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通过一种可行且经济高效的方法从废弃芳纶资源中回收高附加值芳纶纳米纤维

Recycling of High-Value-Added Aramid Nanofibers from Waste Aramid Resources via a Feasible and Cost-Effective Approach.

作者信息

Yang Bin, Li Weiwei, Zhang Meiyun, Wang Lin, Ding Xueyao

机构信息

College of Bioresources Chemical and Materials Engineering, National Demonstration Center for Experimental Light Chemistry Engineering Education, Shaanxi Province Key Laboratory of papermaking Technology and Specialty paper Development, Shaanxi University of Science & Technology, No. 6, Xuefu Road, Xi'an 710021, China.

State Key Laboratory of Pulp and Paper Engineering, South China University of Technology, Guangzhou 510641, China.

出版信息

ACS Nano. 2021 Apr 27;15(4):7195-7207. doi: 10.1021/acsnano.1c00463. Epub 2021 Mar 22.

Abstract

High-performance aramid fibers are extensively applied in the civil and military fields. A great deal of waste aramid resources originating from the manufacturing process, spare parts, or end of life cycle are wrongly disposed (, landfill, smash, fibrillation), causing a waste of valuable resources as well as severe environmental pollution. Although aramid nanofibers (ANFs) have recently been recently reported as one of the most promising building blocks due to their excellent properties, they suffer from an extremely high production expenditure, thereby greatly hindering their scale-up application. Herein, in this paper, from a resources-saving and cost-reductional perspective, we present a feasible top-down approach to recycle high value-added ANFs with an affordable cost from various waste aramid resources. The results indicate that although the reclaimed ANFs have a molecular weight reduction of 8.1% compared with the recycled aramid fibers, they still exhibit a molecular weight of 43.0 kg·mol that represents the highest value compared to other methods. It is noteworthy that the fabrication cost of ANFs is significantly reduced (∼7 times) due to the reclamation of waste aramid fibers instead of the expensive virgin aramid fibers. The obtained ANFs show impressive tensile strength (149.2 MPa) and toughness (10.43 MJ·m), excellent thermal stabilities ( of 542 °C), and a high specific surface area (65.2 m·g), which endows them to be promising candidates for constructing advanced materials. Compared to the aramid pulp obtained by the traditional recycling method, ANFs show significant advantages in dimensional homogeneity, aspect ratio, dispersibility, film-forming property, and especially the excellent properties of the ANF film. In addition, the scale-up preparation of ANFs from the recycled waste aramid fibers is carried out, demonstrating it is highly economically viable. Therefore, this work provides a highly feasible and cost-effective recycle system to reclaim the waste aramid resources together with significantly reducing the preparation cost of ANFs.

摘要

高性能芳纶纤维广泛应用于民用和军事领域。大量源自制造过程、零部件或生命周期末期的废弃芳纶资源被错误处置(填埋、粉碎、纤维化),造成宝贵资源的浪费以及严重的环境污染。尽管芳纶纳米纤维(ANFs)最近因其优异性能被报道为最有前途的构建单元之一,但它们的生产成本极高,从而极大地阻碍了其规模化应用。在此,本文从资源节约和成本降低的角度,提出了一种可行的自上而下的方法,以低成本从各种废弃芳纶资源中回收高附加值的ANFs。结果表明,尽管回收的ANFs与再生芳纶纤维相比分子量降低了8.1%,但它们仍具有43.0 kg·mol的分子量,这是与其他方法相比的最高值。值得注意的是,由于回收废弃芳纶纤维而非昂贵的原始芳纶纤维,ANFs的制造成本显著降低(约7倍)。所获得的ANFs表现出令人印象深刻的拉伸强度(149.2 MPa)和韧性(10.43 MJ·m)、优异的热稳定性(542 °C)以及高比表面积(65.2 m·g),这使其成为构建先进材料的有前途的候选材料。与传统回收方法获得的芳纶浆粕相比,ANFs在尺寸均匀性、长径比、分散性、成膜性能方面具有显著优势,尤其是ANF膜具有优异性能。此外,还进行了从回收的废弃芳纶纤维中大规模制备ANFs的实验,证明其具有高度的经济可行性。因此,这项工作提供了一个高度可行且具有成本效益的回收系统,既能回收废弃芳纶资源,又能显著降低ANFs的制备成本。

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