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Simultaneous synthesis gas and styrene production in the optimized thermally coupled reactor

机译:在优化的热耦合反应器中同时生产合成气和苯乙烯

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摘要

Styrene (ST) is one of the most important monomers widely used in the production of polystyrene, resins, and elastomers. In this study, a thermally coupled reactor (TCR) has been suggested for styrene production in which styrene production reaction takes place in the endothermic side and a new process concept called methane tri-reforming for synthesis gas production (H2 and CO) is considered in the exothermic side of the reactor. The heat generated in the exothermic side is transferred to the endothermic section. A one dimensional steady state model has been developed for thermally coupled reactor. Furthermore the optimization of TCR has been carried out in order to maximize the conversion of ethylbenzene (EB) and methane by Differential evolution (DE) method. Results of the optimization prove that in addition to saving energy, the production of styrene exceeds in the optimized thermally coupled reactor (OTCR) with respect to the conventional reactor (CR) about 5%. Additionally, high values of CO and H2 yield, 2% and 3% respectively, could be achieved in the exothermic side.
机译:苯乙烯(ST)是最重要的单体之一,广泛用于生产聚苯乙烯,树脂和弹性体。在这项研究中,有人提出了一种热耦合反应器(TCR)用于苯乙烯生产,其中苯乙烯生产反应发生在吸热侧,并考虑了一种用于合成气生产(H2和CO)的甲烷三重整的新工艺概念。反应器的放热面。在放热侧产生的热量传递到吸热区。已经开发了用于热耦合反应器的一维稳态模型。此外,已经进行了TCR的优化,以通过差异演化(DE)方法最大化乙苯(EB)和甲烷的转化率。优化结果证明,除了节省能源外,相对于常规反应器(CR),苯乙烯的产量在优化的热耦合反应器(OTCR)中也超过了5%。另外,在放热侧可以实现高的CO和H 2产率值,分别为2%和3%。

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