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Thermo-Catalytic Treatment of Vapors in the Recycling Process of Carbon Fiber-Poly (Benzoxazine) Composite Waste by Pyrolysis

机译:热解碳纤维 - 聚(苯并恶嗪)复合物废弃物中蒸汽的热催化处理

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摘要

Recycling carbon fiber from residual carbon fiber reinforced plastics (CFRP) is one of the key aspects of the future in the field of waste management. This work presents the possibility of recovering chemical compounds through the thermo-catalytic treatment of the gases and vapors produced from the decomposition of the polymeric resin that takes place in the recycling of CFRP by pyrolysis. A lab-scale installation consisting of two reactors placed in series has been used for the experiments. In the first reactor, pyrolysis of poly(benzoxazine)-based composite waste has been carried out at 500 °C. In the second reactor, the thermo-catalytic treatment of gases and vapors has been performed at 900 °C in the presence of a commercial and a lab-prepared reforming catalyst. The thermal treatment of gases and vapors leads to a significant reduction in the collected liquids and a H2-rich gas fraction. When reforming catalysts are used, the organic fraction of the liquids is virtually eliminated and gas fractions containing more than 50% H2 in volume are generated. The results obtained show that it is possible to valorize the material content of the polymer resin, which represents an important advance in the recycling of CFRP by pyrolysis.
机译:从残留的碳纤维增强塑料(CFRP)的回收碳纤维是废物管理领域未来的关键方面之一。该工作呈现通过热催化处理通过热解循环中CFRP的聚合物树脂的分解产生的气体和蒸汽来回收化学化合物的可能性。由串联放置的两个反应器组成的实验室规模安装已用于实验。在第一反应器中,在500℃下进行聚(苯并恶嗪)的复合废物的热解。在第二反应器中,在商业和实验室制备的重整催化剂存在下,在900℃下进行气体和蒸汽的热催化处理。气体和蒸汽的热处理导致收集的液体和富含H 2的气体级分的显着降低。当使用重整催化剂时,实际上消除了液体的有机级分,并且产生含有50%以上的体积大于50%H 2的气体级分。得到的结果表明,可以使聚合物树脂的物质含量纳入,这代表了通过热解回收CFRP的重要进步。

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