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Implementation of a Reactive Dividing Wall Distillation Column in a Pilot Plant

机译:试点植物反应分裂壁蒸馏塔的实施

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Based on the knowledge regarding steady state design, optimization and control obtained by using Aspen Plus and Aspen Dynamics process simulators, we have designed and implemented a reactive dividing wall distillation column (DWDC). The column can be used to carry out the equilibrium reaction between ethanol and acetic acid to produce ethyl acetate and water catalyzed by sulfuric acid. The reactive DWDC contains three packed sections and the middle section is the key part in order to minimize the energy consumption. That section contains a wall that can be moved to three positions to manipulate the split of the vapor stream, whereas the split of the liquid stream is achieved by using a side tank. The reactive DWDC contains a reflux valve used to control either the composition of the distillate or the temperature at some point in the first packed section. Also, a reboiler was implemented in the lower section, and the heat duty supplied to it is used to control either the composition of the bottoms product or the temperature in the reboiler. This design was proposed based on both steady and dynamic simulations. The minimum energy consumption was predicted in the steady state simulation; the dynamic simulations indicated that the minimum energy consumption can be achieved in practice by implementing two control loops of temperature (or composition), as described.
机译:基于关于稳态设计,通过使用Aspen Plus和Aspen Dynamics的模拟器获得的优化和控制,我们设计并实施了反应分壁蒸馏塔(DWDC)。该柱可用于在乙醇和乙酸之间进行平衡反应,以产生通过硫酸催化的乙酸乙酯和水。反应性DWDC包含三个填充部分,中间部分是关键部分,以便最小化能量消耗。该部分包含可以移动到三个位置的壁以操纵蒸汽流的分流,而通过使用侧罐实现液体流的分离。反应性DWDC含有回流阀,用于在第一填充部分中的某些点控制馏出物或温度的组成。而且,再沸器在下部实施,供应的热量用于控制底部产物的组成或再沸器中的温度。这种设计是基于稳态和动态模拟的。在稳态模拟中预测最小能耗;动态模拟表明,如上所述,通过实现温度(或组成)的两个控制回路,可以在实践中实现最小能耗。

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