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Technology readiness level assessment of composites recycling technologies

机译:复合材料回收技术的技术准备水平评估

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Composite materials made of glass and carbon fibres have revolutionised many industries. Demand for composites is experiencing rapid growth and global demand is expected to double. As demand for composites grows it is clear that waste management will become an important issue for businesses. Technically composite materials evoke difficult recycling challenges due to the heterogeneity of their composition. As current waste management practices in composites are dominated by landfilling, governments and businesses themselves foresee that this will need to change in the future. The recycling of composites will play a vital role in the future especially for the aerospace, automotive, construction and marine sectors. These industries will require different recycling options for their products based on compliance with current legislation, the business model as well as cost effectiveness. In order to be able to evaluate waste management strategies for composites, a review of recycling technologies has been conducted based on technology readiness levels and waste management hierarchy. This paper analyses 56 research projects to identify growing trends in composite recycling technologies with pyrolysis, solvolysis and mechanical grinding as the most prominent technologies. These recycling technologies attained high scores on the waste management hierarchy (either recycling or reuse applications) suggesting potential development as future viable alternatives to composite landfilling. The research concluded that recycling as a waste management strategy is most popular exploration area. It was found mechanical grinding to be most mature for glass fibre applications while pyrolysis has been most mature in the context of carbon fibre. The paper also highlights the need to understand the use of reclaimed material as important assessment element of recycling efforts. This paper contributes to the widening and systematising knowledge on maturity and understanding composites recycling technologies. (C) 2015 The Authors. Published by Elsevier Ltd.
机译:由玻璃和碳纤维制成的复合材料彻底改变了许多行业。复合材料的需求正在快速增长,预计全球需求将翻一番。随着复合材料需求的增长,显然废物管理将成为企业的重要问题。从技术上讲,复合材料由于其成分的异质性而带来了艰巨的回收挑战。由于目前复合材料中的废物管理做法主要由垃圾填埋场主导,因此政府和企业本身预见到将来这将需要改变。复合材料的回收利用将在未来发挥至关重要的作用,特别是在航空航天,汽车,建筑和船舶领域。这些行业将根据对当前法规,业务模式以及成本效益的要求,对产品进行不同的回收利用。为了能够评估复合材料的废物管理策略,已经基于技术准备水平和废物管理等级对回收技术进行了审查。本文分析了56个研究项目,以确定以热解,溶剂分解和机械研磨为最主要技术的复合材料回收技术的增长趋势。这些回收技术在废物管理层次结构(回收或再利用应用)上获得了很高的分数,表明了潜在的发展潜力,可以作为复合填埋的未来可行替代方案。研究得出结论,将回收作为废物管理策略是最受欢迎的勘探领域。发现对于玻璃纤维应用,机械研磨最成熟,而在碳纤维的背景下热解最成熟。本文还强调了必须了解将回收材料用作回收工作的重要评估要素的必要性。本文有助于拓宽和系统化有关成熟度的知识,并了解复合材料回收技术。 (C)2015作者。由Elsevier Ltd.发布

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