下稳态之间动态瞬变的能力。循环单元操作。所有可用的过程变量(例如反应转化率,焦炭收率,再生催化剂上的碳和催化剂循环速率)均用于验证模拟器的稳态性能。模型与中试设备对进料速度和预热温度的阶跃变化的动态响应之间的比较表明,模拟器能够准确描述开环和闭环操作中复杂的中试过程动力学。动态仿真器可以作为中试工厂基于模型的控制结构开发的基础,并可以用作离线过程优化研究的工具。 (c)2007 Elsevier Ltd.保留所有权利。

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