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Recovery of carbon fibres and production of high quality fuel gas from the chemical recycling of carbon fibre reinforced plastic wastes

机译:从碳纤维增强塑料废物的化学回收中回收碳纤维和生产高质量的燃气

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摘要

A solvolysis process to depolymerize the resin fraction of carbon fibre reinforced plastic waste to recover carbon fibre, followed by hydrothermal gasification of the liquid residual product to produce fuel gas was investigated using batch reactors. The depolymerisation reactions were carried out in ethylene glycol and ethylene glycol/water mixtures at near-critical conditions of the two solvents. With ethylene glycol alone the highest resin removal of 92.1% was achieved at 400 °C. The addition of water to ethylene glycol led to higher resin removals compared to ethylene glycol alone. With an ethylene glycol/water ratio of 5, at 400 °C, resin removal was 97.6%, whereas it was 95.2% when this ratio was 3, at the same temperature. The mechanical properties of the recovered carbon fibre were tested and showed minimal difference in strength compared to the virgin carbon fibre. The product liquid, containing organic resin degradation products was then subjected to catalytic supercritical water gasification at 500 °C and 24 MPa in the presence of NaOH and Ru/AlO as catalysts, respectively. Up to 60 mol.% of H gas was produced with NaOH as catalyst, and 53.7 mol.% CH gas was produced in the presence of Ru/AlO.
机译:使用间歇反应器研究了溶剂分解工艺,该工艺将碳纤维增强塑料废料的树脂级分解聚以回收碳纤维,然后对液体残留物进行水热气化以生产燃料气。解聚反应在乙二醇和乙二醇/水的混合物中在两种溶剂的近临界条件下进行。仅使用乙二醇,在400°C时树脂去除率最高,达到92.1%。与单独的乙二醇相比,向乙二醇中加水导致更高的树脂去除率。乙二醇/水的比率为5时,在相同温度下,400℃,树脂去除率为97.6%,而当该比率为3时,树脂去除率为95.2%。测试了回收的碳纤维的机械性能,与原始碳纤维相比,其强度差异最小。然后,在分别作为催化剂的NaOH和Ru / AlO存在下,将含有有机树脂降解产物的产物液体在500℃和24MPa下进行催化超临界水气化。在NaOH / RuO存在下,用NaOH作为催化剂可产生高达60mol。%的H气,并产生53.7mol。%的CH气。

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