Petrakli Fotini, Gkika Anastasia, Bonou Alexandra, Karayannis Panagiotis, Koumoulos Elias P, Semitekolos Dionisis, Trompeta Aikaterini-Flora, Rocha Nuno, Santos Raquel M, Simmonds Guy, Monaghan Glen, Valota Giorgio, Gong Guan, Charitidis Costas A
IRES-Innovation in Research & Engineering Solutions, Rue Koningin Astritlaan 59B, 1780 Wemmel, Belgium.
RNANO Lab.-Research Lab of Advanced, Composite, Nano-Materials & Nanotechnology, School of Chemical Engineering, National Technical University of Athens, GR-15773 Zographos Athens, Greece.
Polymers (Basel). 2020 Sep 18;12(9):2129. doi: 10.3390/polym12092129.
Life cycle assessment is a methodology to assess environmental impacts associated with a product or system/process by accounting resource requirements and emissions over its life cycle. The life cycle consists of four stages: material production, manufacturing, use, and end-of-life. This study highlights the need to conduct life cycle assessment (LCA) early in the new product development process, as a means to assess and evaluate the environmental impacts of (nano)enhanced carbon fibre-reinforced polymer (CFRP) prototypes over their entire life cycle. These prototypes, namely SleekFast sailing boat and handbrake lever, were manufactured by functionalized carbon fibre fabric and modified epoxy resin with multi-walled carbon nanotubes (MWCNTs). The environmental impacts of both have been assessed via LCA with a functional unit of '1 product piece'. Climate change has been selected as the key impact indicator for hotspot identification (kg CO eq). Significant focus has been given to the end-of-life phase by assessing different recycling scenarios. In addition, the respective life cycle inventories (LCIs) are provided, enabling the identification of resource hot spots and quantifying the environmental benefits of end-of-life options.
生命周期评估是一种通过核算产品或系统/流程在其生命周期内的资源需求和排放来评估与之相关的环境影响的方法。生命周期包括四个阶段:材料生产、制造、使用和寿命结束阶段。本研究强调了在新产品开发过程早期进行生命周期评估(LCA)的必要性,以此作为评估和评价(纳米)增强碳纤维增强聚合物(CFRP)原型在其整个生命周期内环境影响的一种手段。这些原型,即SleekFast帆船和手刹杆,是由功能化碳纤维织物和含有多壁碳纳米管(MWCNTs)的改性环氧树脂制造而成。两者的环境影响均通过以“1个产品部件”为功能单位的LCA进行评估。气候变化已被选为识别热点的关键影响指标(千克二氧化碳当量)。通过评估不同的回收方案,重点关注了寿命结束阶段。此外,还提供了各自的生命周期清单(LCI),有助于识别资源热点并量化寿命结束选项的环境效益。