Production of hydrogen and carbon nanofilaments using a novel reactor configuration: hydrodynamic study and experimental results

Abir Azara, J. Blanchard, F. Mohellebi, E. Benyoussef, F. Gitzhofer, N. Abatzoglou
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引用次数: 11

Abstract

A novel reactor configuration combining two beds, a central fluidized bed and an annular mobile bed, was designed for the production of hydrogen and carbon nanofilaments via dry reforming of gases produced from the pyrolysis of plastic waste. This combination allows for easy recovery of these nanomaterials and, since the mixture of catalyst and carbon formed is continuously fluidized, it also prevents blockage. Understanding the hydrodynamics is crucial for choosing the optimal operating conditions. Thus, a cold mock-up unit of the same size has been built and used. Since the gases produced by plastic pyrolysis are mainly composed of unsaturated hydrocarbons, the prototype reactor setup has been operated using ethylene as a surrogate molecule. The preliminary experimental results of the reactor operation with ethylene obtained so far are very promising and confirm the operability of the process. Next step is to operate continuously for longer time and reach a production of 1kg/h of carbon nanofilaments.
采用新型反应器结构生产氢和碳纳米丝:流体动力学研究和实验结果
设计了一种由中央流化床和环形移动床两层组成的新型反应器结构,用于通过对塑料废物热解产生的气体进行干重整生产氢和碳纳米丝。这种组合可以很容易地回收这些纳米材料,并且由于催化剂和形成的碳的混合物连续流化,它也可以防止堵塞。了解流体动力学对于选择最佳操作条件至关重要。因此,已经建造并使用了一个相同尺寸的冷模型单元。由于塑料热解产生的气体主要由不饱和碳氢化合物组成,因此使用乙烯作为替代分子来操作原型反应器装置。到目前为止,乙烯反应器运行的初步实验结果很有希望,证实了该工艺的可操作性。下一步是长时间连续运行,达到1kg/h的碳纳米丝产量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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