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Entrainer effect of n-hexanol reactant on coproducing n-butyl and n-hexyl acetate in energy-efficient reactive distillation

机译:正己醇反应物在节能反应蒸馏中施氮中正丁基和正己基乙酸正丁基和正己酯的夹带作用

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摘要

This study demonstrates the entrainer effect of a co-reactant alcohol on the feasibility of complete conversion and product recovery in reactive distillation (RD) for concurrently producing n-butyl acetate (BuAc) and n-hexyl acetate (HexAc). Introducing n-hexanol widens heterogeneous liquid regions and more purified common byproduct of water can be removed by liquid-liquid decantation. Thus, the participation of n-hexanol is essential for offering higher purity to water and esters with higher reaction extents achieved. To verify the feasibility of the binary-esterification system, the liquid-liquid equilibrium (LLE) region and liquid composition trajectory are visualized in the quaternary space and it is found that the water purity in the direct sequence of RD is 99.41 mol %, which is higher than that of RD with the BuOH single esterification (99.16 mol%). In terms of energy savings for the binary ester production, the upper reactive dividing wall column is the most effective among the design alternatives and reduces the reboiler duty by 13.35 % compared with the total reboiler duty of two conventional single esterification RD systems.
机译:本研究证明了共反应物醇对反应蒸馏(RD)中完全转化和产物回收的可行性的夹带效应,用于同时制备乙酸正丁酯(BUAC)和N-己酯(六己酸)。引入N-六烷醇扩大异质液体区域,通过液体倾析可以除去更多纯化的水常见副产物。因此,N-六醇的参与对于为达到更高的反应范围的水和酯提供更高的水和酯,这是必不可少的。为了验证二进制酯化系统的可行性,在季度的空间中可视化液体平衡(LLE)区域和液体组合物轨迹,发现RD的直接序列中的水纯度为99.41mol%高于RD的RD与BuOH单酯化(99.16mol%)。就二元酯制备的节能而言,上反应性分裂壁柱是设计替代品中最有效的,并且与两种常规单一酯化RD系统的总再沸器占状量相比,将再沸器占损失减少13.35%。

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