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The effect of flow type patterns in a novel thermally coupled reactor for simultaneous direct dimethyl ether (DME) and hydrogen production

机译:新型直接耦合二甲醚(DME)和制氢的新型热耦合反应器中流动类型的影响

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摘要

Dimethyl ether (DME) has gained wide interest in chemical industry regarding its use as a multi-source, multi-purpose fuel either for diesel engines or as a clean alternative for liquefied petroleum gas (LPG). The direct synthesis of DME from syngas would be more economical and beneficial in comparison to the indirect process via methanol dehydration. In this study, one type of the multifunctional auto-thermal reactors (the recuperative one) is selected in which the direct synthesis of dimethyl ether (DME) is coupled with the catalytic dehydrogenation of cyclohexane to benzene in a two fixed bed reactor separated by a solid wall, where heat is transferred across the surface of tube. Steady-state, heterogeneous, one-dimensional model has been used to describe the performance of this novel configuration. Both co-current and counter-current operating modes are investigated and the simulation results are compared with the available data of a pipe-shell fixed bed reactor for direct DME synthesis which operates at the same feed conditions. In addition, the influence of the molar flow rate of exothermic and endothermic stream on the reactor performance is also investigated. The results suggest that coupling of these reactions could be feasible and beneficial and the co-current mode has got better performance in DME and hydrogen production. In order to establish the validity and safety handling of the new concept, an experimental proof is required.
机译:二甲醚(DME)在化学工业中引起了广泛兴趣,因为它既可以用作柴油发动机的多源,多用途燃料,又可以用作液化石油气(LPG)的清洁替代品。与经由甲醇脱水的间接方法相比,由合成气直接合成DME将更加经济和有益。在这项研究中,选择了一种多功能自动热反应器(同流换热反应器),其中直接合成二甲醚(DME)与在两个固定床反应器中将环己烷催化脱氢成苯,并通过实心壁,热量在管壁上传递。稳态,异构,一维模型已用于描述这种新颖配置的性能。研究了并流和逆流两种操作模式,并将模拟结果与在相同进料条件下进行直接DME合成的管壳固定床反应器的可用数据进行了比较。另外,还研究了放热和吸热物流的摩尔流速对反应器性能的影响。结果表明,这些反应的耦合是可行和有益的,并流模式在二甲醚和制氢中具有更好的性能。为了确定新概念的有效性和安全性,需要实验证明。

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