...
首页> 外文期刊>Journal of Thermodynamics & Catalysis >Simulation of the Extractive Distillation Process of Ethanol-Water- Propylene Glycol System
【24h】

Simulation of the Extractive Distillation Process of Ethanol-Water- Propylene Glycol System

机译:乙醇-水-丙二醇体系萃取精馏过程的模拟

获取原文
           

摘要

Anhydrous ethanol is of great importance in the chemical industry, due to its diversity of applications, fuel being the main one. Anhydrous ethanol is added to gasoline, in the proportion of 20 to 25%, in order to increase the octane, improve the performance and reduce the pollution rates. However, for that use, ethanol must be practically free of water, with at least 99.6% of alcohol content (% in volume). The challenge is that the ethanol-water mixture presents an azeotrope, which hinders the separation in conventional methods, such as simple distillation. For the anhydrous ethanol production, extractive and azeotropic distillation are the methods most used, consisting on the addition of a third substance in the distillation column capable of changing the liquid-vapor equilibrium behavior of the system, modifying the relative volatility of the compounds of the initial mixture and thereby obtaining complete separation of the components. As an alternative to the various processes used, this work proposes the extractive distillation process using propylene glycol as the solvent, being the third component for the separation of the ethanol-water system. The choice of solvent is based on the miscibility with water and the ability to absorb it, as it has a low vapor pressure and, since it has been seen that many of the solvents already in use are toxic and are pollutants, such as ethylene glycol. Therefore, the ethanol separation process using propylene glycol as the solvent was evaluated using ProSimPlus software. It was simulated on the short-cut column, with the S/F ratios equal to 0.5, 0.7 and 0.9. The molar fraction of ethanol obtained in the distillate was higher than 0.994, which accounts for approximately 99.9% volume, and could thus be qualified as anhydrous ethanol. The obtained results showed that the azeotrope was broken, the distillation process was technically possible, applying the propylene glycol.
机译:无水乙醇在化学工业中非常重要,因为它的用途广泛,燃料是主要的燃料。为了增加辛烷值,改善性能和降低污染率,无水乙醇以20%至25%的比例添加到汽油中。但是,对于这种用途,乙醇必须几乎没有水,酒精含量至少为99.6%(体积%)。挑战在于乙醇与水的混合物具有共沸物,这阻碍了常规方法(例如简单蒸馏)中的分离。对于无水乙醇的生产,萃取蒸馏和共沸蒸馏是最常用的方法,包括在蒸馏塔中添加第三种物质,该物质能够改变系统的液-汽平衡行为,改变该化合物的相对挥发性。初始混合物,从而完全分离组分。作为所用各种方法的替代方法,这项工作提出了使用丙二醇作为溶剂的萃取蒸馏方法,该方法是分离乙醇-水系统的第三种成分。溶剂的选择基于与水的混溶性和吸收能力,因为它具有较低的蒸气压,并且由于已经发现许多已经使用的溶剂是有毒的并且是污染物,例如乙二醇。因此,使用ProSimPlus软件评估了使用丙二醇作为溶剂的乙醇分离过程。它是在短柱上模拟的,其S / F比等于0.5、0.7和0.9。在馏出物中获得的乙醇的摩尔分数高于0.994,约占99.9%的体积,因此可以被认为是无水乙醇。获得的结果表明,使用丙二醇,共沸物被破坏,蒸馏工艺在技术上是可能的。

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号