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Improved process design and optimization of 200 kt/a ethylene glycol production using coal-based syngas

机译:使用煤基合成气改善200kt / A乙二醇生产的工艺设计和优化

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Ethylene glycol (EG) production via coal-based syngas has been demonstrated to be an attractive process with a higher conversion and lower energy consumption. However, few researches are focused on the improved design of the reactors and separation strategies that involved in the syngas-to-EG process (STEP). In this work, the improved design and optimization of key techniques in 200 kt/a EG production using syngas are investigated. We propose a new four-stage fixed bed tube-type CO coupling reactor (CCR) and the reaction temperature and product DMO distribution along the pipe are suggested. Then, the recovery of renewable methanol is carried out by the application of three-stage membrane separation configuration (TSMSC) instead of conventional two-column distillation. Furthermore, conventional double columns distillation is replaced by dividing-wall columns (DWCs) in the separation of mixtures DMO-DMC-methanol. The comparisons of energy consumption and total annualized cost (TAC) between the proposed technologies and conventional processes verify the superiority of the implement of TSMSC and DWCs. Eventually, the optimization of key operational parameters of the STEP is achieved with a higher EG yield and a lower energy consumption, which demonstrates that the proposed STEP flowsheet could provide a more effective and economical solution to EG production. The methodology proposed in this work may provide some theoretical guidance to the improved design of reactors and separations alternatives in chemical production processes. (C) 2018 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:已经证明了通过煤基合成气的乙二醇(例如)生产是具有较高转换和较低能耗的有吸引力的过程。然而,很少有研究专注于改进的反应器和分离策略的改进,涉及合成气于例如工艺(步骤)。在这项工作中,研究了200 kt / a中的键技术的改进设计和优化,例如使用合成气的生产。我们提出了一种新的四阶段固定床管型CO耦合反应器(CCR),并提出了沿管道的反应温度和产品DMO分布。然后,通过施加三级膜分离构型(TSMSC)而不是传统的双塔蒸馏来进行可再生甲醇的回收。此外,传统的双柱蒸馏通过分离壁柱(DWC)在混合物DMO-DMC-甲醇的分离中代替。拟议技术与传统流程之间的能耗和年化成本(TAC)的比较验证了TSMSC和DWC的实施的优势。最终,通过更高的例如产量和较低的能量消耗来实现该步骤的关键操作参数的优化,这表明所提出的步骤流程可以为例如生产提供更有效和经济的解决方案。本作工作中提出的方法可以为化学生产过程中的反应器和分离替代品的改进设计提供一些理论指导。 (c)2018化学工程师机构。 elsevier b.v出版。保留所有权利。

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