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为了生产高质量的基于木质素的碳纤维:综述影响木质素性质和转化技术的关键因素。

Towards producing high-quality lignin-based carbon fibers: A review of crucial factors affecting lignin properties and conversion techniques.

机构信息

College of Life Sciences, Qingdao Agricultural University, Qingdao 266109, China.

College of Life Sciences, Qingdao Agricultural University, Qingdao 266109, China.

出版信息

Int J Biol Macromol. 2021 Oct 31;189:768-784. doi: 10.1016/j.ijbiomac.2021.08.187. Epub 2021 Aug 28.

Abstract

The production of low-cost and high-quality carbon fibers (CFs) from biorenewable lignin precursors has been of worldwide interest for decades. Although numerous works have been reported and the proposed "1.72 GPa/172 GPa" target set by the Department of Energy (DOE) has been closely met in a few studies, most lignin-based CFs (LCFs) have poor strength properties compared to industrial PAN (polyacrylonitrile)-based CFs. The production of LCFs involves several steps, and the final quality of LCFs is governed by both lignin's properties and the manufacturing processes. Therefore, understanding the key factors of producing high quality LCF is of high importance. In this review, we firstly outlined several lignin's properties (e.g., impurities, thermal properties, molecular structure) that may play important role in determining its processability and suitability as carbon fiber precursor. Secondly, conversion strategies include spinning, stabilization and carbonization, and corresponding parameters influencing the final quality of LCF are comprehensively analyzed. Last, additional characterization methods are proposed as a means to facilitate analyzing of lignin and LCF. This review attempts to provide insights towards high-quality LCF production from both material and manufacturing aspects.

摘要

几十年来,从生物可再生木质素前体生产低成本、高质量的碳纤维(CF)一直受到全世界的关注。尽管已经有大量的工作被报道,并且能源部(DOE)提出的“1.72GPa/172GPa”目标在少数研究中已经被接近满足,但与工业用 PAN(聚丙烯腈)基 CF 相比,大多数基于木质素的 CF(LCF)的强度性能较差。LCF 的生产涉及多个步骤,并且 LCF 的最终质量受木质素的性质和制造工艺的共同影响。因此,了解生产高质量 LCF 的关键因素非常重要。在这篇综述中,我们首先概述了木质素的几个特性(例如杂质、热性能、分子结构),这些特性可能在决定其可加工性和作为碳纤维前体的适用性方面起着重要作用。其次,转化策略包括纺丝、稳定化和碳化,并且综合分析了影响 LCF 最终质量的相应参数。最后,提出了其他的表征方法,作为分析木质素和 LCF 的手段。本文综述从材料和制造两个方面对高质量 LCF 的生产提供了一些见解。

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