首页> 外文期刊>Energy >Electrical-driven self-heat recuperative pressure-swing azeotropic distillation to minimize process cost and CO_2 emission: Process electrification and simultaneous optimization
【24h】

Electrical-driven self-heat recuperative pressure-swing azeotropic distillation to minimize process cost and CO_2 emission: Process electrification and simultaneous optimization

机译:电动自热换热变压共沸蒸馏,可将工艺成本和CO_2排放降至最低:工艺电气化和同步优化

获取原文
获取原文并翻译 | 示例
       

摘要

Azeotropic separation by pressure-swing distillation (PSD) is one of the most costly processes in the chemical industry. To minimize process cost and CO_2 emission, process electrification based on self-heat recuperation technology (SHRT) has been implemented in many thermal-driven processes. Enlightened by these facts, a novel electrical-driven PSD-SHRT process is proposed and compared with conventional thermal-driven PSD (PSD-CONV) and PSDs integrated with heat integration and heat pump. Two typical binary systems - tetrahydrofuran (THF)/water with minimum-boiling azeotrope and acetone/chloroform with maximum-boiling azeotrope - are selected to investigate the potential economic and environmental benefits of process electrification. To make a fair comparison, all the processes are optimized to a minimum in total annualized cost (TAC) based on a simulation-based optimization framework combining Aspen Plus (process simulator) and MATLAB (external optimizer). The optimization results indicate PSD-SHRT to be the lowest in both TAC and CO_2 emission of all the alternative processes. In THF/ water system, PSD-SHRT triumphs over PSD-CONV by 23.72% in TAC and 83.67% in CO_2 emission, respectively. Corresponding values increase to 47.82% and 92.90% in the acetone/chloroform system. These improvements verify the significant advantages of process electrification and also encourage more originations to introduce SHRT into other processes.
机译:通过变压蒸馏(PSD)进行共沸分离是化学工业中最昂贵的过程之一。为了最大程度地降低过程成本和CO_2排放,已在许多热驱动过程中实现了基于自热回收技术(SHRT)的过程电气化。受这些事实的启发,提出了一种新颖的电驱动PSD-SHRT工艺,并将其与传统的热驱动PSD(PSD-CONV)和集成了热集成和热泵的PSD进行了比较。选择了两种典型的二元系统-具有最低沸点共沸物的四氢呋喃(THF)/水和具有最高沸点共沸物的丙酮/氯仿-来研究过程电气化的潜在经济和环境效益。为了进行公平的比较,所有流程都基于基于优化的框架(结合了Aspen Plus(过程模拟器)和MATLAB(外部优化器))进行了优化,以将总年化成本(TAC)降至最低。优化结果表明,PSD-SHRT在所有替代过程中的TAC和CO_2排放均最低。在THF /水系统中,PSD-SHRT在PSD-CONV上胜过TAC的23.72%,在CO_2排放中胜出的83.67%。在丙酮/氯仿系统中,相应的值增加到47.82%和92.90%。这些改进证明了流程电气化的显着优势,并且还鼓励更多的组织将SHRT引入其他流程。

著录项

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