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Recycling of carbon fibre reinforced polymeric waste for the production of activated carbon fibres

机译:回收碳纤维增强聚合物废料以生产活性碳纤维

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摘要

Composite waste composed of carbon fibres and polybenzoxazines resin has been pyrolysed in a fixed bed reactor at temperatures of 350,400,450,500 and 700 C. Solid residues of between 70 and 83.6 wt%, liquid yields 14 and 24.6wt% and gas yields 0.7 and 3.8 wt% were obtained depending on pyrolysis temperature. The derived pyrolysis liquids contained aniline in high concentration together with oxygenated and nitrogenated aromatic compounds. The pyrolysis gases consisted mainly of CO_2, CO, CH_4, H_2 and other hydrocarbons. The carbon fibres used in the composite waste were separated from the char of the solid residue via oxidation of the char at two different temperatures and investigated for their mechanical strength properties. The carbon fibres recovered from the sample pyrolysed at 500℃ and oxidised at 500℃ exhibited mechanical properties which were 90% of that of the original virgin carbon fibres. Steam activation of the recovered carbon fibres was carried out at 850℃ at different times of activation. The effect of activation time on BET surface area, activated carbon fibres yield, porosity and the morphological structure of activated carbon fibres was evaluated. A maximum BET surface area of over 800m~2g~(-1) was obtained for the activated carbon fibres produced at 850℃ for 5 h of activation. Nitrogen adsorption-desorption isotherms showed that the adsorption capacity increased as the activation time increased up to 5 h of activation and then after that decreased.
机译:由碳纤维和聚苯并恶嗪树脂组成的复合废料已在固定床反应器中于350,400,450,500和700 C的温度下热解。固体残渣介于70和83.6 wt%之间,液体产率为14和24.6 wt%,气体产率为0.7和3.8 wt%取决于热解温度。衍生的热解液含有高浓度的苯胺以及氧化和氮化的芳族化合物。热解气体主要由CO_2,CO,CH_4,H_2和其他碳氢化合物组成。在两个不同的温度下,通过炭的氧化将复合废料中使用的碳纤维与固体残渣的炭分离,并研究其机械强度性能。从样品中回收的碳纤维在500℃下热解并在500℃下氧化,其机械性能是原始纯碳纤维的90%。回收的碳纤维在不同的活化时间于850℃进行蒸汽活化。评估了活化时间对BET表面积,活性炭纤维产率,孔隙率和活性炭纤维形态结构的影响。在850℃活化5h的活性炭纤维的最大BET表面积超过800m〜2g〜(-1)。氮吸附-解吸等温线表明,随着活化时间的增加,活化时间增加到5 h时,吸附容量增加,然后降低。

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