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Feeding trajectory optimization in fed-batch reactor with highly exothermic reactions

机译:高度放热反应的分批进料反应器进料轨迹优化

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Process engineers and operators should understand reactor runaway phenomenon to avoid hazard situations and accidents. Reactor runaway occurs when an exothermic reaction takes place in a reactor with insufficient heat transfer area. The reaction rate increases due to the temperature rise, causing a further increase in reaction rate and temperature. Without any safety action, only the reactant consumption limits the maximum temperature. One of the safety actions can be the application of runaway criteria to characterize the safe operating regimes where the optimal operating conditions can be found. This paper presents runaway criteria and the application of these in case of the feeding trajectory optimization of a fed-batch reactor model. The most important runaway criteria and the relations between them are presented, and critical curves of criteria are calculated using a simple dimensionless tubular reactor. The optimal feeding trajectory is determined in case a pilot plant fed-batch reactor using different runaway criteria as a non-linear constraint based on particle swarm optimization and sequential quadratic programming. Designers need to know how they can choose the right criterion, and the results can help with it. Selectivity and profit can be decreased if runaway occurs in a fed-batch reactor, therefore it is important to deal with this problem.
机译:工艺工程师和操作员应了解反应堆失控现象,以避免发生危险情况和事故。当在传热面积不足的反应器中发生放热反应时,反应器会失控。由于温度升高,反应速率增加,导致反应速率和温度进一步升高。没有任何安全措施,仅反应物消耗限制了最高温度。安全措施之一是应用失控标准来表征可以找到最佳运行条件的安全运行状态。本文介绍了失控标准及其在补料分批反应器模型的进料轨迹优化情况下的应用。介绍了最重要的失控标准及其之间的关系,并使用简单的无量纲管式反应器计算了标准的临界曲线。在基于粒子群优化和顺序二次编程的中试工厂补料分批反应器使用不同的失控标准作为非线性约束的情况下,确定最佳的进料轨迹。设计人员需要知道如何选择正确的标准,结果可以帮助您。如果在分批进料反应器中发生失控,则会降低选择性和利润,因此处理此问题很重要。

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