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Methanol synthesis in a forced unsteady-state reactor network

机译:强制非稳态反应器网络中的甲醇合成

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The feasibility of carrying out the low-pressure methanol-synthesis process in forced unsteady-state conditions, using a network of three catalytic fixed bed reactors with periodical change of the inlet position, has been investigated; advantages and limitations in comparison with the previously proposed reverse-flow reactor have been highlighted. The effect of the main operating parameters-inlet temperature, switching time, inlet flow rate-has been studied. A cyclic-steady-state condition and auto-thermal behaviour are possible; nevertheless, they are attainable only for switching times varying in two narrow ranges. Out of these regions, complex steady-states of high periodicity, where conversion is low, or extinction of the reactors occur. For low values of the switching time, the establishing of optimal temperature profiles along the network allows higher conversions than in the reverse flow reactor. Furthermore, the performances of the network are weakly affected by wash-out, the removal of unconverted gas in correspondence of switching, which is in intrinsic disadvantage of reverse flow operation. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 14]
机译:研究了使用三个催化固定床反应器网络(入口位置定期变化)在强制非稳态条件下进行低压甲醇合成工艺的可行性;与先前提出的逆流反应器相比,优点和局限性已得到强调。研究了主要操作参数(入口温度,切换时间,入口流速)的影响。循环稳态条件和自热行为是可能的;但是,它们仅在两个窄范围内变化的切换时间才可实现。在这些区域之外,转换率低或反应堆熄灭的高周期性复杂稳态。对于较低的切换时间,沿着网络建立最佳温度曲线可以实现比逆流反应器更高的转化率。此外,网络的性能几乎不受冲洗的影响,相应于转换而去除未转化的气体,这是逆流操作的固有缺点。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:14]

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