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Modelling and simulation of multicomponent acetone-butanol-ethanol distillation process in a sieve tray column

机译:筛塔中多组分丙酮 - 丁醇 - 乙醇蒸馏工艺的建模与仿真

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摘要

Renewable energy sources are prospective solutions for addressing future energy needs arising from the ever-increasing population and dwindling petroleum reserves. Biobutanol is one of the most efficient biofuels for use as a mixture with motor vehicle fuels. Biobutanol is produced from the acetone-butanol-ethanol (ABE) fermentation process and is separated into the pure components via multicomponent distillation. Mathematical modelling of the continuous multicomponent distillation of ABE was carried herein out using an equilibrium-based model with the modified Hang-Wanke method in MATLAB R2020a programming language and compared with the simulation results using Aspen Plus V9. The variables of this study were the feed stage, number of trays, reflux ratio to butanol purity, butanol recovery, and energy load of the reboiler and condenser. Based on the simulation results, the operating conditions in columns 1 and 2 were recommended based on the butanol purity, recovery, and reboiler load; the recommended operating conditions for column 1 are as follows—feed stage: 4, reflux ratio: 4, number of trays: 20 trays, with a column efficiency of 55.43%. The recommended operating conditions for column 2 are as follows—feed stage: 2, reflux ratio: 0.4, number of trays: up to 10, with a column efficiency of 54.94%.
机译:可再生能源是解决未来的人口和DWWINDLING石油储备所产生的未来能源的潜在解决方案。 Biobutanol是最有效的生物燃料之一,用作与机动车燃料的混合物。生物脱盐由丙酮 - 丁醇 - 乙醇(ABE)发酵过程中制备,并通过多组分蒸馏分离成纯组分。使用MATLAB R2020A编程语言的改进的悬挂式模型进行了使用均衡的杭WANKE方法,与使用ASPEN PLUS V9的模拟结果相比,使用与MATLAB R2020A编程语言的改进的恒WANKE方法进行了数学建模。该研究的变量是进料阶段,托盘数量,回流比与再沸器和冷凝器的丁醇纯度,丁醇回收和能量负荷。基于仿真结果,基于丁醇纯度,回收和再沸器负荷,建议柱1和2中的操作条件;第1柱的推荐操作条件如下:4,回流比:4,托盘数量:20托盘,柱效率为55.43%。柱2的推荐操作条件如下 - 进给阶段:2,回流比:0.4,托盘数量:最多10个,柱效率为54.94%。

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