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Prospective study of lignin-based and recycled carbon fibers in composites through meta-analysis of life cycle assessments

机译:通过荟萃分析的复合材料中木质素基和再生碳纤维的前瞻性研究

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Screening the life cycle assessment literature for information and recalculating extracted results was proven useful for identifying environmental challenges and opportunities in new, but related, contexts at early stages of technology development. The method was applied to carbon fiber reinforced polymers, a material of growing importance in industrial applications where a strong and/or light material is needed, such as in aircrafts and road vehicles. Many technology development efforts with the purpose of further improving such composite materials are on-going, in particular regarding the origin of carbon fibers. Using lignin as a bio-based feedstock and various recycling techniques have been suggested. However, these technologies do not yet exist at a scale that would enable a meaningful life cycle inventory, while the need for environmental guidance is urgent in order to ensure that only the more promising development paths are pursued before lock-in occurs. With a specific focus on the shift to lignin as a feedstock for carbon fibers and on recycled carbon fibers in composites, this article not only illustrates the type of information that can be obtained from mining and refining information from earlier life cycle assessment studies, but it also provides direct guidance on environmental opportunities and challenges specific for carbon fiber reinforced polymers. Thereby, it informs both technology development efforts and environmental assessment efforts. Amongst other things, the analysis reveals that an important factor behind the environmental impact of composites is the energy demand in carbonization of the carbon fibers and that both the shift to lignin-based and to recycled carbon fibers can potentially reduce this environmental impact. However, assessments of both lignin (as an output from a multifunctional process) and recycled carbon fibers (as an output from end-of-life activities) are connected to challenges related to the allocation of environmental impacts in an environmental assessment. Extracting and refining information from the literature proved useful for the specific task but remains to be tested in other fields of emerging technologies. (C) 2019 Elsevier Ltd. All rights reserved.
机译:筛选信息和重新计算提取结果的生命周期评估文献被证明是可用于识别技术开发的早期阶段的新的环境挑战和机遇,但有关的环境挑战和机遇。将该方法应用于碳纤维增强聚合物,在需要强大和/或轻质材料的工业应用中生长的重要性,例如飞机和道路车辆。许多技术开发努力,目的是进一步改善这种复合材料,特别是关于碳纤维的起源。使用木质素作为生物基原料和各种回收技术。然而,这些技术尚未以能够实现有意义的生命周期库存的规模存在,而对环境指导的需求是迫切的,以确保在锁定之前只追求更有前途的开发路径。在将Lignin的转移作为碳纤维的原料和复合材料中的再循环碳纤维的转变,本文不仅示出了从早期的生命周期评估研究中可以获得的信息的类型,而且可以从早期的生命周期评估研究中获得信息的类型。还提供关于碳纤维增强聚合物特异性的环境机会和挑战的直接指导。因此,它通知技术开发努力和环境评估工作。在其他事情中,分析表明,复合材料环境影响背后的重要因素是碳纤维碳化中的能量需求,并且转向基于木质素和再循环的碳纤维可能会降低这种环境影响。然而,木质素(作为多功能过程的产出)和再循环碳纤维的评估(作为寿命最终活动的产出)与环境评估中环境影响分配有关的挑战。从文献中提取和炼制信息证明是对特定任务的有用,但在新兴技术的其他领域中仍有待测试。 (c)2019 Elsevier Ltd.保留所有权利。

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