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首页> 外文期刊>Chemical Engineering and Processing >Optimal design of an industrial scale dual-type reactor for direct dimethyl ether (DME) production from syngas
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Optimal design of an industrial scale dual-type reactor for direct dimethyl ether (DME) production from syngas

机译:从合成气直接生产二甲醚(DME)的工业规模双反应器的优化设计

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摘要

Since in foreseeable future DME as a clean-burning fuel with versatile applications will play a significant role in the transportation sector, the least improvement in its production process which can increase the production capacity is economically favorable. In this study, an industrial dual-type reactor is designed and optimized by DE algorithm for increasing DME production and also overcoming the reaction equilibrium limitations of the direct DME synthesis. The proposed reactor configuration is composed of two fixed bed reactors: (1) the water-cooled reactor and (2) the gas-cooled reactor. The syngas feed is preheated with the hot exit product from the first reactor (water-cooled), and is entered into the first reactor. The reactors are simulated by means of a one-dimensional steady-state heterogeneous model. The simulation results indicate that the best flow pattern for the proposed configuration is the counter-current mode. Maximizing the outlet mole fraction of DME from the second reactor is the objective of the optimizer. Seven operating and geometrical parameters of the system are considered as the decision variables. The results show that the proposed configuration can enhance DME production capacity about 60 ton/day in comparison to conventional industrial DME reactor which operates based on the indirect DME synthesis process.
机译:由于在可预见的将来,DME作为一种用途广泛的清洁燃烧燃料将在交通运输领域发挥重要作用,因此其生产工艺的最小改进(可提高生产能力)在经济上是有利的。在这项研究中,通过DE算法设计和优化了工业双反应器,以提高DME的产量,并克服了直接DME合成的反应平衡限制。拟议的反应堆配置由两个固定床反应堆组成:(1)水冷反应堆和(2)气冷反应堆。合成气进料与来自第一反应器的热出口产物一起预热(水冷),然后进入第一反应器。通过一维稳态异质模型对反应堆进行仿真。仿真结果表明,提出的配置的最佳流型是逆流模式。使第二反应器的DME的出口摩尔分数最大化是优化器的目标。系统的七个操作参数和几何参数被视为决策变量。结果表明,与基于间接DME合成工艺操作的常规工业DME反应器相比,所提出的配置可以将DME的生产能力提高约60吨/天。

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