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近年来基于木质素的碳材料及其应用的研究进展:综述。

Recent advances in lignin-based carbon materials and their applications: A review.

机构信息

Hubei Key Laboratory of Plasma Chemistry and Advanced Materials, School of Materials Science and Engineering, Wuhan Institute of Technology, Wuhan 430205, China.

Hubei Key Laboratory of Plasma Chemistry and Advanced Materials, School of Materials Science and Engineering, Wuhan Institute of Technology, Wuhan 430205, China.

出版信息

Int J Biol Macromol. 2022 Dec 31;223(Pt A):980-1014. doi: 10.1016/j.ijbiomac.2022.11.070. Epub 2022 Nov 12.

Abstract

As the most abundant natural aromatic polymer, tens of million of tons of lignin produced in paper-making or biorefinery industry are used as fuel annually, which is a low-value utilization. Moreover, burning lignin results in large amounts of carbon dioxide and pollutants in the air. The potential of lignin is far from being fully exploited and the search for high value-added application of lignin is highly pursued. Because of the high carbon content of lignin, converting lignin into advanced carbon-based structural or functional materials is regarded as one of the most promising solutions for both environmental protection and utilization of renewable resources. Significant progresses in lignin-based carbon materials (LCMs) including porous carbon, activated carbon, carbon fiber, carbon aerogel, nanostructured carbon, etc., for various valued applications have been witnessed in recent years. Here, this review summarized the recent advances in LCMs from the perspectives of preparation, structure, and applications. In particular, this review attempts to figure out the intrinsic relationship between the structure and functionalities of LCMs from their recent applications. Hopefully, some thoughts and discussions on the structure-property relationship of LCMs can inspire researchers to stride over the present barriers in the preparation and applications of LCMs.

摘要

作为最丰富的天然芳香聚合物,造纸或生物炼制工业每年产生的数以千万吨计的木质素都被用作燃料,这是一种低价值的利用方式。此外,燃烧木质素会导致大量的二氧化碳和污染物排放到空气中。木质素的潜力远未得到充分开发,因此人们高度追求寻找高附加值的木质素应用。由于木质素的碳含量很高,将木质素转化为先进的碳基结构或功能性材料被认为是环境保护和可再生资源利用的最有前途的解决方案之一。近年来,在各种有价值的应用中,包括多孔碳、活性炭、碳纤维、碳气凝胶、纳米结构碳等在内的木质素基碳材料(LCMs)的制备、结构和应用方面都取得了显著的进展。在此,本文从制备、结构和应用等方面综述了 LCMs 的最新进展。特别是,本文试图从其最近的应用中找出 LCMs 的结构与功能之间的内在关系。希望本文关于 LCMs 的结构-性能关系的一些思考和讨论能够启发研究人员克服 LCMs 的制备和应用中目前存在的障碍。

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