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Process Stability Identification Through Dynamic Study of Single-bed Ammonia Reactor with Feed-Effluent Heat Exchanger (FEHE)

机译:通过带有进料-换热器(FEHE)的单床氨反应器的动态研究确定过程稳定性

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In ammonia reactor system, a feed-effluent heat exchanger (FEHE) is typically installed to utilize reaction-generated heat to heat the reactor’s feed. Utilizing energy from exothermic reaction to the incoming feed stream is often called “autothermic operation”. Despite the advantage of FEHE, there is a risk of utilizing FEHE in a reactor system such as instability of process temperature or known as hysteresis. Hysteresis phenomena in chemical process could cause operational problems, for example it could damage the integrity of the equipment’s material. This paper aims to evaluate the dynamic behavior of a single-bed ammonia reactor with FEHE, particularly to propose a way to prevent instability within the system. The dynamic simulation of the single-bed ammonia reactor with FEHE was performed with Aspen HYSYS v8.8. The result of the simulation result shows that hysteresis phenomenon in the ammonia reactor system occurs when the feed’s temperature is below a certain value. If the feed temperature reaches that value, the temperature of the reactor’s outlet oscillates. One of the solution to keep the feed temperature above that critical value is by installing a trim heater within the system. Based on the simulation, trim heater installation within the system is able to prevent hysteresis in the system evaluated.
机译:在氨反应器系统中,通常会安装进料热交换器(FEHE),以利用反应产生的热量来加热反应器的进料。利用从放热反应到进入的进料流的能量通常被称为“自热操作”。尽管FEHE具有优势,但存在在反应器系统中使用FEHE的风险,例如过程温度的不稳定或称为滞后现象。化学过程中的磁滞现象可能会导致操作问题,例如,它可能损坏设备材料的完整性。本文旨在评估带有FEHE的单床氨反应器的动态行为,尤其是提出一种防止系统内部不稳定的方法。使用Aspen HYSYS v8.8对装有FEHE的单床氨反应器进行了动态模拟。仿真结果表明,当进料温度低于一定值时,氨反应器系统会出现滞后现象。如果进料温度达到该值,则反应器出口的温度会振荡。使进料温度保持在临界值以上的解决方案之一是在系统内安装调节加热器。基于仿真,系统内的微调加热器安装能够防止所评估的系统出现滞后现象。

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