1 R & D Division, Silla Entech Company, Republic of Korea.
2 Department of Biochemical and Environmental Engineering, Hanjiang Normal University, People's Republic of China.
Waste Manag Res. 2018 Oct;36(10):952-964. doi: 10.1177/0734242X18790351. Epub 2018 Aug 1.
We present the experimental results of an optimal recycling method for waste carbon fibre reinforced plastics (CFRPs) that is based on the application of a set of unit mechanochemical processes. The objectives of this study were to highlight the influence of process factors that are inherent in the chemical recycling process of waste CFRP. We investigated the influence of the soaking period, the application of a catalyst and impurities on the recycling process and recovery efficiency of the waste CFRP. Different combinations of the unit mechanochemical processes were investigated, and the effectiveness of the combination was analysed. The chemical recycling process was conducted using benzyl alcohol under ordinary pressure at initial solvent temperatures lower/equivalent to its flash point temperature. Experimental results showed that the solvent temperature increased up to boiling temperature levels when the mechanochemical process was initiated, thereby enhancing the mechanochemical process. The presence of impurities did not influence the recovery rate. Likewise, this experimental study highlighted the importance of accounting for the soaking period during the chemical recycling process: an extended soaking period resulted in a higher recovery rate, a lower portion of undissolved solids and recovered fibres of better quality. This research highlighted the significance of choosing the proper combination for the chemical recycling process as well as the benefits of recycling the waste CFRP with negligible application of the catalyst.
我们提出了一种基于一组单元机械化学过程应用的废碳纤维增强塑料(CFRP)最佳回收方法的实验结果。本研究的目的是强调化学回收过程中固有的过程因素对废 CFRP 回收的影响。我们研究了浸泡时间、催化剂的应用和杂质对废 CFRP 回收过程和回收效率的影响。研究了不同单元机械化学过程的组合,并分析了组合的有效性。化学回收过程在常压下使用苄醇,初始溶剂温度低于/等于其闪点温度。实验结果表明,当机械化学过程开始时,溶剂温度升高到沸点水平,从而增强了机械化学过程。杂质的存在并不影响回收率。同样,这项实验研究强调了在化学回收过程中考虑浸泡时间的重要性:延长浸泡时间会导致更高的回收率、更低的未溶解固体部分和质量更好的回收纤维。这项研究强调了选择适当的化学回收过程组合的重要性,以及在催化剂应用可忽略不计的情况下回收废 CFRP 的好处。