首页> 外文期刊>Asian Journal of Chemistry: An International Quarterly Research Journal of Chemistry >Comparison of Energy Consumption of Two-Column Configuration and Three-Column Configuration in the Extractive Distillation Process for High Purity Refinement of Isopropyl Alcohol
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Comparison of Energy Consumption of Two-Column Configuration and Three-Column Configuration in the Extractive Distillation Process for High Purity Refinement of Isopropyl Alcohol

机译:萃取蒸馏法精制异丙醇的两塔构型和三塔构型能耗比较

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摘要

High purity isopropyl alcohol cannot be obtained from an aqueous solution by conventional distillation because isopropyl alcohol in solution will reach an azeotropic point around 68 mole % (88 wt.%). However, high purity isopropyl alcohol can be obtained by using ethylene glycol or dimethyl sulfoxide as a solvent in the extractive distillation process, which yields highly purified isopropyl alcohol in the upper part of the distillation column. Herein, the solvent ability of ethylene glycol and dimethyl sulfoxide in the extractive distillation process is compared. In addition, the two-column configuration of the extractive distillation column and solvent recovery column. concentrator, evaporation equipment and the three-column configuration of the extractive distillation column and solvent recovery column are also compared. Computer simulations were conducted for each of the aforementioned processes. Process optimization was also performed for the reduction of utilities cost. The study confirmed that the use of dimethyl sulfoxide as a solvent with application of the three-column distillation configuration was effective for minimizing the consumption of steam.
机译:由于溶液中的异丙醇将达到约68摩尔%(88重量%)的共沸点,因此不能通过常规蒸馏从水溶液中获得高纯度异丙醇。然而,在萃取蒸馏过程中,通过使用乙二醇或二甲基亚砜作为溶剂可以得到高纯度的异丙醇,这在蒸馏塔的上部产生了高纯度的异丙醇。在此,比较了乙二醇和二甲基亚砜在萃取蒸馏过程中的溶剂能力。另外,萃取蒸馏塔和溶剂回收塔的两塔构造。还比较了浓缩器,蒸发设备以及萃取蒸馏塔和溶剂回收塔的三塔结构。针对上述每个过程进行了计算机模拟。还进行了工艺优化,以降低公用事业成本。该研究证实,在采用三塔蒸馏配置的情况下,使用二甲基亚砜作为溶剂可有效减少蒸汽消耗。

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