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Cement-Matrix Composites Using CFRP Waste: A Circular Economy Perspective Using Industrial Symbiosis

机译:使用CFRP废物的水泥 - 基质复合材料:使用产业共生的循环经济性观点

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摘要

This study aims to provide a mitigation strategy for reducing the economic and environmental impacts of carbon fiber wastes deriving from automotive industry. Recycling and reuse in the construction industry is proposed, according to an industrial symbiosis within a circular economy perspective. Specifically, the process consists of repurposing carbon fiber reinforced polymer (CFRP) scraps/waste into new cement-matrix composites, for which the resulting benefits, in terms of mechanical and environmental performance, are herein described. An experimental campaign, starting with a specific heat treatment of CFRP sheets and an accurate dimensional distribution analysis of the short carbon fibers, is presented. The influence of the fiber content and length on both the workability and the mechanical performance of cement-based carbon fiber reinforced mortars is also evaluated. A reduced amount of either sand or cement (up to 8% and 12.8% in volume, respectively) is also considered in the mix design of the fiber reinforced mortars and derives from the substitution of the sand or binder with an equivalent volume of CFRP fibers. The results show a satisfactory increase in compressive and flexural strength in the range 10–18% for the samples characterized by a volume fraction of fibers of approximately 4% and having a 2–5 mm length. Finally, a life cycle assessment (LCA, 14040/14044) was carried out to quantify the environmental burden reductions associated with the implementation of the proposed symbiotic scheme.
机译:本研究旨在提供减少碳纤维废物源于汽车行业的经济和环境影响的缓解策略。根据循环经济的角度来说,提出了建筑业的回收和重复使用建筑业。具体地,该方法包括将碳纤维增强聚合物(CFRP)废料/废物分解为新的水泥基质复合材料,其在本文中描述了在机械和环境性能方面所得到的益处。提出了一种实验活动,从CFRP片材的特定热处理开始以及短碳纤维的准确尺寸分布分析。还评价了纤维含量和长度对水泥基碳纤维增强砂浆的可加工性和机械性能的影响。在纤维增强砂浆的混合设计中也考虑了砂或水泥的减少量(分别高达8%和12.8%),并通过用当量的CFRP纤维取代砂或粘合剂的取代。结果表明,对于约4%的纤维的体积分数并具有2-5mm的长度,其特征在于10-18%的抗压强度的令人满意的增加的令人满意的增加。最后,进行生命周期评估(LCA,14040/14044),以量化与实施拟议的共生计划相关的环境负担减少。

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