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首页> 外文期刊>Fuel >Multi-objective optimization of thermally coupled reactor of CCR naphtha reforming in presence of SO2 oxidation to boost the gasoline octane number and hydrogen
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Multi-objective optimization of thermally coupled reactor of CCR naphtha reforming in presence of SO2 oxidation to boost the gasoline octane number and hydrogen

机译:SO2氧化存在下CCR石脑油重整热耦合反应器的多目标优化,以提高汽油的辛烷值和氢气

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摘要

In this study, thermal coupling approach was used in catalytic naphtha reforming process with continuous catalyst regeneration with the intention of energy saving and mitigation of environmental issues. Due to the endothermic nature of catalytic naphtha reforming process, exothermic oxidation of SO2 to SO3 was used for coupling purpose. The kinetic model used in this study comprises 32 pseudo-components and 84 reactions which represent the main reactions of the process. Due to the several products in this process, multi-objective optimization and three cases are carried out to obtain the maximum amount of valuable products such as aromatics and hydrogen and minimum amount of light ends as well as maximizing the octane number of the exit stream. Maximizing the aromatics (octane number) and minimizing the light ends in reformate are the best possible objective functions in this research. The results of this study can be applied in different situations with regard to the required process goal e.g. maximizing the hydrogen production or research octane number (RON) of the products. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在这项研究中,在催化石脑油重整过程中采用热耦合方法,并进行连续的催化剂再生,目的是节省能源并减轻环境问题。由于催化石脑油重整过程的吸热性质,将SO 2放热氧化为SO 3用于偶联目的。本研究中使用的动力学模型包括32个假组分和84个反应,它们代表了该过程的主要反应。由于此过程中有几种产品,因此进行了多目标优化和三种情况,以获取最大数量的有价值产品(例如芳烃和氢气)和最小量的轻馏分,以及使出口物流的辛烷值最大化。最大限度地提高芳族化合物(辛烷值)和尽量减少重整产品中的轻馏分是这项研究中可能的最佳目标功能。这项研究的结果可以在不同情况下应用于所需的过程目标,例如:最大限度地提高产氢量或研究产品的辛烷值(RON)。 (C)2017 Elsevier Ltd.保留所有权利。

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