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Energy and environmental assessment and reuse of fluidised bed recycled carbon fibres

机译:能源和环境评估以及流化床再生碳纤维的再利用

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摘要

Carbon fibre reinforced plastic (CFRP) recycling and the reutilisation of the recovered carbon fibre (rCF) 2 can compensate for the high impacts of virgin carbon fibre (vCF) production. In this paper, we evaluate the 3 energy and environmental impacts of CF recycling by a fluidised bed process and reuse to manufacture a 4 CFRP material. A ‘gate-to gate’ life cycle model of the CFRP recycling route using papermaking and 5 compression moulding methods is developed based on energy analysis of the fluidised bed recycling process 6 and processing of rCF. Key recycling plant operating parameters, including plant capacity, feed rate, and air 7 2 in-leakage are investigated. Life cycle impact assessments demonstrate the environmental benefits of recycled 8 CFRP against end of life treatments-landfilling, incineration. The use of rCF to displace vCF based on 9 material indices (equivalent stiffness and equivalent strength) therefore proves to be a competitive alternative 10 for composite manufacture in terms of environmental impact.
机译:碳纤维增强塑料(CFRP)的回收和回收碳纤维(rCF)2的再利用可以弥补原始碳纤维(vCF)生产的巨大影响。在本文中,我们通过流化床工艺评估CF回收的3种能源和环境影响,并重复使用以制造4 CFRP材料。基于流化床循环过程6的能量分析和rCF的处理,开发了使用造纸和5压缩成型方法的CFRP循环路线的“从门到门”生命周期模型。研究了回收工厂的关键运行参数,包括工厂容量,进料速率和空气7 2泄漏。生命周期影响评估表明,再生的8 CFRP相对于报废处理(填埋,焚化)具有环境效益。因此,就环境影响而言,使用rCF替代基于9种材料指标(等效刚度和等效强度)的vCF成为复合材料制造的竞争性替代品10。

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