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A comparative study on a novel combination of spherical and membrane tubular reactors of the catalytic naphtha reforming process

机译:催化石脑油重整工艺的球形和膜管式反应器新型组合的比较研究

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Refineries have been looking for ways of improving the performance of the reformer by enhancing the octane number of the product via increasing the aromatics content. To reach this goal, more improved configurations should be investigated. The aromatics production rate could be enhanced by shifting the reactions to the production side by using hydrogen perm-selective membranes. In the present study, we have investigated theoretically the best combination of membrane tubular reactors and spherical radial-flow reactors for the conventional naphtha reforming unit consist of three fixed-bed reactors. Hydrogen permeation through the membrane shifts the reaction to the product side (aromatics and hydrogen) according to the thermodynamic equilibrium. Spherical reactors reduce the pressure drop in the catalytic naphtha reforming units and consequently increase the efficiency. The results show higher aromatics production in the new configurations compared with the membrane tubular and conventional reactors despite using lower membrane surface area.
机译:精炼厂一直在寻找通过增加芳烃含量来提高产品辛烷值的方法来改善重整炉的性能。为了达到这个目标,应该研究更多改进的配置。通过使用氢渗透选择性膜将反应转移到生产侧,可以提高芳烃的生产率。在本研究中,我们在理论上研究了由三个固定床反应器组成的常规石脑油重整单元的膜管式反应器和球形径向流反应器的最佳组合。根据热力学平衡,通过膜的氢渗透将反应转移到产物侧(芳族和氢)。球形反应器减少了催化石脑油重整单元中的压降,因此提高了效率。结果表明,尽管使用了较低的膜表面积,但与膜管式和常规反应器相比,在新配置下芳烃的产量更高。

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